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Updated: Jul 27, 2025

Modeling and Evaluation of Murine Diabetic Cardiomyopathy Model
Published on: November 29, 2024
Generation of an Obese Diabetic Mouse Model upon Conditional
Tiago Bordeira Gaspar1,2,3,4, Tito Teles Jesus1,2, Maria Teresa Azevedo1,2
1Instituto de Investigação e Inovação em Saúde (i3S), University of Porto, 4200-135 Porto, Portugal.
Abstract:
Atrx loss was recently ascertained as insufficient to drive pancreatic neuroendocrine tumour (PanNET) formation in mice islets. We have identified a preponderant role of Atrx in the endocrine dysfunction in a Rip-Cre;AtrxKO genetically engineered mouse model (GEMM). To validate the impact of a different Cre-driver line, we used similar methodologies and characterised the Pdx1-Cre;AtrxKO (P.AtrxKO) GEMM to search for PanNET formation and endocrine fitness disruption for a period of up to 24 months. Male and female mice presented different phenotypes. Compared to P.AtrxWT, P.AtrxHOM males were heavier during the entire study period, hyperglycaemic between 3 and 12 mo., and glucose intolerant only from 6 mo.; in contrast, P.AtrxHOM females started exhibiting increased weight gains later (after 6 mo.), but diabetes or glucose intolerance was detected by 3 mo. Overall, all studied mice were overweight or obese from early ages, which challenged the histopathological evaluation of the pancreas and liver, especially after 12 mo. Noteworthily, losing Atrx predisposed mice to an increase in intrapancreatic fatty infiltration (FI), peripancreatic fat deposition, and macrovesicular steatosis. As expected, no animal developed PanNETs. An obese diabetic GEMM of disrupted Atrx is presented as potentially useful for metabolic studies and as a putative candidate for inserting additional tumourigenic genetic events.
Insights
Loss of Atrx causes endocrine dysfunction and obesity in mice, but does not lead to pancreatic neuroendocrine tumors. This obese diabetic mouse model is valuable for metabolic and cancer research.
Area of Science:
- Endocrinology
- Genetics
- Oncology
Background:
- Loss of Atrx (alpha-thalassemia/mental retardation syndrome X-linked) is insufficient to cause pancreatic neuroendocrine tumors (PanNETs).
- Atrx plays a significant role in endocrine dysfunction.
Purpose of the Study:
- To characterize the Pdx1-Cre;AtrxKO (P.AtrxKO) genetically engineered mouse model (GEMM) for PanNET formation and endocrine disruption.
- To investigate the role of Atrx in metabolic homeostasis and pancreatic health.
Main Methods:
- Utilized Pdx1-Cre;AtrxKO GEMM, comparing knockout (P.AtrxHOM) to wild-type (P.AtrxWT) littermates.
- Monitored metabolic parameters including weight, hyperglycemia, and glucose intolerance over 24 months.
- Conducted histopathological analysis of pancreas and liver for fatty infiltration and steatosis.
Main Results:
- No PanNETs developed in P.AtrxKO mice.
- Both male and female P.AtrxHOM mice exhibited overweight/obesity, hyperglycemia, and glucose intolerance.
- Significant increase in pancreatic and peripancreatic fatty infiltration and hepatic macrovesicular steatosis observed in P.AtrxHOM mice.
Conclusions:
- Atrx deficiency in P.AtrxKO mice leads to obesity and diabetes but not PanNETs.
- This GEMM is a valuable tool for studying metabolic disorders and potentially for investigating additional oncogenic events.
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