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1.
mBio ; 15(2): e0255423, 2024 Feb 14.
Artigo em Inglês | MEDLINE | ID: mdl-38270443

RESUMO

Millions suffer from urinary tract infections (UTIs) worldwide every year with women accounting for the majority of cases. Uropathogenic Escherichia coli (UPEC) causes most of these primary infections and leads to 25% becoming recurrent or chronic. To repel invading pathogens, the urinary tract mounts a vigorous innate immune response that includes the secretion of antimicrobial peptides (AMPs), rapid recruitment of phagocytes, and exfoliation of superficial umbrella cells. Here, we investigate secretory leukocyte protease inhibitor (SLPI), an AMP with antiprotease, antimicrobial, and immunomodulatory functions, known to play protective roles at other mucosal sites, but not well characterized in UTIs. Using a preclinical model of UPEC-caused UTI, we show that urine SLPI increases in infected mice and that SLPI is localized to bladder epithelial cells. UPEC-infected SLPI-deficient (Slpi-/-) mice suffer from higher urine bacterial burdens, prolonged bladder inflammation, and elevated urine neutrophil elastase (NE) levels compared to wild-type (Slpi+/+) controls. Combined with bulk bladder RNA sequencing, our data indicate that Slpi-/- mice have a dysregulated immune and tissue repair response following UTI. We also measure SLPI in urine samples from a small group of female subjects 18-49 years old and find that SLPI tends to be higher in the presence of a uropathogen, except in patients with a history of recent or recurrent UTI, suggesting a dysregulation of SLPI expression in these women. Taken together, our findings show SLPI promotes clearance of UPEC in mice and provides preliminary evidence that SLPI is likewise regulated in response to uropathogen exposure in women.IMPORTANCEAnnually, millions of people suffer from urinary tract infections (UTIs) and more than $3 billion are spent on work absences and treatment of these patients. While the early response to UTI is known to be important in combating urinary pathogens, knowledge of host factors that help curb infection is still limited. Here, we use a preclinical model of UTI to study secretory leukocyte protease inhibitor (SLPI), an antimicrobial protein, to determine how it protects the bladder against infection. We find that SLPI is increased during UTI, accelerates the clearance of bacteriuria, and upregulates genes and pathways needed to fight an infection while preventing prolonged bladder inflammation. In a small clinical study, we show SLPI is readily detectable in human urine and is associated with the presence of a uropathogen in patients without a previous history of UTI, suggesting SLPI may play an important role in protecting from bacterial cystitis.


Assuntos
Anti-Infecciosos , Cistite , Infecções por Escherichia coli , Infecções Urinárias , Escherichia coli Uropatogênica , Adolescente , Adulto , Animais , Feminino , Humanos , Camundongos , Pessoa de Meia-Idade , Adulto Jovem , Infecções por Escherichia coli/microbiologia , Inibidor Secretado de Peptidases Leucocitárias/genética , Infecções Urinárias/microbiologia , Escherichia coli Uropatogênica/genética
2.
Nat Microbiol ; 8(5): 875-888, 2023 05.
Artigo em Inglês | MEDLINE | ID: mdl-37037942

RESUMO

Previous urinary tract infections (UTIs) can predispose one to future infections; however, the underlying mechanisms affecting recurrence are poorly understood. We previously found that UTIs in mice cause differential bladder epithelial (urothelial) remodelling, depending on disease outcome, that impacts susceptibility to recurrent UTI. Here we compared urothelial stem cell (USC) lines isolated from mice with a history of either resolved or chronic uropathogenic Escherichia coli (UPEC) infection, elucidating evidence of molecular imprinting that involved epigenetic changes, including differences in chromatin accessibility, DNA methylation and histone modification. Epigenetic marks in USCs from chronically infected mice enhanced caspase-1-mediated cell death upon UPEC infection, promoting bacterial clearance. Increased Ptgs2os2 expression also occurred, potentially contributing to sustained cyclooxygenase-2 expression, bladder inflammation and mucosal wounding-responses associated with severe recurrent cystitis. Thus, UPEC infection acts as an epi-mutagen reprogramming the urothelial epigenome, leading to urothelial-intrinsic remodelling and training of the innate response to subsequent infection.


Assuntos
Infecções por Escherichia coli , Infecções Urinárias , Escherichia coli Uropatogênica , Camundongos , Animais , Escherichia coli Uropatogênica/genética , Imunidade Treinada , Infecções Urinárias/microbiologia , Bexiga Urinária/microbiologia , Infecções por Escherichia coli/microbiologia
3.
Elife ; 82019 08 20.
Artigo em Inglês | MEDLINE | ID: mdl-31429405

RESUMO

A mucosal infectious disease episode can render the host either more or less susceptible to recurrent infection, but the specific mechanisms that tip the balance remain unclear. We investigated this question in a mouse model of recurrent urinary tract infection and found that a prior bladder infection resulted in an earlier onset of tumor necrosis factor-alpha (TNFɑ)-mediated bladder inflammation upon subsequent bacterial challenge, relative to age-matched naive mice. However, the duration of TNFɑ signaling activation differed according to whether the first infection was chronic (Sensitized) or self-limiting (Resolved). TNFɑ depletion studies revealed that transient early-phase TNFɑ signaling in Resolved mice promoted clearance of bladder-colonizing bacteria via rapid recruitment of neutrophils and subsequent exfoliation of infected bladder cells. In contrast, sustained TNFɑ signaling in Sensitized mice prolonged damaging inflammation, worsening infection. This work reveals how TNFɑ signaling dynamics can be rewired by a prior infection to shape diverse susceptibilities to future mucosal infections.


Assuntos
Imunidade nas Mucosas , Fatores Imunológicos/metabolismo , Transdução de Sinais , Fator de Necrose Tumoral alfa/metabolismo , Infecções Urinárias/imunologia , Animais , Modelos Animais de Doenças , Camundongos , Recidiva , Prevenção Secundária
4.
PLoS Pathog ; 14(12): e1007457, 2018 12.
Artigo em Inglês | MEDLINE | ID: mdl-30543708

RESUMO

Urinary tract infections (UTI) are extremely common and can be highly recurrent, with 1-2% of women suffering from six or more recurrent episodes per year. The high incidence of recurrent UTI, including recurrent infections caused by the same bacterial strain that caused the first infection, suggests that at least some women do not mount a protective adaptive immune response to UTI. Here we observed in a mouse model of cystitis (bladder infection) that infection with two different clinical uropathogenic Escherichia coli (UPEC) isolates, UTI89 or CFT073, resulted in different kinetics of bacterial clearance and different susceptibility to same-strain recurrent infection. UTI89 and CFT073 both caused infections that persisted for at least two weeks in similar proportions of mice, but whereas UTI89 infections could persist indefinitely, CFT073 infections began to clear two weeks after inoculation and were uniformly cleared within eight weeks. Mice with a history of CFT073 cystitis lasting four weeks were protected against recurrent CFT073 infection after antibiotic therapy, but were not protected against challenge with UTI89. In contrast, mice with a history of UTI89 cystitis lasting four weeks were highly susceptible to challenge infection with either strain after antibiotic treatment. We found that depletion of CD4+ and CD8+ T cell subsets impaired the ability of the host to clear CFT073 infections and rendered mice with a history of CFT073 cystitis lasting four weeks susceptible to recurrent CFT073 cystitis upon challenge. Our findings demonstrate the complex interplay between the broad genetic diversity of UPEC and the host innate and adaptive immune responses during UTI. A better understanding of these host-pathogen interactions is urgently needed for effective drug and vaccine development in the era of increasing antibiotic resistance.


Assuntos
Cistite/imunologia , Suscetibilidade a Doenças/imunologia , Infecções por Escherichia coli/imunologia , Interações Hospedeiro-Patógeno/imunologia , Escherichia coli Uropatogênica/imunologia , Animais , Camundongos , Escherichia coli Uropatogênica/genética
5.
Expert Opin Drug Discov ; 12(7): 711-731, 2017 07.
Artigo em Inglês | MEDLINE | ID: mdl-28506090

RESUMO

INTRODUCTION: The bacterial adhesin FimH is a virulence factor and an attractive therapeutic target for urinary tract infection (UTI) and Crohn's Disease (CD). Located on type 1 pili of uropathogenic E. coli (UPEC), the FimH adhesin plays an integral role in the pathogenesis of UPEC. Recent efforts have culminated in the development of small-molecule mannoside FimH antagonists that target the mannose-binding lectin domain of FimH, inhibiting its function and preventing UPEC from binding mannosylated host cells in the bladder, thereby circumventing infection. Areas covered: The authors describe the structure-guided design of mannoside ligands, and review the structural biology of the FimH lectin domain. Additionally, they discuss the lead optimization of mannosides for therapeutic application in UTI and CD, and describe various assays used to measure mannoside potency in vitro and mouse models used to determine efficacy in vivo. Expert opinion: To date, mannoside optimization has led to a diverse set of small-molecule FimH antagonists with oral bioavailability. With clinical trials already initiated in CD and on the horizon for UTI, it is the authors, opinion that mannosides will be a 'first-in-class' treatment strategy for UTI and CD, and will pave the way for treatment of other Gram-negative bacterial infections.


Assuntos
Doença de Crohn/tratamento farmacológico , Proteínas de Fímbrias/antagonistas & inibidores , Infecções Urinárias/tratamento farmacológico , Adesinas de Escherichia coli , Animais , Antibacterianos/administração & dosagem , Antibacterianos/farmacocinética , Antibacterianos/farmacologia , Disponibilidade Biológica , Doença de Crohn/microbiologia , Modelos Animais de Doenças , Desenho de Fármacos , Infecções por Escherichia coli/tratamento farmacológico , Infecções por Escherichia coli/microbiologia , Humanos , Manosídeos/administração & dosagem , Manosídeos/farmacocinética , Manosídeos/farmacologia , Camundongos , Relação Estrutura-Atividade , Infecções Urinárias/microbiologia , Escherichia coli Uropatogênica/isolamento & purificação
6.
Sci Transl Med ; 9(382)2017 03 22.
Artigo em Inglês | MEDLINE | ID: mdl-28330863

RESUMO

Urinary tract infections (UTIs) are caused by uropathogenic Escherichia coli (UPEC) strains. In contrast to many enteric E. coli pathogroups, no genetic signature has been identified for UPEC strains. We conducted a high-resolution comparative genomic study using E. coli isolates collected from the urine of women suffering from frequent recurrent UTIs. These isolates were genetically diverse and varied in their urovirulence, that is, their ability to infect the bladder in a mouse model of cystitis. We found no set of genes, including previously defined putative urovirulence factors (PUFs), that were predictive of urovirulence. In addition, in some patients, the E. coli strain causing a recurrent UTI had fewer PUFs than the supplanted strain. In competitive experimental infections in mice, the supplanting strain was more efficient at colonizing the mouse bladder than the supplanted strain. Despite the lack of a clear genomic signature for urovirulence, comparative transcriptomic and phenotypic analyses revealed that the expression of key conserved functions during culture, such as motility and metabolism, could be used to predict subsequent colonization of the mouse bladder. Together, our findings suggest that UTI risk and outcome may be determined by complex interactions between host susceptibility and the urovirulence potential of diverse bacterial strains.


Assuntos
Suscetibilidade a Doenças , Infecções por Escherichia coli/microbiologia , Escherichia coli/patogenicidade , Interações Hospedeiro-Patógeno , Infecções Urinárias/microbiologia , Animais , Biomarcadores/metabolismo , Doença Crônica , Coinfecção/microbiologia , Contagem de Colônia Microbiana , Cistite/microbiologia , Cistite/patologia , Escherichia coli/genética , Escherichia coli/isolamento & purificação , Feminino , Regulação Bacteriana da Expressão Gênica , Humanos , Camundongos , Camundongos Endogâmicos , Fenótipo , Filogenia , Recidiva , Fatores de Risco , Índice de Gravidade de Doença , Resultado do Tratamento , Urina/microbiologia , Virulência/genética , Fatores de Virulência/metabolismo
7.
Methods Mol Biol ; 1333: 159-75, 2016.
Artigo em Inglês | MEDLINE | ID: mdl-26468108

RESUMO

Urinary tract infections (UTI) are among the most common bacterial infections of humans. The mouse provides an excellent and tractable model system for cystitis and pyelonephritis caused by Escherichia coli and other uropathogens. Using a well-established model of experimental cystitis in which the bladders of female mice are infected via transurethral catheterization, the molecular details of the pathogenesis of bacterial cystitis have been substantially illuminated in the last decade. Uropathogenic E. coli attach to bladder epithelium (both in human and mouse) via adhesive type 1 pili, establish a replicative niche within epithelial cell cytoplasm, and form intracellular bacterial communities that are protected from antibiotic effects and immune clearance. The use of different inbred and mutant mouse strains offers the opportunity to study outcomes of infection, including resolution, formation of quiescent intracellular bacterial reservoirs, chronic bacterial cystitis, and recurrent infections. Urine, bladder, and kidney tissues can be analyzed by bacterial culture, histology, immunohistochemistry, immunofluorescent and confocal microscopy, electron microscopy, and flow cytometry, while a broad array of soluble markers (e.g., cytokines) can also be profiled in serum, urine, and tissue homogenates by ELISA, Western blotting, multiplex bead array, and other approaches. This model promises to afford continued opportunity for discovery of pathogenic mechanisms and evaluation of therapeutic and preventive strategies for acute, chronic, and recurrent UTI.


Assuntos
Cistite/microbiologia , Infecções Urinárias/microbiologia , Escherichia coli Uropatogênica/patogenicidade , Animais , Cistite/tratamento farmacológico , Cistite/patologia , Modelos Animais de Doenças , Feminino , Citometria de Fluxo , Humanos , Camundongos , Bexiga Urinária/microbiologia , Bexiga Urinária/patologia , Cateteres Urinários/efeitos adversos , Cateteres Urinários/microbiologia , Infecções Urinárias/tratamento farmacológico , Infecções Urinárias/patologia , Escherichia coli Uropatogênica/genética , Urotélio/microbiologia , Urotélio/patologia
8.
PLoS Pathog ; 11(1): e1004599, 2015 Jan.
Artigo em Inglês | MEDLINE | ID: mdl-25569799

RESUMO

Urinary tract infections (UTIs) afflict over 9 million women in America every year, often necessitating long-term prophylactic antibiotics. One risk factor for UTI is frequent sexual intercourse, which dramatically increases the risk of UTI. The mechanism behind this increased risk is unknown; however, bacteriuria increases immediately after sexual intercourse episodes, suggesting that physical manipulation introduces periurethral flora into the urinary tract. In this paper, we investigated whether superinfection (repeat introduction of bacteria) resulted in increased risk of severe UTI, manifesting as persistent bacteriuria, high titer bladder bacterial burdens and chronic inflammation, an outcome referred to as chronic cystitis. Chronic cystitis represents unchecked luminal bacterial replication and is defined histologically by urothelial hyperplasia and submucosal lymphoid aggregates, a histological pattern similar to that seen in humans suffering chronic UTI. C57BL/6J mice are resistant to chronic cystitis after a single infection; however, they developed persistent bacteriuria and chronic cystitis when superinfected 24 hours apart. Elevated levels of interleukin-6 (IL-6), keratinocyte cytokine (KC/CXCL1), and granulocyte colony-stimulating factor (G-CSF) in the serum of C57BL/6J mice prior to the second infection predicted the development of chronic cystitis. These same cytokines have been found to precede chronic cystitis in singly infected C3H/HeN mice. Furthermore, inoculating C3H/HeN mice twice within a six-hour period doubled the proportion of mice that developed chronic cystitis. Intracellular bacterial replication, regulated hemolysin (HlyA) expression, and caspase 1/11 activation were essential for this increase. Microarrays conducted at four weeks post inoculation in both mouse strains revealed upregulation of IL-1 and antimicrobial peptides during chronic cystitis. These data suggest a mechanism by which caspase-1/11 activation and IL-1 secretion could predispose certain women to recurrent UTI after frequent intercourse, a predisposition predictable by several serum biomarkers in two murine models.


Assuntos
Infecções por Escherichia coli/complicações , Superinfecção/complicações , Infecções Urinárias/complicações , Escherichia coli Uropatogênica/fisiologia , Animais , Cistite/complicações , Cistite/microbiologia , Cistite/patologia , Modelos Animais de Doenças , Progressão da Doença , Infecções por Escherichia coli/patologia , Feminino , Camundongos , Camundongos Endogâmicos C3H , Camundongos Endogâmicos C57BL , Índice de Gravidade de Doença , Superinfecção/patologia , Bexiga Urinária/microbiologia , Bexiga Urinária/patologia , Infecções Urinárias/patologia , Escherichia coli Uropatogênica/patogenicidade
9.
Curr Opin Infect Dis ; 28(1): 97-105, 2015 Feb.
Artigo em Inglês | MEDLINE | ID: mdl-25517222

RESUMO

PURPOSE OF REVIEW: Recurrent urinary tract infection (rUTI) is a serious clinical problem, yet effective therapeutic options are limited, especially against multidrug-resistant uropathogens. In this review, we explore the development of a clinically relevant model of rUTI in previously infected mice and review recent developments in bladder innate immunity that may affect susceptibility to rUTI. RECENT FINDINGS: Chronic bladder inflammation during prolonged bacterial cystitis in mice causes bladder mucosal remodelling that sensitizes the host to rUTI. Although constitutive defenses help prevent bacterial colonization of the urinary bladder, once infection occurs, induced cytokine and myeloid cell responses predominate and the balance of immune cell defense and bladder immunopathology is critical for determining disease outcome, in both naïve and experienced mice. In particular, the maintenance of the epithelial barrier appears to be essential for preventing severe infection. SUMMARY: The innate immune response plays a key role in determining susceptibility to rUTI. Future studies should be directed towards understanding how the innate immune response changes as a result of bladder mucosal remodelling in previously infected mice, and validating these findings in human clinical specimens. New therapeutics targeting the immune response should selectively target the induced innate responses that cause bladder immunopathology, while leaving protective defenses intact.


Assuntos
Infecções por Escherichia coli/patologia , Escherichia coli/patogenicidade , Mucosa/patologia , Bexiga Urinária/patologia , Infecções Urinárias/patologia , Animais , Modelos Animais de Doenças , Suscetibilidade a Doenças , Infecções por Escherichia coli/imunologia , Interações Hospedeiro-Patógeno , Humanos , Imunidade Inata , Camundongos , Mucosa/imunologia , Fatores de Tempo , Bexiga Urinária/microbiologia , Infecções Urinárias/imunologia , Infecções Urinárias/microbiologia
10.
EBioMedicine ; 1(1): 46-57, 2014 Nov.
Artigo em Inglês | MEDLINE | ID: mdl-26125048

RESUMO

The spread of multidrug-resistant microorganisms globally has created an urgent need for novel therapeutic strategies to combat urinary tract infections (UTIs). Immunomodulatory therapy may provide benefit, as treatment of mice with dexamethasone during acute UTI improved outcome by reducing the development of chronic cystitis, which predisposes to recurrent infection. Here we discovered soluble biomarkers engaged in myeloid cell development and chemotaxis that were predictive of future UTI recurrence when elevated in the sera of young women with UTI. Translation of these findings revealed that temperance of the neutrophil response early during UTI, and specifically disruption of bladder epithelial transmigration of neutrophils by inhibition of cyclooxygenase-2, protected mice against chronic and recurrent cystitis. Further, proteomics identified bladder epithelial remodeling consequent to chronic infection that enhances sensitivity to neutrophil damage. Thus, cyclooxygenase-2 expression during acute UTI is a critical molecular trigger determining disease outcome and drugs targeting cyclooxygenase-2 could prevent recurrent UTI.

11.
Sci Transl Med ; 5(190): 190fs23, 2013 Jun 19.
Artigo em Inglês | MEDLINE | ID: mdl-23785033

RESUMO

Estrogen therapy promotes resistance to urinary tract infections in postmenopausal women by altering lower urinary tract mucosal defense mechanisms (Lüthje et al., this issue).


Assuntos
Estrogênios/farmacologia , Urotélio/efeitos dos fármacos , Urotélio/imunologia , Animais , Feminino , Humanos
12.
J Infect Dis ; 208(6): 921-8, 2013 Sep.
Artigo em Inglês | MEDLINE | ID: mdl-23737602

RESUMO

BACKGROUND: Escherichia coli O25b:H4-ST131 represents a predominant clone of multidrug-resistant uropathogens currently circulating worldwide in hospitals and the community. Urinary tract infections (UTIs) caused by E. coli ST131 are typically associated with limited treatment options and are often recurrent. METHODS: Using established mouse models of acute and chronic UTI, we mapped the pathogenic trajectory of the reference E. coli ST131 UTI isolate, strain EC958. RESULTS: We demonstrated that E. coli EC958 can invade bladder epithelial cells and form intracellular bacterial communities early during acute UTI. Moreover, E. coli EC958 persisted in the bladder and established chronic UTI. Prophylactic antibiotic administration failed to prevent E. coli EC958-mediated UTI. However, 1 oral dose of a small-molecular-weight compound that inhibits FimH, the type 1 fimbriae adhesin, significantly reduced bacterial colonization of the bladder and prevented acute UTI. Treatment of chronically infected mice with the same FimH inhibitor lowered their bladder bacterial burden by >1000-fold. CONCLUSIONS: In this study, we provide novel insight into the pathogenic mechanisms used by the globally disseminated E. coli ST131 clone during acute and chronic UTI and establish the potential of FimH inhibitors as an alternative treatment against multidrug-resistant E. coli.


Assuntos
Cistite/tratamento farmacológico , Farmacorresistência Bacteriana Múltipla , Proteínas de Fímbrias/antagonistas & inibidores , Escherichia coli Uropatogênica/isolamento & purificação , Doença Aguda , Adesinas de Escherichia coli , Administração Oral , Animais , Antibacterianos/uso terapêutico , Doença Crônica , Cistite/microbiologia , Cistite/patologia , Modelos Animais de Doenças , Relação Dose-Resposta a Droga , Feminino , Fímbrias Bacterianas/efeitos dos fármacos , Humanos , Camundongos , Camundongos Endogâmicos C3H , Bexiga Urinária/microbiologia
13.
FEMS Microbiol Rev ; 36(3): 616-48, 2012 May.
Artigo em Inglês | MEDLINE | ID: mdl-22404313

RESUMO

Bladder infections affect millions of people yearly, and recurrent symptomatic infections (cystitis) are very common. The rapid increase in infections caused by multidrug-resistant uropathogens threatens to make recurrent cystitis an increasingly troubling public health concern. Uropathogenic Escherichia coli (UPEC) cause the vast majority of bladder infections. Upon entry into the lower urinary tract, UPEC face obstacles to colonization that constitute population bottlenecks, reducing diversity, and selecting for fit clones. A critical mucosal barrier to bladder infection is the epithelium (urothelium). UPEC bypass this barrier when they invade urothelial cells and form intracellular bacterial communities (IBCs), a process which requires type 1 pili. IBCs are transient in nature, occurring primarily during acute infection. Chronic bladder infection is common and can be either latent, in the form of the quiescent intracellular reservoir (QIR), or active, in the form of asymptomatic bacteriuria (ASB/ABU) or chronic cystitis. In mice, the fate of bladder infection, QIR, ASB, or chronic cystitis, is determined within the first 24 h of infection and constitutes a putative host-pathogen mucosal checkpoint that contributes to susceptibility to recurrent cystitis. Knowledge of these checkpoints and bottlenecks is critical for our understanding of bladder infection and efforts to devise novel therapeutic strategies.


Assuntos
Cistite/imunologia , Cistite/microbiologia , Infecções por Escherichia coli/imunologia , Infecções por Escherichia coli/microbiologia , Interações Hospedeiro-Patógeno , Escherichia coli Uropatogênica/imunologia , Escherichia coli Uropatogênica/patogenicidade , Aderência Bacteriana , Bacteriúria/imunologia , Bacteriúria/microbiologia , Doença Crônica , Células Epiteliais/microbiologia , Fímbrias Bacterianas/fisiologia , Humanos , Urotélio/imunologia , Urotélio/microbiologia
14.
PLoS Pathog ; 6(8): e1001042, 2010 Aug 12.
Artigo em Inglês | MEDLINE | ID: mdl-20811584

RESUMO

Chronic infections are an increasing problem due to the aging population and the increase in antibiotic resistant organisms. Therefore, understanding the host-pathogen interactions that result in chronic infection is of great importance. Here, we investigate the molecular basis of chronic bacterial cystitis. We establish that introduction of uropathogenic E. coli (UPEC) into the bladders of C3H mice results in two distinct disease outcomes: resolution of acute infection or development of chronic cystitis lasting months. The incidence of chronic cystitis is both host strain and infectious dose-dependent. Further, development of chronic cystitis is preceded by biomarkers of local and systemic acute inflammation at 24 hours post-infection, including severe pyuria and bladder inflammation with mucosal injury, and a distinct serum cytokine signature consisting of elevated IL-5, IL-6, G-CSF, and the IL-8 analog KC. Mice deficient in TLR4 signaling or lymphocytes lack these innate responses and are resistant, to varying degrees, to developing chronic cystitis. Treatment of C3H mice with the glucocorticoid anti-inflammatory drug dexamethasone prior to UPEC infection also suppresses the development of chronic cystitis. Finally, individuals with a history of chronic cystitis, lasting at least 14 days, are significantly more susceptible to redeveloping severe, chronic cystitis upon bacterial challenge. Thus, we have discovered that the development of chronic cystitis in C3H mice by UPEC is facilitated by severe acute inflammatory responses early in infection, which subsequently are predisposing to recurrent cystitis, an insidious problem in women. Overall, these results have significant implications for our understanding of how early host-pathogen interactions at the mucosal surface determines the fate of disease.


Assuntos
Infecções por Escherichia coli/imunologia , Infecções por Escherichia coli/patologia , Interações Hospedeiro-Patógeno/imunologia , Inflamação/imunologia , Infecções Urinárias/imunologia , Infecções Urinárias/patologia , Animais , Doença Crônica , Citocinas/sangue , Citocinas/imunologia , Escherichia coli/imunologia , Infecções por Escherichia coli/genética , Feminino , Imunofluorescência , Predisposição Genética para Doença , Inflamação/sangue , Inflamação/genética , Camundongos , Camundongos Endogâmicos C3H , Camundongos Endogâmicos C57BL , Infecções Urinárias/genética
15.
Mol Microbiol ; 67(1): 116-28, 2008 Jan.
Artigo em Inglês | MEDLINE | ID: mdl-18036139

RESUMO

Uropathogenic Escherichia coli (UPEC) contain multiple horizontally acquired pathogenicity-associated islands (PAI) implicated in the pathogenesis of urinary tract infection. In a murine model of cystitis, type 1 pili-mediated bladder epithelial invasion and intracellular proliferation are key events associated with UPEC virulence. In this study, we examined the mechanisms by which a conserved PAI contributes to UPEC pathogenesis in acute cystitis. In the human UPEC strain UTI89, spontaneous excision of PAI II(UTI89) disrupts the adjacent leuX tRNA locus. Loss of wild-type leuX-encoded tRNA(5)(Leu) significantly delayed, but did not eliminate, FimB recombinase-mediated phase variation of type 1 pili. FimX, an additional FimB-like, leuX-independent recombinase, was also found to mediate type 1 pili phase variation. However, whereas FimX activity is relatively slow in vitro, it is rapid in vivo as a non-piliated strain lacking the other fim recombinases rapidly expressed type 1 pili upon experimental infection. Finally, we found that disruption of leuX, but not loss of PAI II(UTI89) genes, reduced bladder epithelial invasion and intracellular proliferation, independent of type 1 piliation. These findings indicate that the predominant mechanism for preservation of PAI II(UTI89) during the establishment of acute cystitis is maintenance of wild-type leuX, and not PAI II(UTI89) gene content.


Assuntos
Infecções por Escherichia coli/microbiologia , Escherichia coli/patogenicidade , Integrases/metabolismo , RNA de Transferência de Leucina/metabolismo , Recombinases/metabolismo , Animais , Antibacterianos/farmacologia , Sequência de Bases , Cistite/microbiologia , Escherichia coli/genética , Escherichia coli/metabolismo , Proteínas de Escherichia coli/genética , Proteínas de Escherichia coli/metabolismo , Proteínas de Fímbrias/genética , Proteínas de Fímbrias/metabolismo , Fímbrias Bacterianas/metabolismo , Regulação Bacteriana da Expressão Gênica , Ilhas Genômicas , Gentamicinas/farmacologia , Hemaglutinação , Humanos , Integrases/genética , Camundongos , RNA de Transferência de Leucina/genética , Recombinases/genética , Reação em Cadeia da Polimerase Via Transcriptase Reversa , Deleção de Sequência , Bexiga Urinária/microbiologia , Infecções Urinárias/microbiologia , Urotélio/microbiologia , Virulência
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