Singh Vaidhvi, West Gail, Fiocchi Claudio, Good Caryn E, Katz Jeffry, Jacobs Michael R, Dichosa Armand Earl Ko, Flask Chris, Wesolowski Mathew, McColl Cassidy, Grubb Brandon, Ahmed Sadia, Bank Nicholas C, Thamma Kavitha, Bederman Ilya, Erokwu Bernadette, Yang Xinlin, Sundrud Mark S, Menghini Paola, Basson Abigail Raffner, Ezeji Jessica, Viswanath Satish E, Veloo Alida, Sykes David B, Cominelli Fabio, Rodriguez-Palacios Alex
bioRxiv. 2024 Jan 10:2024.01.09.574896. doi: 10.1101/2024.01.09.574896.
Crohn's disease (CD) has been traditionally viewed as a chronic inflammatory disease that cause gut wall thickening and complications, including fistulas, by mechanisms not understood. By focusing on (presumed modern succinate-producing commensal probiotic), recovered from intestinal microfistulous tracts (cavernous fistulous micropathologies CavFT proposed as intermediate between 'mucosal fissures' and 'fistulas') in two patients that required surgery to remove CD-damaged ilea, we demonstrate that such isolates exert pathogenic/pathobiont roles in mouse models of CD. Our isolates are clonally-related; potentially emerging as transmissible in the community and mice; proinflammatory and adapted to the ileum of germ-free mice prone to CD-like ileitis (SAMP1/YitFc) but not healthy mice (C57BL/6J), and cytotoxic/ATP-depleting to HoxB8-immortalized bone marrow derived myeloid cells from SAMP1/YitFc mice when concurrently exposed to succinate and extracts from CavFT-derived , but not to cells from healthy mice. With unique genomic features supporting recent genetic exchange with -BGF539, evidence of international presence in primarily human metagenome databases, these CavFT isolates could represent to a new opportunistic species, or subspecies (' ) adapted to microfistulous niches in CD.
克罗恩病(CD)传统上被视为一种慢性炎症性疾病,其通过尚不明确的机制导致肠壁增厚及包括瘘管在内的并发症。通过聚焦于从两名因CD损伤回肠而需手术切除的患者的肠道微瘘管(海绵状瘘管微病变,CavFT,被认为是“黏膜裂隙”和“瘘管”之间的中间状态)中分离出的(推测为现代产琥珀酸共生益生菌),我们证明这些分离株在CD小鼠模型中发挥致病/病理共生菌的作用。我们的分离株具有克隆相关性;可能在群落和小鼠中具有传播性;具有促炎作用,且适应易患类CD回肠炎的无菌小鼠(SAMP1/YitFc)的回肠,但不适应健康小鼠(C57BL/6J)的回肠,并且当同时暴露于琥珀酸和来自CavFT衍生的提取物时,对来自SAMP1/YitFc小鼠的HoxB8永生化骨髓来源的髓样细胞具有细胞毒性/ATP消耗作用,但对健康小鼠的细胞则无此作用。这些CavFT分离株具有支持近期与 -BGF539进行基因交换的独特基因组特征,在主要的人类宏基因组数据库中有国际存在的证据,它们可能代表一种新的机会性 物种或亚种(“ ”),适应于CD中的微瘘管生态位。