日期:
2020 年 — 2026 年
2020
2021
2022
2023
2024
2025
2026
影响因子:

Low Fermentable Oligosaccharides, Disaccharides, Monosaccharides, and Polyols Diet Improves Colonic Barrier Function and Mast Cell Activation in Patients With Diarrhea-Predominant Irritable Bowel Syndrome: A Mechanistic Trial

低发酵性寡糖、二糖、单糖和多元醇饮食可改善腹泻型肠易激综合征患者的结肠屏障功能和肥大细胞活化:一项机制试验

Gao, Jun; Lee, Allen A; Abtahi, Shabnam; Turner, Jerrold R; Grover, Madhusudan; Schmidt, Alexander; Schmidt, Thomas M; Nee, Judy W; Iturrino, Johanna; Lembo, Anthony; Chey, William D; Wiley, John W; Singh, Prashant

The butyrate-producing Gram-positive human gut bacterium, Hoskinsella mucinilytica, selectively targets host mucin N-acetylhexosamines

产生丁酸的革兰氏阳性人类肠道细菌霍氏杆菌(Hoskinsella mucinilytica)选择性地靶向宿主粘蛋白N-乙酰己糖胺。

Pudlo, Nicholas A; Pereira, Gabriel Vasconcelos; Schaus, Sadie R; Yang, Qinnan; Fuentes, Jaime J; Jin, Chunsheng; Hein, Robert; Zhang, Li; Terrapon, Nicolas; Lyssiotis, Costas A; Schmidt, Thomas M; Hansson, Gunnar C; Luis, Ana S; Martens, Eric C

Description of Hoskinsella mucinilytica gen. nov., sp. nov., a mucin-degrading isolate from human faeces, and reclassification of Amedibacillus hominis Abdugheni et al. 2023 as a later heterotypic synonym of Eubacterium hominis Liu et al. 2022 within the genus Hoskinsella gen. nov

Hoskinsella mucinlytica gen. 的描述十一月,SP。 nov.,一种从人类粪便中分离出来的粘蛋白降解菌株,以及人型阿米巴杆菌 Abdugheni 等人的重新分类。 2023 作为人真杆菌 Liu 等人后来的异型同义词。 2022年Hoskinsella属内。十一月

Pudlo, Nicholas A; Vasconcelos Pereira, Gabriel; Singh, Shaleni; Pollet, Rebecca M; Schmidt, Thomas M; Pope, Philip B; Chuvochina, Maria; La Rosa, Sabina Leanti; Martens, Eric C

Physiologically relevant coculture model for oral microbial-host interactions.

具有生理相关性的口腔微生物-宿主相互作用共培养模型

Pang Zeyang, Cady Nicole M, Cen Lujia, Schmidt Thomas M, He Xuesong, Li Jiahe

Physiologically Relevant Coculture Model for Oral Microbial-Host Interactions

用于研究口腔微生物-宿主相互作用的生理相关共培养模型

Pang, Zeyang; Cady, Nicole; Cen, Lujia; Schmidt, Thomas M; He, Xuesong; Li, Jiahe

Fiber-deficient diet inhibits colitis through the regulation of the niche and metabolism of a gut pathobiont.

缺乏膳食纤维的饮食通过调节肠道致病菌的生态位和代谢来抑制结肠炎

Kuffa Peter, Pickard Joseph M, Campbell Austin, Yamashita Misa, Schaus Sadie R, Martens Eric C, Schmidt Thomas M, Inohara Naohiro, Núñez Gabriel, Caruso Roberta

H2 generated by fermentation in the human gut microbiome influences metabolism and competitive fitness of gut butyrate producers

人类肠道微生物发酵产生的氢气影响肠道丁酸生产者的代谢和竞争适应性

Austin Campbell, Kristi Gdanetz, Alexander W Schmidt, Thomas M Schmidt

Salivary microbiome changes distinguish response to chemoradiotherapy in patients with oral cancer

唾液微生物组的变化可以区分口腔癌患者对放化疗的反应。

Medeiros, Marcell Costa de; The, Stephanie; Bellile, Emily; Russo, Nickole; Schmitd, Ligia; Danella, Erika; Singh, Priyanka; Banerjee, Rajat; Bassis, Christine; Murphy, George R 3rd; Sartor, Maureen A; Lombaert, Isabelle; Schmidt, Thomas M; Eisbruch, Avi; Murdoch-Kinch, Carol Anne; Rozek, Laura; Wolf, Gregory T; Li, Gen; Chen, Grace Y; D'Silva, Nisha J

Mechanistic insights into consumption of the food additive xanthan gum by the human gut microbiota.

人类肠道微生物群对食品添加剂黄原胶的摄取机制研究

Ostrowski Matthew P, La Rosa Sabina Leanti, Kunath Benoit J, Robertson Andrew, Pereira Gabriel, Hagen Live H, Varghese Neha J, Qiu Ling, Yao Tianming, Flint Gabrielle, Li James, McDonald Sean P, Buttner Duna, Pudlo Nicholas A, Schnizlein Matthew K, Young Vincent B, Brumer Harry, Schmidt Thomas M, Terrapon Nicolas, Lombard Vincent, Henrissat Bernard, Hamaker Bruce, Eloe-Fadrosh Emiley A, Tripathi Ashootosh, Pope Phillip B, Martens Eric C

Mucolytic bacteria license pathobionts to acquire host-derived nutrients during dietary nutrient restriction.

黏液溶解菌使病原菌能够在饮食营养受限期间获取宿主来源的营养物质

Sugihara Kohei, Kitamoto Sho, Saraithong Prakaimuk, Nagao-Kitamoto Hiroko, Hoostal Matthew, McCarthy Caroline, Rosevelt Alexandra, Muraleedharan Chithra K, Gillilland Merritt G 3rd, Imai Jin, Omi Maiko, Bishu Shrinivas, Kao John Y, Alteri Christopher J, Barnich Nicolas, Schmidt Thomas M, Nusrat Asma, Inohara Naohiro, Golob Jonathan L, Kamada Nobuhiko