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Autogenic-regenerated intestinal transplantation improves outcomes in short bowel syndrome
Kentaro Iwaki, Takamichi Ishii, Hidenobu Kojima, Fumiaki Munekage, Hiroshi Horie, Kenta Makino, Takuma Karasuyama, Yusuke Hanabata, Elena Yukie Uebayashi, Satoshi Ogiso, Etsuro Hatano
Kentaro Iwaki, Takamichi Ishii, Hidenobu Kojima, Fumiaki Munekage, Hiroshi Horie, Kenta Makino, Takuma Karasuyama, Yusuke Hanabata, Elena Yukie Uebayashi, Satoshi Ogiso, Etsuro Hatano
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Research Article Development Gastroenterology

Autogenic-regenerated intestinal transplantation improves outcomes in short bowel syndrome

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Abstract

Small bowel transplantation (SBT) is the only curative treatment for intestinal failure due to short bowel syndrome (SBS); however, the 10-year graft survival rate after SBT remains below 50%. Therefore, alternative treatments are required. We developed a potentially new therapeutic strategy for intestinal failure involving in vivo intestinal regeneration using a decellularized scaffold in a rat model. A 3 cm segment of decellularized small intestine was anastomosed to the jejunum for in vivo regeneration. After 4 weeks of regeneration, the entire native intestine was resected to induce SBS, and the regenerated intestine was transplanted into the same rat. Histological analysis revealed regeneration of mucosa, nerves, muscular layer, and crypts, consistent with autologous cell infiltration. An indocyanine green test confirmed blood flow from the adjacent mesentery into the regenerated intestine. The regenerated intestine exhibited absorption of nutrients in vivo, and ex vivo assessments confirmed peristalsis and absorptive capacity comparable with native intestine. Transplantation of the regenerated intestine significantly improved postoperative nutritional status in SBS rats. Our method, autogenic-regenerated intestinal transplantation, showed the therapeutic potential for intestinal failure. This is the first study to our knowledge to demonstrate a functionally integrated regenerated intestine, providing a foundation for future regenerative therapy.

Authors

Kentaro Iwaki, Takamichi Ishii, Hidenobu Kojima, Fumiaki Munekage, Hiroshi Horie, Kenta Makino, Takuma Karasuyama, Yusuke Hanabata, Elena Yukie Uebayashi, Satoshi Ogiso, Etsuro Hatano

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Figure 7

Nutritional status evaluations after RITx in disease models.

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Nutritional status evaluations after RITx in disease models.
(A) Schemat...
(A) Schematic illustrations and intraoperative images of the 3 groups. In the RITx group (left), the entire native intestine was resected, and 3 cm of regenerated intestine was anastomosed between the duodenum and terminal ileum. In the SBS group (middle), the entire native intestine was resected, and the duodenum was anastomosed directly to the terminal ileum. In the control group (right), 3 cm of native intestine was preserved, and the remaining intestine was resected. Nutritional markers in blood samples from each group on postoperative day (POD) 28. n = 5 for each group. (B) Total protein. (C) Albumin. (D) Prealbumin. (E) Cholinesterase. (F) Total cholesterol. (G) Citrulline. (H) Changes in the body weight loss rate (body weight/body weight on POD 0). One-way ANOVA followed by Tukey’s (HSD) test (B–G). A linear mixed-effects model with fixed effects of group, time, and their interaction, and a random effect for individual rats with an AR(1) covariance structure was used, followed by Tukey’s HSD test for post hoc pairwise comparisons (H). *P < 0.05, **P < 0.01, ***P < 0.001. Alb, albumin; Ch-E, cholinesterase; POD, postoperative day; Pre Alb, prealbumin; RI, regenerated intestine; RITx, regenerated intestinal transplantation; SBS, short bowel syndrome; T-Cho, total cholesterol; TP, total protein.

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