hUCMSCs carrying exenatide prevent T1DM by improving intestinal microflora composition and islet tissue damage repair.
Mol Med · 2022
Last updated 2026-05-28In a study on mice with type 1 diabetes, treatment with human umbilical cord stem cells carrying exenatide (a GLP-1 drug) restored blood sugar levels and body weight, reduced immune damage to the pancreas, and repaired islet tissue damage. The treatment also improved kidney damage and was linked to changes in gut bacteria, increasing beneficial types while decreasing harmful ones.
AI summary of the abstract below.
| Journal | Mol Med, 2022 |
|---|---|
| Citations | 7 |
| Relative citation ratio | 0.70 |
| NIH percentile | 39 |
| Molecules | exenatide |
| Conditions studied | Type 2 Diabetes |
Abstract
BACKGROUND: Exenatide is a stable analogue of glucagon-like peptide 1 that can reduce postprandial hyperglycemia and has been utilized as adjunctive therapy for type 1 diabetes mellitus (T1DM). The human umbilical cord is a rich source of MSCs, and human umbilical cord mesenchymal stem cells (hUCMSCs) also show potential to enhance insulin secretion. Here, we aimed to explore the effects of hUCMSCs carrying exenatide in T1DM and further identify the possible mechanisms involved.
METHODS: hUCMSCs were isolated from human umbilical cord tissues, identified, and transduced with recombinant lentivirus carrying exenatide to obtain exenatide-carrying hUCMSCs (hUCMSCs@Ex-4).
RESULTS: The results showed that hUCMSCs@Ex-4 restored the blood glucose levels and body weight of NOD mice, and repressed immune cell infiltration and islet tissue changes. Additionally, in T1DM mice, treatment with hUCMSCs@Ex-4 reduced the blood glucose levels and promoted repair of islet tissue damage. Moreover, hUCMSCs@Ex-4 attenuated renal tissue lesions in T1DM mice. Applying bioinformatic analysis, the effects of hUCMSCs@Ex-4 were suggested to correlate with decreased abundance of pro-inflammatory intestinal bacteria and increased abundance of anti-inflammatory intestinal bacteria.
CONCLUSION: Overall, the study indicated that hUCMSCs carrying exenatide might improve beneficial intestinal microflora abundance and promote islet tissue damage repair, thereby alleviating T1DM.
Verbatim abstract via PubMed 36514009 ↗
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