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1.
Artigo em Inglês | MEDLINE | ID: mdl-38727516

RESUMO

OBJECTIVES: To identify self-reported meaningful decisions made by parents in the PICU and to determine patient and parent characteristics associated with the development of parental decision regret, a measurable, self-reported outcome associated with psychologic morbidity. DESIGN: Secondary analysis of the Navigate randomized comparative trial (NCT02333396). SETTING: Two tertiary, academic PICUs. PATIENTS: Spanish- or English-speaking parents of PICU patients aged less than 18 years who were expected to remain in the PICU for greater than 24 hours from time of enrollment or who had a risk of mortality greater than 4% based on Pediatric Index of Mortality 2 score. INTERVENTIONS: None. MEASUREMENTS AND MAIN RESULTS: Between April 2015 and March 2017, 233 parents of 209 patients completed a survey 3-5 weeks post-PICU discharge which included the Decision Regret Scale (DRS), a 5-item, 5-point Likert scale tool scored from 0 (no regret) to 100 (maximum regret). Two hundred nine patient/parent dyads were analyzed. The decisions parents reported as most important were categorized as: procedure, respiratory support, medical management, parent-staff interactions and communication, symptom management, fluid/electrolytes/nutrition, and no decision. Fifty-one percent of parents had some decision regret (DRS > 0) with 19% scoring in the moderate-severe range (DRS 26-100). The mean DRS score was 12.7 (sd 18.1). Multivariable analysis showed that parental Hispanic ethnicity was associated with greater odds ratio (OR 3.12 [95% CI, 1.36-7.13]; p = 0.007) of mild regret. Being parents of a patient with an increased PICU length of stay (LOS) or underlying respiratory disease was associated with greater odds of moderate-severe regret (OR 1.03 [95% CI, 1.009-1.049]; p = 0.004 and OR 2.91 [95% CI, 1.22-6.94]; p = 0.02, respectively). CONCLUSIONS: Decision regret was experienced by half of PICU parents in the 2015-2017 Navigate study. The characteristics associated with decision regret (parental ethnicity, PICU LOS, and respiratory disease) are easily identifiable. Further study is needed to understand what contributes to regret in this population and what interventions could provide support and minimize the development of regret.

3.
mBio ; 15(1): e0175123, 2024 Jan 16.
Artigo em Inglês | MEDLINE | ID: mdl-38059640

RESUMO

IMPORTANCE: This paper illuminates the significant question of how the oral commensal Fusobacterium nucleatum adapts to the metabolically changing environments of several extra-oral sites such as placenta and colon to promote various diseases as an opportunistic pathogen. We demonstrate here that the highly conserved Rhodobacter nitrogen-fixation complex, commonly known as Rnf complex, is key to fusobacterial metabolic adaptation and virulence. Genetic disruption of this Rnf complex causes global defects in polymicrobial interaction, biofilm formation, cell growth and morphology, hydrogen sulfide production, and ATP synthesis. Targeted metabolomic profiling demonstrates that the loss of this respiratory enzyme significantly diminishes catabolism of numerous amino acids, which negatively impacts fusobacterial virulence as tested in a preterm birth model in mice.


Assuntos
Fusobacterium nucleatum , Nascimento Prematuro , Recém-Nascido , Gravidez , Humanos , Feminino , Animais , Camundongos , Virulência , Placenta , Simbiose , Complexos Multienzimáticos/metabolismo
4.
bioRxiv ; 2023 Jul 06.
Artigo em Inglês | MEDLINE | ID: mdl-37398403

RESUMO

A prominent oral commensal and opportunistic pathogen, Fusobacterium nucleatum can traverse to extra-oral sites such as placenta and colon, promoting adverse pregnancy outcomes and colorectal cancer, respectively. How this anaerobe sustains many metabolically changing environments enabling its virulence potential remains unclear. Informed by our genome-wide transposon mutagenesis, we report here that the highly conserved Rnf complex, encoded by the rnfCDGEAB gene cluster, is key to fusobacterial metabolic adaptation and virulence. Genetic disruption of the Rnf complex via non-polar, in-frame deletion of rnfC (Δ rnfC ) abrogates polymicrobial interaction (or coaggregation) associated with adhesin RadD and biofilm formation. The defect in coaggregation is not due to reduced cell surface of RadD, but rather an increased level of extracellular lysine, which binds RadD and inhibits coaggregation. Indeed, removal of extracellular lysine via washing Δ rnfC cells restores coaggregation, while addition of lysine inhibits this process. These phenotypes mirror that of a mutant (Δ kamAΔ ) that fails to metabolize extracellular lysine. Strikingly, the Δ rnfC mutant is defective in ATP production, cell growth, cell morphology, and expression of the enzyme MegL that produces hydrogen sulfide from cysteine. Targeted metabolic profiling demonstrated that catabolism of many amino acids, including histidine and lysine, is altered in Δ rnfC cells, thereby reducing production of ATP and metabolites including H2S and butyrate. Most importantly, we show that the Δ rnfC mutant is severely attenuated in a mouse model of preterm birth. The indispensable function of Rnf complex in fusobacterial pathogenesis via modulation of bacterial metabolism makes it an attractive target for developing therapeutic intervention.

5.
Infect Immun ; 86(6)2018 06.
Artigo em Inglês | MEDLINE | ID: mdl-29610259

RESUMO

Campylobacter jejuni is a leading cause of bacterially derived gastroenteritis worldwide. Campylobacter is most commonly acquired through the consumption of undercooked poultry meat or through drinking contaminated water. Following ingestion, Campylobacter adheres to the intestinal epithelium and mucus layer, causing toxin-mediated inflammation and inhibition of fluid reabsorption. Currently, the human response to infection is relatively unknown, and animal hosts that model these responses are rare. As such, we examined patient fecal samples for the accumulation of the neutrophil protein calgranulin C during infection with Campylobacter jejuni In response to infection, calgranulin C was significantly increased in the feces of humans. To determine whether calgranulin C accumulation occurs in an animal model, we examined disease in ferrets. Ferrets were effectively infected by C. jejuni, with peak fecal loads observed at day 3 postinfection and full resolution by day 12. Serum levels of interleukin-10 (IL-10) and tumor necrosis factor alpha (TNF-α) significantly increased in response to infection, which resulted in leukocyte trafficking to the colon. As a result, calgranulin C increased in the feces of ferrets at the time when C. jejuni loads decreased. Further, the addition of purified calgranulin C to C. jejuni cultures was found to inhibit growth in a zinc-dependent manner. These results suggest that upon infection with C. jejuni, leukocytes trafficked to the intestine release calgranulin C as a mechanism for inhibiting C. jejuni growth.


Assuntos
Campylobacter jejuni/crescimento & desenvolvimento , Proteína S100A12/metabolismo , Zinco/metabolismo , Animais , Campylobacter jejuni/efeitos dos fármacos , Colo/citologia , Colo/microbiologia , Feminino , Furões , Humanos , Leucócitos , Masculino , Testes de Sensibilidade Microbiana , Proteína S100A12/genética
6.
J Vis Exp ; (123)2017 05 13.
Artigo em Inglês | MEDLINE | ID: mdl-28570542

RESUMO

Calgranulin proteins are important mediators of innate immunity and are members of the S100 class of the EF-hand family of calcium binding proteins. Some S100 proteins have the capacity to bind transition metals with high affinity and effectively sequester them away from invading microbial pathogens in a process that is termed "nutritional immunity". S100A12 (EN-RAGE) binds both zinc and copper and is highly abundant in innate immune cells such as macrophages and neutrophils. We report a refined method for the expression, enrichment and purification of S100A12 in its active, metal-binding configuration. Utilization of this protein in bacterial growth and viability analyses reveals that S100A12 has antimicrobial activity against the bacterial pathogen, Helicobacter pylori. The antimicrobial activity is predicated on the zinc-binding activity of S100A12, which chelates nutrient zinc, thereby starving H. pylori which requires zinc for growth and proliferation.


Assuntos
Anti-Infecciosos/isolamento & purificação , Proteína S100A12/isolamento & purificação , Anti-Infecciosos/farmacologia , Cobre/metabolismo , Escherichia coli/genética , Helicobacter pylori/efeitos dos fármacos , Humanos , Imunidade Inata , Proteína S100A12/genética , Proteína S100A12/farmacologia , Zinco/metabolismo
7.
Open AIDS J ; 9: 123-33, 2015.
Artigo em Inglês | MEDLINE | ID: mdl-26793282

RESUMO

Comparative analyses of the characteristics of persons living with HIV infection (PLWH) in the United States (US) captured in surveillance and other observational databases are few. To explore potential joint data use to guide HIV treatment and prevention in the US, we examined three CDC-funded data sources in 2012: the HIV Outpatient Study (HOPS), a multisite longitudinal cohort; the Medical Monitoring Project (MMP), a probability sample of PLWH receiving medical care; and the National HIV Surveillance System (NHSS), a surveillance system of all PLWH. Overall, data from 1,697 HOPS, 4,901 MMP, and 865,102 NHSS PLWH were analyzed. Compared with the MMP population, HOPS participants were more likely to be older, non-Hispanic/Latino white, not using injection drugs, insured, diagnosed with HIV before 2009, prescribed antiretroviral therapy, and to have most recent CD4+ T-lymphocyte cell count ≥500 cells/mm3 and most recent viral load test<2 00 copies/mL. The MMP population was demographically similar to all PLWH in NHSS, except it tended to be slightly older, HIV diagnosed more recently, and to have AIDS. Our comparative results provide an essential first step for combined epidemiologic data analyses to inform HIV care and prevention for PLWH in the US.

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