UBCオカナガンの研究がケロウナのバイオテクノロジー成長と雇用を促進(UBC Okanagan research fuels biotech growth and jobs in Kelowna)

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2026-09-22 カナダ・ブリティッシュコロンビア大学(UBC)

カナダ・ブリティッシュコロンビア大学(UBC)オカナガン校の研究を起点に、腸内細菌を遺伝子工学的に改変して炎症性腸疾患(IBD)の治療に利用するバイオテクノロジー企業Melius MicroBiomicsが設立され、2026年後半のヒト臨床試験に進む段階に達した。研究者Deanna Gibson氏は、腸内炎症によって通常のプロバイオティクスが定着しにくい問題に着目し、炎症環境そのものを利用できるよう細菌を設計する「BioPersist」技術を開発。大学の研究基盤、技術移転、知的財産管理、資金、人材育成などが研究成果の事業化を支えた。Meliusはこれまでに4,000万ドル超を投入し、研究・製造・規制対応体制を構築。今後は健常者から臨床試験を開始し、潰瘍性大腸炎患者への展開を目指す。研究成果が地域のバイオ産業と雇用創出にもつながっている。

<関連情報>

大腸炎症時に増殖するようプロバイオティクスをバイオエンジニアリングすることで、大腸炎のトランスレーショナルモデルにおいて確実な有効性が促進される
Bioengineering a Probiotic to Bloom During Colonic Inflammation Promotes Reliable Efficacy in Translational Models of Colitis

Andrea Verdugo-Meza, Sandeep K. Gill, Artem Godovannyi, Han M. Chiang, Sydney Bosetti, Jacqueline A. Barnett, Mehrbod Estaki, Ray Ishida, Jiayu Ye, Candice Quin, Natasha Haskey, Hannah Mehain, Simin Jafaripour, Jessica K. Josephson, Chanel Ghesquiere, Amanda Copp, Jacek Usakiewicz, Malavika K. Adur, Sanjoy Ghosh, Kirk Bergstrom, Laura M. Sly, Deanna L. Gibson
Gastroenterology  Available online: 29 April 2026
DOI:https://doi.org/10.1053/j.gastro.2026.04.007

UBCオカナガンの研究がケロウナのバイオテクノロジー成長と雇用を促進(UBC Okanagan research fuels biotech growth and jobs in Kelowna)

Background & Aims
Emerging insights into the gut microbiome have sparked interest in exploring microbial therapeutics for treating inflammatory bowel diseases (IBD). However, no microbial therapeutics have yet shown clinical efficacy for IBD. Escherichia coli Nissle 1917 (EcN), although effective for maintenance of remission, is only marginally effective for treating active colitis. We postulated that EcN effectiveness is hindered by the inflamed intestine, which prevents colonization because EcN lacks stress-resistance mechanisms necessary to persist during colitis. To address this, we introduced a fitness advantage, the ttr operon, to EcN (EcN::ttr), enabling tetrathionate, a byproduct of intestinal inflammation, to be used as fuel. We hypothesized that EcN::ttr bioengineered to bloom during colitis would effectively treat colitis.

Methods
We evaluated the efficacy of EcN::ttr in murine colitis including an acute dextran sodium sulfate model and a chronic mucin 2–deficient model. To determine the role of interleukin (IL) 10 in EcN::ttr protection, we tested its efficacy in IL10-deficient mice. Finally, we co-incubated EcN::ttr with human colonoids to understand its effect on barrier proteins.

Results
EcN::ttr ameliorated colitis more effectively than EcN and 5-aminosalicylate. EcN::ttr bloomed during inflammation and promoted immunoregulatory responses reliant on IL10 that limited leukocyte infiltration and decreased tumor necrosis factor–α+ myeloid resident cells. EcN::ttr induced functional changes in the gut microbiome related to mucosal healing, increased butyric acid, reduced bacterial translocation, and improved zonula occludens-1 organization.

Conclusions
We provide a proof-of-concept study that bioengineering ttr into EcN unlocks a robust therapeutic effect during colitis. EcN::ttr may be a novel microbiome therapeutic for IBD due to its enhanced ability to successfully colonize the inflamed gut.

細胞遺伝子工学
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