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Updated: Apr 27, 2026

Inguinal Subcutaneous White Adipose Tissue ISWAT Transplantation Model of Murine Islets
Published on: February 16, 2020
Gastric subserous space islet transplantation: techniques and initial results in diabetic inbred Lewis rats
Xinnong Liu1, Jinhang Zhang2, Yang Li1
1Department of General Surgery, Qilu Hospital of Shandong University, Jinan, China (mainland).
Background:
Implantation site is an important factor affecting the effect of islet transplantation. In the literature, the gastric subserous space (GSS) is rarely used as the implantation site of islets. Our present study reports the initial results with a limited numbers of islets transplanted into the GSS in Lewis rats and compares the outcomes between the GSS and the liver.
Material And Methods:
STZ was used to induce diabetes in Lewis rats, using a limited numbers of islets from the donors of the same species transplanted into the GSS and also into the portal vein (PV). Fasting blood glucose levels were measured and the transplanted insulin-positive islets were detected using immunohistochemical method.
Results:
The fasting blood glucose levels were significantly reduced compared with that in the pre-transplantation period in rats of the GSS group. Oral glucose tolerance testing (OGTT) on day 28 after transplantation revealed an excellent functional capacity. Insulin-positive islets were identified in the stomach throughout the study. However, we found no difference in fasting blood glucose between pre- and post-transplantation and no insulin-positive islets were discovered in rats of the PV group.
Conclusions:
Under the treatment of a limited numbers of islets, the gastric subserous space reveals a preferable capacity for glycometabolism of STZ-induced Lewis diabetic rats compared with the portal vein.

