scieee Science in your language
[en] (orig)

Urinary tract physiological conditions promote ciprofloxacin resistance in low-level-quinolone-resistant Escherichia coli

Abstract

Escherichia coli isolates carrying chromosomally encoded low-level-quinolone-resistant (LLQR) determinants are frequently found in urinary tract infections (UTIs). LLQR mutations are considered the first step in the evolutionary pathway producing high-level fluoroquinolone resistance. Therefore, their evolution and dissemination might influence the outcome of fluoroquinolone treatments of UTI. Previous studies support the notion that low urine pH decreases susceptibility to ciprofloxacin (CIP) in E. coli. However, the effect of the urinary tract physiological parameters on the activity of ciprofloxacin against LLQR E. coli strains has received little attention. We have studied the activity of ciprofloxacin under physiological urinary tract conditions against a set of well-characterized isogenic E. coli derivatives carrying the most prevalent chromosomal mutations (ΔmarR, gyrA-S83L, gyrA-D87N, and parC-S80R and some combinations). The results presented here demonstrate that all the LLQR strains studied became resistant to ciprofloxacin (according to CLSI guidelines) under physiological conditions whereas the control strain lacking LLQR mutations did not. Moreover, the survival of some LLQR E. coli variants increased up to 100-fold after challenge with a high concentration of ciprofloxacin under UTI conditions compared to the results seen with Mueller-Hinton broth. These selective conditions could explain the high prevalence of LLQR mutations in E. coli. Furthermore, our data strongly suggest that recommended methods for MIC determination produce poor estimations of CIP activity against LLQR E. coli in UTIs.

Read accessible full text

Urinary tract physiological conditions promote ciprofloxacin resistance in low-level-quinolone-resistant Escherichia coli

Author: Martín Gutiérrez, Guillermo; Rodríguez Beltrán, Jerónimo; Rodríguez Martínez, José Manuel; Costas, Coloma; Aznar Martín, Javier; Pascual Hernández, Álvaro; Blázquez, Jesús
Publisher: American Society for Microbiology
Year: 2016
DOI: 10.1128/AAC.00602-16
Source: https://idus.us.es/bitstreams/5f0f1582-b836-4a07-afb9-e71d92fc2a02/download
U ina y T ac Physiological Condi ions P omo e Cip o loxacin
Resis ance in Low-Le el-Quinolone-Resis an Esche ichia coli
Guille mo Ma ín-Gu ié ez,
a,c
Je ónimo Rod íguez-Bel án,
a
José Manuel Rod íguez-Ma ínez,
b
Coloma Cos as,
a
Ja ie Azna ,
a,c
Ál a o Pascual,
b,c
Jesús Blázquez
a,d
Ins i u o de Biomedicina de Se illa (IBIS), Hospi al Uni e si a io Vi gen del Rocío, CSIC, Uni e sidad de Se illa, Se ille, Spain
a
; Depa amen o de Mic obiología, Uni e sidad
de Se illa, Se ille, Spain
b
; Unidad In e cen os de En e medades In ecciosas, Mic obiología y Medicina P e en i a, Hospi ales Uni e si a ios Vi gen Maca ena y Vi gen del
Rocío, Se ille, Spain
c
; Cen o Nacional de Bio ecnología (CNB), Consejo Supe io de In es igaciones Cien í icas (CSIC), Mad id, Spain
d
Esche ichia coli isola es ca ying ch omosomally encoded low-le el-quinolone- esis an (LLQR) de e minan s a e equen ly
ound in u ina y ac in ec ions (UTIs). LLQR mu a ions a e conside ed he i s s ep in he e olu iona y pa hway p oducing
high-le el luo oquinolone esis ance. The e o e, hei e olu ion and dissemina ion migh in luence he ou come o luo oquin-
olone ea men s o UTI. P e ious s udies suppo he no ion ha low u ine pH dec eases suscep ibili y o cip o loxacin (CIP) in
E. coli. Howe e , he e ec o he u ina y ac physiological pa ame e s on he ac i i y o cip o loxacin agains LLQR E. coli
s ains has ecei ed li le a en ion. We ha e s udied he ac i i y o cip o loxacin unde physiological u ina y ac condi ions
agains a se o well-cha ac e ized isogenic E. coli de i a i es ca ying he mos p e alen ch omosomal mu a ions (⌬ma R,
gy A-S83L, gy A-D87N, and pa C-S80R and some combina ions). The esul s p esen ed he e demons a e ha all he LLQR
s ains s udied became esis an o cip o loxacin (acco ding o CLSI guidelines) unde physiological condi ions whe eas he con-
ol s ain lacking LLQR mu a ions did no . Mo eo e , he su i al o some LLQR E. coli a ian s inc eased up o 100- old a e
challenge wi h a high concen a ion o cip o loxacin unde UTI condi ions compa ed o he esul s seen wi h Muelle -Hin on
b o h. These selec i e condi ions could explain he high p e alence o LLQR mu a ions in E. coli. Fu he mo e, ou da a s ongly
sugges ha ecommended me hods o MIC de e mina ion p oduce poo es ima ions o CIP ac i i y agains LLQR E. coli in
UTIs.
Cip o loxacin (CIP) is one o he agen s commonly u ilized o
ea men o u ina y ac in ec ions (UTIs) (1–3). I is used as
an app op ia e he apy in pa ien s wi h UTI no equi ing hospi-
aliza ion in a eas whe e he p e alence o esis ance is unde 10%.
In addi ion, i is conside ed an e ec i e ea men in he p e en-
ion o UTI in kidney ansplan ecipien s (4,5). Howe e , du ing
ecen yea s a clea inc ease in esis ance o luo oquinolones
(FQ) has been desc ibed wo ldwide (6,7).
The p edominan causa i e agen o communi y-acqui ed
UTI, Esche ichia coli, acqui es esis ance mainly h ough ch omo-
somal mu a ions in he genes encoding subuni s o he DNA gy-
ase (gy A and gy B genes) and opoisome ase IV (pa C and pa E
genes) o in egula o y genes a ec ing pe meabili y o e lux (8).
Some o hese mu a ions lead o gene a ion o low-le el-quinolo-
ne- esis an (LLQR) E. coli mu an s, wi h a CIP MIC ha is highe
han he epidemiological cu o alue bu s ill below he esis ance
b eakpoin o mos FQs. A high ( om 17% o 39%, depending on
he s udy) p e alence o LLQR E. coli in UTIs has been p e iously
desc ibed (8,9). Howe e , he causes o his p e alence a e un-
clea , as he high CIP le els ound in he bladde a e ea men
should be su icien o e adica e any suscep ible bac e ia.
I has been s a ed ha small inc eases in MIC alues p oduced
by LLQR mu a ions ha e a p o ound impac on he mu an , p e-
en ing concen a ion o FQs and aising he likelihood ha
s ains wi h high-le el esis ance will appea (10). The e o e,
LLQR mu an s a e a guably he i s s ep on he e olu iona y
pa hway o p oducing high-le el quinolone esis ance, and hus
hei dissemina ion and e olu ion migh in luence he ou come o
FQ ea men o UTI.
One o he de e minan s o his ou come is he en i onmen
ound in he u ina y ac , which is cha ac e ized mainly by he
p esence o u ine and anae obic condi ions. U ine is a luc ua ing
and complex luid composed o o e 95% wa e , plus sodium,
ammonia, phospha e, sul a e, u ea, c ea inine, p o eins, and
p oduc s p ocessed by he kidney and li e (11). The a iabili y in
he physicochemical p ope ies o u ine is bes illus a ed by he
wide pH ange o human u ine, which no mally a ies om 5 o 8
(12). Addi ionally, he bladde en i onmen is mainly anae obic,
wi h a concen a ion o dissol ed oxygen (DO) in u ine o abou
4.2 ppm (13); he concen a ion is also a iable and mainly e lec s
he enal me abolic s a e. Mo eo e , in pa ien s wi h u ina y in-
ec ions, he u ine DO concen a ion is signi ican ly educed as a
esul o oxygen consump ion by he in ec ing mic obes (13).
Howe e , he ela i e con ibu ions o hese pa ame e s o he
possible ou comes o CIP ea men agains LLQR s ains ha e
ecei ed li le a en ion. CIP is an ampholy e consis ing o an
acidic g oup and a basic g oup ha can exis in ou di e en
pH-dependen p o ona ion o ms (14). The zwi e ionic o m is
necessa y o bac e ial pe meabili y, while he neu al o m p o-
ides good in es inal abso p ion (15). The e o e, he wide ange o
Recei ed 16 Ma ch 2016 Re u ned o modi ica ion 24 Ap il 2016
Accep ed 27 Ap il 2016
Accep ed manusc ip pos ed online 2 May 2016
Ci a ion Ma ín-Gu ié ez G, Rod íguez-Bel án J, Rod íguez-Ma ínez JM, Cos as C,
Azna J, Pascual A, Blázquez J. 2016. U ina y ac physiological condi ions
p omo e cip o loxacin esis ance in low-le el-quinolone- esis an Esche ichia coli.
An imic ob Agen s Chemo he 60:4252–4258. doi:10.1128/AAC.00602-16.
Add ess co espondence o Jesús Blázquez, [email p o ec ed].
G.M.-G. and J.R.-B. con ibu ed equally o his a icle.
Copy igh © 2016, Ame ican Socie y o Mic obiology. All Righ s Rese ed.
c ossma k
4252 aac.asm.o g July 2016 Volume 60 Numbe 7An imic obial Agen s and Chemo he apy
on July 24, 2017 by USE/BCTA.GEN UNIVERSITARIAh p://aac.asm.o g/Downloaded om
pH ound in human u ine can a ec he ioniza ion s a us o CIP
and can hus modi y i s an imic obial ac i i y (16–19). Rega ding
oxygen le els, i has been epo ed ha g ow h unde condi ions
o anae obiosis a ec s bac e ial suscep ibili y o CIP (20). The e-
o e, bo h pa ame e s could, in p inciple, in luence he esis ance
p o iles o LLQR UTI s ains, hus a ec ing he p ognosis o ea -
men .
Pha macokine ic and pha macodynamic (PK/PD) s udies in-
dica e ha e y high (up o 990 ␮g/ml) concen a ions o CIP can
be eached in u ine du ing ea men (21), sugges ing ha , despi e
apossible e ec o pH and o he u ine pa ame e s on CIP ac i i y,
such ea men should be su icien o kill any suscep ible bac e ia.
Howe e , o da e, no s udies on he e ec o hese pa ame e s on
he ac i i y o CIP agains s ains con aining LLQR mu a ions
ha e been pe o med.
Consequen ly, we aimed o e alua e he impac o he abo e-
men ioned pa ame e s (namely, g ow h in u ine, pH, and anae -
obiosis) on he an imic obial ac i i y o CIP agains a se o well-
cha ac e ized isogenic LLQR s ains ca ying he mos equen
ch omosomal mu a ions (9,22) and agains a se ies o E. coli clin-
ical isola es wi h known LLQR mu a ions. MICs o CIP in bo h
Muelle -Hin on b o h (MH) and u ine unde a ious pH and
oxygen supply condi ions we e s udied. In addi ion, he su i al
a es o hese s ains in he p esence o he maximum concen a-
ion o CIP eached in he bladde we e also analyzed.
MATERIALS AND METHODS
S ains and g ow h condi ions. Wild- ype E. coli ATCC 25922 and nine
di e en isogenic s ains ca ying combina ions o he mos p e alen
ch omosomal mu a ions (⌬ma R,gy A-S83L, gy A-D87N, and pa C-
S80R) we e used. Isogenic s ains we e hose cons uc ed p e iously by
Machuca e al. (23). Mo eo e , six u opa hogenic E. coli (UPEC) s ains
wi h well-cha ac e ized LLQR mu a ions ha had been isola ed om pa-
ien s in he Uni e si y Hospi al Ma ques de Valdecilla and Uni e si y
Hospi al Vi gen Maca ena du ing 2009 we e s udied (Table 1).
MH (Conda P onadisa, Spain) was used as a con ol medium. Fo
g ow h a e de e mina ions, o e nigh cul u es o he s ains we e dilu ed
1:100 in o MH and cul u ed wi h ae a ion a 37°C du ing2ha 180 pm
o ob ain bac e ia in he exponen ial-g ow h phase. G ow h assays we e
conduc ed in clea la -bo om 96-well Mic oWell pla es (Nunc, Roskilde,
Denma k), con aining 8 eplica es o 100 ␮l pe sample. The pla es we e
incuba ed a 37°C wi h shaking on an au oma ed mic opla e eade (In-
ini e M200; Tecan, Männedo , Swi ze land), and he abso bance a 595
nm o each well was measu ed e e y 30 min. The du a ion o each assay
was 24 h.
U ine ob ained om 3 heal hy olun ee s who had no ecei ed an i-
bio ic ea men du ing he p e ious 6 mon hs was pooled, s e ilized by
il a ion h ough 0.22-mm-po e-size il e s (polye he sul one [PES]
memb ane) (VWR, Uni ed Kingdom), di ided in o aliquo s, and s o ed
a ⫺20°C. The u ine was adjus ed o pH alues o 5.0, 6.0, and 7.0 wi h
HCl o NaOH (bo h om Sigma-Ald ich), and he samples we e again
subjec ed o s e ile il a ion be o e use. U ine-aga pla es we e made by
mixing 4:1 pH-adjus ed pooled human u ine wi h 6% aga (Conda P o-
nadisa, Spain). Final pH alues we e de e mined o u ine-aga be o e
pla ing and we e eadjus ed when necessa y.
Measu emen o pH o u ine om pa ien s wi h communi y-ac-
qui ed E. coli UTI. F om Ma ch 2015 o June 2015, ⱖ18-yea -old pa ien s
wi h UTI symp oms ecei ing ca e a he P ima y Ca e Uni s o Vi gen del
Rocío Uni e si y Hospi al we e included in his s udy. Mids eam ca ch
u ine was collec ed in s e ile p ese a i e ubes (SRO-1-25B; So ia Mel-
guizo S.A., Mad id, Spain) and was anspo ed on ice. U ine samples
we e p ocessed wi hin 4 o 8 h a e collec ion. Fo each sample, 10 ␮lo
u ine was quan i a i ely cul u ed on o B illiance UTI Cla i y aga pla es
(Oxoid, Basings oke, Uni ed Kingdom). All pla es we e ae obically incu-
ba ed o 18 o 24 h a 37°C, and he esul s we e exp essed as he numbe
o CFU pe millili e . U ine pH was measu ed in each collec ed specimen
wi h a pH me e .
Cul u es in which E. coli le els we e abo e h esholds o ⱖ10
5
CFU/ml
o women and ⱖ10
3
CFU/ml o men we e de ined as posi i e. In o al,
pH alues o u ine om 136 pa ien s (wi h p o en UTI caused by E. coli)
we e included.
Suscep ibili y es ing. MICs o CIP we e de e mined in iplica e o
each bac e ial s ain using he b o h mic odilu ion me hod, acco ding o
he Clinical and Labo a o y S anda ds Ins i u e (CLSI) e e ence me hods
(24). O e nigh cul u es we e p epa ed and adjus ed o a densi y o 0.5
McFa land. To ep oduce u ine physiological condi ions, he MICs o
CIP we e measu ed in MH and u ine a pH alues o 5, 6, and 7. To
de e mine i he e ec was due only o he dec ease in pH, MICs we e also
measu ed in MH a pH 5 and pH 6, in addi ion o he s anda d pH o MH
b o h (7.3 ⫾0.1). Mic opla es we e incuba ed unde ae obic and anae -
obic condi ions.
MICs o CIP we e also de e mined by a g adien MIC s ip me hodol-
ogy (Lio ilchem s l, I aly) acco ding o CLSI c i e ia. Bac e ial suspen-
sions we e p epa ed om o e nigh cul u es and adjus ed o a densi y o
0.5 McFa land. G adien MIC s ip expe imen s we e pe o med on MH
aga (Di co, So ia Melguizo, Spain) and u ine-aga wi h pH alues o 5, 6,
and 7. Pla es we e incuba ed unde ae obic condi ions o 24 h (48 h o
u ine-aga es s) a 37°C.
Su i al a es. O e nigh cul u es o he di e en s ains we e g own
a 37°C wi hou he an imic obial agen in bo h MH and u ine a di e en
pH alues. Then, bac e ia a a densi y o ⬃5⫻10
5
CFU/ml om hese
cul u es we e inocula ed in o esh MH o u ine con aining CIP and we e
incuba ed a 37°C o 6 h in anae obiosis. The quinolone concen a ion
used o de e mina ion o su i al a es was 1,000 ␮g/ml, sligh ly abo e
he maximum concen a ion o CIP eached in u ine wi hin he i s 6 h
a e adminis a ion o an o al dose o 500 mg CIP (21), which is he
ecommended dose o adul s (4). An ibio ic- ee b o h was e alua ed in
pa allel as a con ol. Viable coun s we e de e mined by pla ing se ial di-
lu ions on o MH aga pla es incuba ed a 37°C o up o 24 h. The su i al
a e was calcula ed by no malizing he numbe o su i ing bac e ia o he
es ima ed ini ial popula ion.
TABLE 1 Geno ypes o isogenic and UPEC s ains
a
S ain
Geno ype
gy A1 gy A2 pa C ma R
Isogenic
ATCC 25922
EC01 ⌬
EC02 S83L
EC03 S83L ⌬
EC04 S83L S80R
EC05 S83L S80R ⌬
EC06 S83L D87N
EC07 S83L D87N ⌬
EC08 S83L D87N S80R
EC09 S83L D87N S80R ⌬
UPEC
Val09 S83L
MAC02 S83L
MAC10 S83L
MAC11 S83L S80R
MAC21a S83L S80I
MAC33 D87Y
a
UPEC, u opa hogenic Esche ichia coli s ains; ⌬, p ecise dele ion.
LLQR E. coli Resis ance in UTI
July 2016 Volume 60 Numbe 7 aac.asm.o g 4253An imic obial Agen s and Chemo he apy
on July 24, 2017 by USE/BCTA.GEN UNIVERSITARIAh p://aac.asm.o g/Downloaded om
RESULTS
Va iabili y o pH in u ine om UTI pa ien s. We i s conduc ed
a p ospec i e s udy o measu e he u ine pH om pa ien s wi h
communi y-acqui ed E. coli UTI. The esul s p esen ed in Fig. 1
demons a e a wide a iabili y in pH alues, anging om 5 o 8,
sugges ing ha physiological u ina y pH is highly a iable among
pa ien s. We ound ha he as majo i y (90%) o pH alues we e
below neu ali y, wi h mos samples being ma kedly acidic (63%
wi h pH ⫽ⱕ6). This esul , which ag ees wi h a p e ious epo
(25), indica es ha low u ine pH is he ule a he han he excep-
ion in UTI pa ien s.
E ec o u ine pH on he g ow h o E. coli ATCC 25922. We
hen s udied he abili y o he E. coli ATCC 25922 s ain o g ow in
u ine a physiological pH alues. G ow h cu es in MH and u ine
we e ca ied ou using an au oma ed spec opho ome e unde
con olled condi ions o empe a u e and shaking. Figu e 2 shows
ha E. coli ATCC 25922 was able o p ospe in u ine, al hough i s
g ow h was somewha lowe han ha in MH, p obably due o he
low concen a ion o nu ien s. Acidi ica ion o u ine, including
pH 5, led o only small dec eases in g ow h, demons a ing ha E.
coli is well adap ed o ex eme pH alues. Simila ly, all LLQR de-
i a i es we e able o g ow in u ine a di e en pH alues (da a no
shown). I should be no ed he e ha we we e unable o pe o m
g ow h cu e de e mina ions in basic u ine (pH 8) because, unde
ou condi ions, u ine componen s p ecipi a e a pH alues highe
han 7. This, oge he wi h he ac ha basic u ine is uncommon
among UTI pa ien s (⬍5%) (Fig. 1), led us o exclude his condi-
ion om u he expe imen s.
E ec o pH and anae obiosis on he ac i i y o CIP agains
LLQR E. coli s ains g owing in u ine. To de e mine i CIP ac i -
i y is a ec ed by u ine acidi ica ion, we pe o med p elimina y
MIC de e mina ions using o a combina ion o he g adien MIC
s ip me hodology and pH-adjus ed u ine aga pla es (see Ma e-
ials and Me hods). As expec ed, pH alues had a la ge in luence
on he CIP MICs de ec ed by g adien MIC s ips o all LLQR
s ains. Figu e 3 shows an illus a i e example wi h ATCC 25922
and i s gy A-S83L–pa C-S80R de i a i e EC05.
The ac i i y o CIP agains all LLQR isogenic de i a i es was
also de e mined in u ine unde di e en condi ions (pH and an-
ae obiosis) by he mic odilu ion me hod. Table 2 con i ms ha
pH had a la ge in luence on MICs, wi h 4- old o 16- old MIC
inc eases in he ATCC 25922 s ain and i s isogenic LLQR de i -
a i es when he pH was changed om neu al o 6. Impo an ly,
wi h he excep ion o he ATCC 25922 and EC01 (⌬ma R) s ains,
all suscep ible s ains became esis an (MIC o ⬎4␮g/ml) ac-
co ding o CLSI classi ica ion. The MIC inc eases we e e en
highe when he u ine pH was se o 5. Unde hose condi ions,
CIP ac i i y dec eased 32- old o 256- old in compa ison o he
ac i i y seen a pH 7. A pH 5, all s ains excep ATCC 25922 we e
esis an o CIP, as de ined by CLSI guidelines. Taken oge he ,
hese esul s indica e ha he p esence o any o he s udied LLQR
mu a ions was enough o con e clinical le els o esis ance a
acidic bu physiological pH. Rema kably, he ATCC 25922 s ain,
which lacks any o hese esis ance de e minan s, emained sus-
cep ible unde hese condi ions.
Rega ding he e ec o anae obiosis, Table 2 (nO
2
columns)
shows ha g ow h unde anae obic condi ions inc eased he CIP
MICs 2- old o 8- old a pH 7 compa ed o he alues ob ained
FIG 1 Dis ibu ion o u ine pH alues in 136 samples om pa ien s wi h UTI
caused by E. coli.
FIG 2 G ow h cu es o E. coli ATCC 25922 g owing in MH and u ine a
di e en pH alues. E o ba s ep esen s anda d e o s o he means o e-
sul s om a leas ou eplica es. MH, Muelle -Hin on; UR, u ine; OD, op ical
densi y.
FIG 3 CIP suscep ibili y es ing o wo ep esen a i e s ains (ATCC 25922
and EC05), using he g adien MIC s ip me hodology. I was obse ed ha pH
has a g ea in luence on CIP ac i i y, wi h a signi ican inc ease in MICs when
pH dec eases. MICs (shown in mic og ams pe millili e ) a e indica ed a he
igh bo om o each condi ion. UR 7, u ine-aga pH 7; UR 6, u ine-aga pH
6; UR 5, u ine-aga pH 5.
Ma ín-Gu ié ez e al.
4254 aac.asm.o g July 2016 Volume 60 Numbe 7An imic obial Agen s and Chemo he apy
on July 24, 2017 by USE/BCTA.GEN UNIVERSITARIAh p://aac.asm.o g/Downloaded om
wi h oxygen, con e ing all s ains, excep ATCC 25922 and EC01,
o in e media e o esis an . The inc eases due o he absence o
oxygen a pH 6 we e minimal ( om 2- old o 4- old), and he e
we e almos no changes a pH 5.
In summa y, hese esul s demons a e ha he pH o u ine
had a g ea e ec on he ac i i y o CIP agains he E. coli ATCC
25922 LLQR isogenic de i a i es, wi h a pH o 5 capable o con-
e ing all LLQR s ains o in e media e o esis an o CIP ac-
co ding o CLSI b eakpoin s. Fu he mo e, g ow h in u ine a
neu al pH unde anae obic condi ions p oduced an inc ease in
MIC alues su icien o classi ying eigh s ains as esis an which
would ha e been conside ed suscep ible by adi ional MIC de e -
mina ions in MH.
Table 3 shows ha , simila ly o he esul s ob ained wi h u ine,
acidi ica ion o MH had a g ea e ec on CIP ac i i y, wi h in-
c eases o 8- old o 16- old and 32- old o 64- old a pH 6 and 5,
espec i ely. A pH 6, all s ains, excep ATCC 25922 and EC01,
became esis an o in e media e, as de ined by he CLSI clinical
b eakpoin s. On he o he hand, g ow h in he absence o oxygen
had a smalle e ec in MH han in u ine, wi h CIP ac i i y in-
c eases o 2- old o 4- old a pH 7 and almos no e ec a pH 6 and
5. The e o e, g ow h in u ine exace ba ed he e ec o pH and
anae obiosis on he CIP ac i i y wi h espec o g ow h in MH.
MIC de e mina ions unde physiological condi ions. Cu -
en me hods employed o de e mine MICs in clinical mic obiol-
ogy labo a o ies a e based on g ow h in MH b o h o on MH aga
pla es in which he pH is close o neu ali y (s anda d pH is 7.3 ⫾
0.1). The e o e, acco ding o he esul s desc ibed abo e, when
CIP eaches he bladde , he en i onmen al condi ions could al e
i s an imic obial ac i i y. Table 4 shows he old change in MICs
when he s ains a e g own in u ine a di e en pH and oxygen
le els in compa ison o hose ob ained using classical MIC de e -
mina ion me hods (MH b o h, pH 7.3, and ae obiosis). These
esul s indica e ha anae obic g ow h in u ine inc eased he CIP
MIC a pH 7 (2- old o 8- old), pH 6 (16- old o 64- old), and pH
5 (128- old o 512- old).
Su i al a es a he maximum physiological CIP concen a-
ion. The esul s p esen ed abo e sugges ha CIP ea men o
LLQR s ains could be ine icien unde UTI physiological condi-
ions. To es his possibili y, o e nigh cul u es o he di e en
s ains we e g own a 37°C wi hou he an imic obial agen in
bo h MH and u ine a di e en pH alues. Then, bac e ia a a
densi y o abou 5 ⫻10
5
CFU/ml we e inocula ed in o esh MH
o u ine con aining CIP (1,000 ␮g/ml) and g own a 37°C du ing
6 h. The a ionale o his expe imen al design was o mimic he
bes -case scena io, using he addi ion o he highes CIP concen-
a ion e e epo ed wi hin he i s 6 h a e an o al dose o 500
TABLE 5 Cip o loxacin MICs agains clinical s ains in MH b o h and
u ine a di e en pH alues
a
S ain
MIC (␮g/ml)
MH b o h U ine pH 7 U ine pH 6 U ine pH 5
O
2
nO
2
O
2
nO
2
O
2
nO
2
O
2
nO
2
Val09 1 218 8 16 256 256
MAC02 0.125 0.25 0.25 0.5 1 1 32 16
MAC10 0.25 0.5 0.125 0.5 1 43216
MAC11 0.5 20.25 2246464
MAC21a 0.5 20.25 2246464
MAC33 0.125 0.5 0.25 0.25 0.5 1 88
a
In e media e and esis an MIC alues acco ding o he CLSI guideline a e shown in
bold. O
2
, ae obic incuba ion; nO
2
, anae obic incuba ion.
TABLE 2 Cip o loxacin MICs o E. coli s ains in u ine a di e en pH
alues
a
S ain
MIC (␮g/ml)
UR pH 7 UR pH 6 UR pH 5
O
2
nO
2
O
2
nO
2
O
2
nO
2
ATCC 25922 0.015 0.03 0.06 0.25 1 1
EC01 0.03 0.06 0.25 0.5 42
EC02 0.25 1 443232
EC03 0.5 28166432
EC04 0.5 28166464
EC05 1 4 16 64 256 256
EC06 1 1 443232
EC07 0.5 28166464
EC08 4 8 32 64 512 512
EC09 8 16 64 256 512 512
a
In e media e and esis an MIC alues acco ding o he CLSI guideline a e shown in
bold. O
2
, ae obic incuba ion; nO
2
, anae obic incuba ion.
TABLE 3 MICs o cip o loxacin o isogenic E. coli s ains in MH b o h
a di e en pH alues
a
S ain
MIC (␮g/ml) in MH b o h a pH:
765
O
2
nO
2
O
2
nO
2
O
2
nO
2
ATCC 25922 0.004 0.008 0.03 0.06 0.125 0.125
EC01 0.008 0.06 0.125 0.125 0.5 0.25
EC02 0.125 0.25 1 1 44
EC03 0.25 1 2488
EC04 0.5 1 441616
EC05 1 4886432
EC06 0.125 0.25 1 1 44
EC07 0.25 1 441616
EC08 2 4 16 16 64 128
EC09 4 16 32 64 256 128
a
In e media e and esis an MIC alues acco ding o he CLSI guideline a e shown in
bold. O
2
, ae obic incuba ion; nO
2
, anae obic incuba ion.
TABLE 4 Mean old changes in MICs o cip o loxacin in MH b o h and
u ine a di e en alues o pH and anae obiosis
a
S ain
MIC (␮g/ml) in MH b o h and u ine a pH:
765
O
2
nO
2
O
2
nO
2
O
2
nO
2
ATCC 25922 4 8 32 64 128 256
EC01 1 8 8 64 32 256
EC02 4 8 16 32 128 256
EC03 2 8 16 64 32 128
EC04 2 4 16 32 64 128
EC05 1 4 16 64 64 256
EC06 4 8 16 32 128 256
EC07 2 8 16 64 64 256
EC08 2 4 16 32 128 256
EC09 1 4 16 64 32 128
a
O
2
, ae obic incuba ion; nO
2
, anae obic incuba ion.
LLQR E. coli Resis ance in UTI
July 2016 Volume 60 Numbe 7 aac.asm.o g 4255An imic obial Agen s and Chemo he apy
on July 24, 2017 by USE/BCTA.GEN UNIVERSITARIAh p://aac.asm.o g/Downloaded om
mg, al hough he concen a ion ha CIP eaches in he bladde is
ypically lowe (21). No e ha we decided o use such a high con-
cen a ion because we an icipa ed ha he median CIP concen a-
ion du ing he i s hou s o ea men (268 ␮g/ml) (21) would be
in a ange nea o below he MIC o se e al LLQR s ains in u ine
unde condi ions o low pH (see Table 2); hence, he e ec s o CIP
ea men agains hese s ains would mos likely be innocuous.
Figu e 4 shows ha he su i al a es o all s ains, excep ATCC
25922 and EC01, whose su i al a es all below he de ec ion limi
o ou assay, inc eased subs an ially (10- old o 100- old) in u ine
a pH 5 compa ed wi h hose seen wi h MH. A highe pH alues,
no s a is ically signi ican di e ences in su i al we e ound, ex-
cep o EC02.
E ec o u ine, pH, and anae obiosis on CIP ac i i y agains
LLQR clinical isola es. To disca d he possibili y ha he ob-
se ed e ec s we e speci ic o he E. coli ATCC 25922 s ain and i s
de i a i es, we sco ed he MICs o CIP agains six well-cha ac e -
ized LLQR E. coli clinical s ains. As o he ATCC 25922 s ain, he
MIC showed a ma ked inc ease when de e mina ions we e pe -
o med in u ine a di e en pHs and unde anae obic condi ions.
In his case, h ee o six s ains became in e media e, as de ined by
he CLSI b eakpoin s, when MIC de e mina ions we e pe o med
in u ine a pH 7 unde condi ions o anae obiosis. Fu he in-
c eases we e displayed in u ine wi h acidic pHs; all clinical s ains
demons a ed esis ance a pH 5 (Table 5).
DISCUSSION
The e ec i eness o CIP o he ea men o UTI does no depend
on pa hogen suscep ibili y alone. Physicochemical and pha ma-
cological p ope ies o an ibio ics a e impo an ac o s ela ed o
success ul he apy. Because CIP is an ampholy e (14), he pH o
u ine a ec s i s ioniza ion s a us, which is c i ical o i s ac i i y
and cellula accumula ion in bo h bac e ia and bladde cells. Re-
sul s o p e ious s udies suppo he no ion ha low u ine pH
dec eases suscep ibili y o CIP in a numbe o bac e ial pa hogens
(16–19,25).
Ou esul s con i m ha g ow h in u ine a neu al pH sligh ly
inc eases esis ance o CIP in E. coli (26). This inc ease is u he
enhanced in an anae obic en i onmen , such as ha ound in he
bladde . Impo an ly, g ow h in acidic u ine ende s all LLQR
s ains esis an o CIP acco ding o CLSI b eakpoin s. These e-
sul s sugges ha adi ional suscep ibili y es ing in MH b o h
may esul in poo es ima ions o CIP ac i i y in UTI caused by
LLQR s ains.
I has been sugges ed ha he high concen a ions o FQ a -
ained in he u ina y ac a e enough o e adica e bac e ial pa ho-
gens, e en hose which, ollowing CLSI guidelines, would ha e
been conside ed esis an (27). This assump ion is made based on
he empi ical success o ea men s wi h CIP agains esis an
clones and he p edic i e alues o PK/PD modeling o FQ e ec-
i eness, which, gi en he high alues o maximum concen a ion
o d ug in se um (C
max
) and a ea unde he concen a ion- ime
cu e (AUC) eached in he u ina y ac , p edic he clinical e-
sponse o s ains wi h d ug MIC alues as high as ⬃20 ␮g/ml
(28). Acco ding o ou esul s, he applica ion o his c i e ion o
MIC da a o LLQR s ains sugges s ha g ow h in human u ine,
unde physiological condi ions o pH and oxygen concen a ion,
could cause ea men ailu e in mos cases. Simila beha io is
expec ed o o he luo oquinolones; o ins ance, he ac i i y o
le o loxacin, moxi loxacin, and o loxacin is also a ec ed by
g ow h in u ine, pH, and anae obiosis (29,30).
To u he alida e his p edic ion, we de eloped a su i al
assay in which bac e ia we e exposed o an ex emely high con-
cen a ion o CIP (app oxima ely 4- old he median concen a-
ion in u ine) wi hin he i s 6h(
21) in u ine adjus ed o di e en
pH alues and in anae obiosis. Ou esul s show ha , especially
unde acidic condi ions, su i al is enhanced 10- old o 100- old
in mos s ains compa ed o he a e seen wi h MH a neu al pH.
Fu he mo e, mos LLQR s ains showed a ela i ely small (1 o 2
log) dec ease in iabili y, despi e he high CIP concen a ion ha
was used. In con as , he s ain lacking any FQ esis ance de e -
minan (ATCC 25922) was unable o cope wi h he simula ed CIP
ea men , highligh ing he impo ance o LLQR mu a ions in
ea men ailu e. Once again, hese esul s aise issues ega ding
FIG 4 Su i al a es o E. coli isogenic s ains ea ed wi h 1,000 ␮g/ml o CIP a e 6 h unde anae obic condi ions. Su i al a es we e calcula ed by di iding he
numbe o CFU pe millili e a e CIP incuba ion by he alue ob ained a ime ze o. All esul s we e ob ained by a leas h ee independen expe imen s. E o
ba s ep esen s anda d de ia ions. As e isks deno e s a is ically signi ican di e ences (P⬍0.05 [S uden =s es ]) be ween condi ions in compa ison o he
espec i e su i al a e in Muelle -Hin on o e e y s ain.
Ma ín-Gu ié ez e al.
4256 aac.asm.o g July 2016 Volume 60 Numbe 7An imic obial Agen s and Chemo he apy
on July 24, 2017 by USE/BCTA.GEN UNIVERSITARIAh p://aac.asm.o g/Downloaded om

he clinical success o CIP agains LLQR s ains unde physiolog-
ical condi ions and should be in e p e ed as cau iona y.
Despi e he gene al belie ha mul iple mu a ions a e equi ed
o gene a e clinically impo an esis ance in E. coli (31), he e-
sul s p esen ed he e show ha UTIs could p oduce ideal condi-
ions o he gene a ion and selec ion o single LLQR mu an s.
Fu he mo e, he high su i al a es ha we ound upon CIP ex-
posu e could be a de e mining ac o in he de elopmen o mul-
is ep esis ance mu an s. FQs ha e been demons a ed o ac as
mu agens and o ha e a s imula o y e ec on ecombina ion e-
quency (32,33), accele a ing bac e ial e olu ion and an ibio ic
esis ance. I is concei able, he e o e, ha in u ine a low pH,
p e alen mu a ions con e ing LLQR such as Gy A S83L could
p o ide he basal le el o esis ance needed o wi hs and he i s
hou s o ea men . This may p o ide a window o he eme gence
o u he esis ance ueled by he mu agenic e ec o CIP. In
ag eemen , i has been epo ed ha pa ien s p e iously ea ed
wi h FQ a e p one o u ina y ac in ec ion caused by CIP- esis-
an E. coli (34). In summa y, u ina y ac condi ions may ep e-
sen an en i onmen in which LLQR mu an s would be selec ed
unde condi ions o ea men wi h CIP (and possibly o he FQs).
This could explain, a leas pa ially, he high p e alence o hese
mu a ions and aises conce ns abou he app op ia eness o CIP
ea men s when LLQR s ains a e de ec ed.
Conce ning he clinical and physiological cha ac e is ics o pa-
ien s wi h UTI caused by E. coli, he e a e se e al ac o s ha
should be aken in o conside a ion when CIP is employed. I has
been epo ed ha he composi ion o he die a ec s he acid-
base balance in he body. A highe p o ein in ake signi ican ly
inc eases enal acid exc e ion by inc easing ammonium ou pu ,
hus acidi ying he u ine (35,36). Mo eo e , he e ec o u ine pH
on CIP ac i i y may become ele an in pa ien s wi h ce ain un-
de lying diseases. Thus, i is known ha pa ien s wi h hype en-
sion a e associa ed wi h a lowe u ina y ci a e le el and a highe
le el o acid exc e ion, esul ing in lowe u ine pH alues (37).
This e ec can also be ound in pa ien s wi h ype 2 diabe es o
me abolic acidosis (38,39). The e a e some pa ien cha ac e is ics
ha a e ela ed o lowe pH alues in u ine, such as olde age o
highe body weigh (38,40,41). Some medica ions, such as loop
diu e ics o mine aloco icoids, can also acidi y u ine (42,43).
The e o e, ea men wi h CIP o UTI in pa ien s wi h ac o s
ela ed o u ine acidi ica ion could esul in he apeu ic ailu e
and inc eased selec i e p essu e, p omo ing he de elopmen o
bac e ial esis ance. Thus, u ina y pH alues could ha e p ac ical
in e es in he managemen o hese pa ien s, whe e he physician
should selec he cou se bes sui ed o he indi idual pa ien : ei he
basi ying he u ine by alkaliniza ion (e.g., by he use o po assium
ci a e o sodium bica bona e) (44,45) wi h he aim o inc easing
he ac i i y o CIP o elec ing o use o he an ibio ics no a ec ed
by low pH alues.
ACKNOWLEDGMENT
We a e g a e ul o Michael McConnell o use ul scien i ic commen s and
English e ision o he manusc ip .
FUNDING INFORMATION
This wo k was suppo ed by he Subdi ección Gene al de Redes y Cen os
de In es igación Coope a i a, Minis e io de Economía y Compe i i idad,
Ins i u o de Salud Ca los III, Spanish Ne wo k o Resea ch in In ec ious
Diseases (g an RD12/0015/0012; REIPI RD12/0015/0012), co inanced by
Eu opean De elopmen Regional Fund ⬙A way o achie e Eu ope⬙ERDF,
and Fondo de In es igación Sani a ia (g an PI13/00063).
REFERENCES
1. an de S a e WE, an Nieuwkoop C, Pal ansing S, an’ Wou JW,
G oene eld GH, Becke MJ, Kos e T, Wa el-Louis GH, Del os NM,
Ablij HC, Ley en EMS, Blom JW, an Dissel JT. 2011. Risk ac o s o
luo oquinolone- esis an Esche ichia coli in adul s wi h communi y-
onse eb ile u ina y ac in ec ion. J An imic ob Chemo he 66:650–
656. h p://dx.doi.o g/10.1093/jac/dkq465.
2. E ienne M, Le eb e E, F ebou g N, Hamel H, Pes el-Ca on M, Ca on
F, Bacys S udy G oup. 2014. An ibio ic ea men o acu e uncompli-
ca ed cys i is based on apid u ine es and local epidemiology: lessons
om a p ima y ca e se ies. BMC In ec Dis 14:137. h p://dx.doi.o g/10
.1186/1471-2334-14-137.
3. an den B oek d’Ob enan J, Ve heij TJ, Numans ME, an de Velden
AW. 2014. An ibio ic use in Du ch p ima y ca e: ela ion be ween diag-
nosis, consul a ion and ea men . J An imic ob Chemo he 69:1701–
1707. h p://dx.doi.o g/10.1093/jac/dku005.
4. Gup a K, Hoo on TM, Nabe KG, Wull B, Colgan R, Mille LG, Mo an
GJ, Nicolle LE, Raz R, Schae e AJ, Sope DE; In ec ious Diseases
Socie y o Ame ica; Eu opean Socie y o Mic obiology and In ec ious
Diseases. 2011. In e na ional clinical p ac ice guidelines o he ea men
o acu e uncomplica ed cys i is and pyeloneph i is in women: a 2010 up-
da e by he In ec ious Diseases Socie y o Ame ica and he Eu opean So-
cie y o Mic obiology and In ec ious Diseases. Clin In ec Dis 52:e103–
e120. h p://dx.doi.o g/10.1093/cid/ciq257.
5. Pa asu aman R, Julian K; AST In ec ious Diseases Communi y o
P ac ice. 2013. U ina y ac in ec ions in solid o gan ansplan a ion. Am
J T ansplan 13(Suppl 4):S327–S336. h p://dx.doi.o g/10.1111/aj .12124.
6. Aypak C, Al unsoy A, Düzgün N. 2009. Empi ic an ibio ic he apy in
acu e uncomplica ed u ina y ac in ec ions and luo oquinolone esis-
ance: a p ospec i e obse a ional s udy. Ann Clin Mic obiol An imic ob
8:27. h p://dx.doi.o g/10.1186/1476-0711-8-27.
7. Lau enbach E, S om BL, Nachamkin I, Bilke WB, Ma AM, La osa
LA, Fishman NO. 2004. Longi udinal ends in luo oquinolone esis-
ance among En e obac e iaceae isola es om inpa ien s and ou pa ien s,
1989–2000: di e ences in he eme gence and epidemiology o esis ance
ac oss o ganisms. Clin In ec Dis 38:655–662. h p://dx.doi.o g/10.1086
/381549.
8. Takahashi A, Mu a ani T, Yasuda M, Takahashi S, Monden K, Ishikawa
K, Kiyo a H, A akawa S, Ma sumo o T, Shima H, Ku azono H,
Yamamo o S. 2009. Gene ic p o iles o luo oquinolone- esis an Esche-
ichia coli isola es ob ained om pa ien s wi h cys i is: phylogeny, i u-
lence ac o s, PAIusp sub ypes, and mu a ion pa e ns. J Clin Mic obiol
47:791–795. h p://dx.doi.o g/10.1128/JCM.01740-08.
9. Komp Lindg en P, Ka lsson A, Hughes D. 2003. Mu a ion a e and
e olu ion o luo oquinolone esis ance in Esche ichia coli isola es om
pa ien s wi h u ina y ac in ec ions. An imic ob Agen s Chemo he 47:
3222–3232. h p://dx.doi.o g/10.1128/AAC.47.10.3222-3232.2003.
10. Hoope DC, Jacoby GA. 17 July 2015. Mechanisms o d ug esis ance:
quinolone esis ance. Ann N Y Acad Sci h p://dx.doi.o g/10.1111/nyas
.12830.
11. Ma in SJ, Coles R, Me ell M, McMillin GA. 2008. Quan i a ion o
benzodiazepines in u ine, se um, plasma, and meconium by LC-MS-MS.
J Anal Toxicol 32:491–498. h p://dx.doi.o g/10.1093/ja /32.7.491.
12. Bilob o VM, Chugaj AV, Bessa abo VI. 1990. U ine pH a ia ion
dynamics in heal hy indi iduals and s one o me s. U ol In 45:326–331.
h p://dx.doi.o g/10.1159/000281730.
13. Giannakopoulos X, E angelou A, Kal akakou V, G ammenia is E, Pa-
pand opoulos I, Cha alambopoulos K. 1997. Human bladde u ine ox-
ygen con en : implica ions o u ina y ac diseases. In U ol Neph ol
29:393–401. h p://dx.doi.o g/10.1007/BF02551103.
14. Völgyi G, Vizse álek G, Takács-No ák K, A dee A, Tam KY. 2012.
P edic ing he exposu e and an ibac e ial ac i i y o luo oquinolones
based on physicochemical p ope ies. Eu J Pha m Sci 47:21–27. h p://dx
.doi.o g/10.1016/j.ejps.2012.04.022.
15. O’Shea R, Mose HE. 2008. Physicochemical p ope ies o an ibac e ial
compounds: implica ions o d ug disco e y. J Med Chem 51:2871–2878.
h p://dx.doi.o g/10.1021/jm700967e.
16. Smi h SM, Eng RH, Che ubin CE. 1988. Condi ions a ec ing he esul s
LLQR E. coli Resis ance in UTI
July 2016 Volume 60 Numbe 7 aac.asm.o g 4257An imic obial Agen s and Chemo he apy
on July 24, 2017 by USE/BCTA.GEN UNIVERSITARIAh p://aac.asm.o g/Downloaded om
o suscep ibili y es ing o he quinolone compounds. Chemo he apy 34:
308–314. h p://dx.doi.o g/10.1159/000238584.
17. Zeile HJ. 1985. In luence o pH and human u ine on he an ibac e ial
ac i i y o cip o loxacin, no loxacin and o loxacin. D ugs Exp Clin Res
11:335–338.
18. Zhanel GG, Ka lowsky JA, Da idson RJ, Hoban DJ. 1991. In luence o
human u ine on he in i o ac i i y and pos an ibio ic e ec o cip o-
loxacin agains Esche ichia coli. Chemo he apy 37:218–223. h p://dx
.doi.o g/10.1159/000238857.
19. Aagaa d J, Gasse T, Rhodes P, Madsen PO. 1991. MICs o cip o loxacin
and ime hop im o Esche ichia coli: in luence o pH, inoculum size and
a ious body luids. In ec ion 19(Suppl 3):S167–S169.
20. Linde H-J, Lehn N. 2004. Mu an p e en ion concen a ion o nalidixic
acid, cip o loxacin, clina loxacin, le o loxacin, no loxacin, o loxacin,
spa loxacin o o a loxacin o Esche ichia coli unde di e en g ow h
condi ions. J An imic ob Chemo he 53:252–257. h p://dx.doi.o g/10
.1093/jac/dkh036.
21. Wagenlehne FME, Kinzig-Schippe s M, Sö gel F, Weidne W, Nabe
KG. 2006. Concen a ions in plasma, u ina y exc e ion and bac e icidal
ac i i y o le o loxacin (500 mg) e sus cip o loxacin (500 mg) in heal hy
olun ee s ecei ing a single o al dose. In J An imic ob Agen s 28:551–
559. h p://dx.doi.o g/10.1016/j.ijan imicag.2006.07.026.
22. Hopkins KL, Da ies RH, Th el all EJ. 2005. Mechanisms o quinolone
esis ance in Esche ichia coli and Salmonella: ecen de elopmen s. In J
An imic ob Agen s 25:358–373. h p://dx.doi.o g/10.1016/j.ijan imicag
.2005.02.006.
23. Machuca J, B iales A, Lab ado G, Díaz-de-Alba P, López-Rojas R,
Docobo-Pé ez F, Ma ínez-Ma ínez L, Rod íguez-Baño J, Pachón ME,
Pascual Á Rod íguez-Ma ínez J-M. 2014. In e play be ween plasmid-
media ed and ch omosomal-media ed luo oquinolone esis ance and
bac e ial i ness in Esche ichia coli. J An imic ob Chemo he 69:3203–
3215. h p://dx.doi.o g/10.1093/jac/dku308.
24. Clinical and Labo a o y S anda ds Ins i u e. 2015. Me hods o dilu ion
an imic obial suscep ibili y es s o bac e ia ha g ow ae obically; ap-
p o ed s anda d— 10 h ed. CLSI documen M07-A10. Clinical and Lab-
o a o y S anda ds Ins i u e, Wayne, PA.
25. So W, C andon JL, Nicolau DP. 2015. E ec s o u ine ma ix and pH on
he po ency o dela loxacin and cip o loxacin agains u ogenic Esche ichia
coli and Klebsiella pneumoniae. J U ol 194:563–570. h p://dx.doi.o g/10
.1016/j.ju o.2015.01.094.
26. Ba y AL. 1990. In i o ac i i y o he quinolones and ela ed compounds,
p 79–105. In Sipo in C, Hei e z CL, Domagala JM (ed), The new gene a-
ion o quinolones. Ma cel Dekke , New Yo k, NY.
27. Mille LG, Meh o a R, Tang AW. 2007. Does in i o luo oquinolone
esis ance p edic clinical ailu e in u ina y ac in ec ions? In J An imi-
c ob Agen s 29:605–607. h p://dx.doi.o g/10.1016/j.ijan imicag.2006.11
.021.
28. Sánchez Na a o MD, Coloma Milano C, Za zuelo Cas añeda A, Say-
ale o Ma ine o ML, Sánchez-Na a o A. 2002. Pha macokine ics o
cip o loxacin as a ool o op imise dosage schedules in communi y pa-
ien s. Clin Pha macokine 41:1213–1220. h p://dx.doi.o g/10.2165
/00003088-200241140-00005.
29. Lewin CS, Mo issey I, Smi h JT. 1991. The mode o ac ion o quino-
lones: he pa adox in ac i i y o low and high concen a ions and ac i i y
in he anae obic en i onmen . Eu J Clin Mic obiol In ec Dis 10:240–
248. h p://dx.doi.o g/10.1007/BF01966996.
30. E dogan-Yildi im Z, Bu ian A, Mana i M, Zei linge M. 2011. Impac o
pH on bac e ial g ow h and ac i i y o ecen luo oquinolones in pooled
u ine. Res Mic obiol 162:249–252. h p://dx.doi.o g/10.1016/j. esmic
.2011.01.004.
31. Hoope DC. 2001. Eme ging mechanisms o luo oquinolone esis ance.
Eme g In ec Dis 7:337–341. h p://dx.doi.o g/10.3201/eid0702.010239.
32. Gocke E. 1991. Mechanism o quinolone mu agenici y in bac e ia. Mu a
Res 248:135–143. h p://dx.doi.o g/10.1016/0027-5107(91)90095-6.
33. López E, Elez M, Ma ic I, Blázquez J. 2007. An ibio ic-media ed ecom-
bina ion: cip o loxacin s imula es SOS-independen ecombina ion o di-
e gen sequences in Esche ichia coli. Mol Mic obiol 64:83–93. h p://dx
.doi.o g/10.1111/j.1365-2958.2007.05642.x.
34. Ena J, Amado C, Ma inez C, O iz de la Tabla V. 1995. Risk ac o s o
acquisi ion o u ina y ac in ec ions caused by cip o loxacin esis an
Esche ichia coli. J U ol 153:117–120. h p://dx.doi.o g/10.1097/00005392
-199501000-00040.
35. Reme T, Manz F. 1995. Po en ial enal acid load o oods and i s in lu-
ence on u ine pH. J Am Die Assoc 95:791–797. h p://dx.doi.o g/10.1016
/S0002-8223(95)00219-7.
36. Reme T. 2000. In luence o die on acid-base balance. Semin Dial
13:221–226.
37. Losi o A, Nunzi EG, Co a elli C, Nunzi E, Fe a a G. 2009. Inc eased
acid exc e ion in kidney s one o me s wi h essen ial hype ension. Neph-
ol Dial T ansplan 24:137–141.
38. Came on MA, Maalou NM, Adams-Hue B, Moe OW, Sakhaee K.
2006. U ine composi ion in ype 2 diabe es: p edisposi ion o u ic acid
neph oli hiasis. J Am Soc Neph ol 17:1422–1428. h p://dx.doi.o g/10
.1681/ASN.2005121246.
39. Be end K, de V ies APJ, Gans ROB. 2014. Physiological app oach o
assessmen o acid-base dis u bances. N Engl J Med 371:1434–1445. h p:
//dx.doi.o g/10.1056/NEJM a1003327.
40. Maalou NM, Sakhaee K, Pa ks JH, Coe FL, Adams-Hue B, Pak CY.
2004. Associa ion o u ina y pH wi h body weigh in neph oli hiasis.
Kidney In 65:1422–1425. h p://dx.doi.o g/10.1111/j.1523-1755.2004
.00522.x.
41. Apa icio VA, Nebo E, Ga cía-del Mo al R, Machado-Vílchez M, Po es
JM, Sánchez C, A anda P. 2013. Die as hipe p o eicas y es ado enal en
a as. Nu Hosp 28:232–237.
42. Fe ando SJ, Le enson JL, Owen JA (ed). 2010. Clinical manual o
psychopha macology in he medically ill. Ame ican Psychia ic Publish-
ing, Washing on, DC.
43. Ko esdy CP. 2012. Me abolic acidosis and kidney disease: does bica bon-
a e he apy slow he p og ession o CKD? Neph ol Dial T ansplan 27:
3056–3062. h p://dx.doi.o g/10.1093/nd /g s291.
44. Fjells ed E, Dennebe g T, Jeppsson J-O, Tiselius H-G. 2001. A com-
pa ison o he e ec s o po assium ci a e and sodium bica bona e in he
alkaliniza ion o u ine in homozygous cys inu ia. U ol Res 29:295–302.
h p://dx.doi.o g/10.1007/s002400100200.
45. Kambe i M, Tsu sumi K, Ko egawa T, Kawano K, Nakamu a K, Niki Y,
Nakano S. 1999. In luences o u ina y pH on cip o loxacin pha macoki-
ne ics in humans and an imic obial ac i i y in i o e sus hose o spa -
loxacin. An imic ob Agen s Chemo he 43:525–529.
Ma ín-Gu ié ez e al.
4258 aac.asm.o g July 2016 Volume 60 Numbe 7An imic obial Agen s and Chemo he apy
on July 24, 2017 by USE/BCTA.GEN UNIVERSITARIAh p://aac.asm.o g/Downloaded om