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Polysaccharide A–Dependent Opposing Effects of Mucosal and Systemic Exposures to Human Gut Commensal Bacteroides fragilis in Type 1 Diabetes

机译:多糖A依赖于粘膜和全身曝光对1型糖尿病患者的肠道非植物肠道的相反影响

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摘要

Bacteroides fragilis (BF) is an integral component of the human colonic commensal microbiota. BF is also the most commonly isolated organism from clinical cases of intra-abdominal abscesses, suggesting its potential to induce proinflammatory responses upon accessing the systemic compartment. Hence, we examined the impact of mucosal and systemic exposures to BF on type 1 diabetes (T1D) incidence in NOD mice. The impact of intestinal exposure to BF under a chemically induced enhanced gut permeability condition, which permits microbial translocation, in T1D was also examined. While oral administration of heat-killed (HK) BF to prediabetic mice caused enhanced immune regulation and suppression of autoimmunity, resulting in delayed hyperglycemia, mice that received HK BF by intravenous injection showed rapid disease progression. Importantly, polysaccharide A–deficient BF failed to produce these opposing effects upon oral and systemic deliveries. Furthermore, BF-induced modulation of disease progression was observed in wild-type, but not TLR2-deficient, NOD mice. Interestingly, oral administration of BF under enhanced gut permeability conditions resulted in accelerated disease progression and rapid onset of hyperglycemia in NOD mice. Overall, these observations suggest that BF-like gut commensals can cause proinflammatory responses upon gaining access to the systemic compartment and contribute to T1D in at-risk subjects.
机译:Bractoides fragilis(bf)是人结肠癌非生物区域的一体组分。 BF也是来自腹部脓肿内临床病例中最常见的生物体,表明其在进入全身舱室时诱导促进促炎反应的可能性。因此,我们研究了粘膜和系统性暴露对Nod小鼠1型糖尿病(T1D)发病率的影响。还研究了在化学诱导的增强的肠道渗透条件下肠道暴露于BF的影响,允许微生物易位在T1D中。虽然口服杀死热杀死(HK)BF到预奶粉作用导致增强的免疫调节和抑制自身免疫性,导致高血糖血症延迟,通过静脉注射接受HK BF的小鼠显示出快速的疾病进展。重要的是,多糖A缺陷的BF未能在口服和系统交付时产生这些相反的影响。此外,在野生型,但不是TLR2缺陷的NOD小鼠中观察到BF诱导的疾病进展调节。有趣的是,在增强的肠道渗透性条件下口服BF导致NOD小鼠的加速疾病进展和高血糖症快速发作。总体而言,这些观察结果表明,类似BF样肠道的聚合物会导致促进对系统隔间的进入并且有助于风险受试者的T1D促进炎症反应。

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