Literature DB >> 27746033

Insulin sensitivity predictions in individuals with obesity and type II diabetes mellitus using mathematical model of the insulin signal transduction pathway.

Clark K Ho1, Ganesh Sriram2, Katrina M Dipple3.   

Abstract

Mathematical modeling approaches have been commonly used in complex signaling pathway studies such as the insulin signal transduction pathway. Our expanded mathematical model of the insulin signal transduction pathway was previously shown to effectively predict glucose clearance rates using mRNA levels of key components of the pathway in a mouse model. In this study, we re-optimized and applied our expanded model to study insulin sensitivity in other species and tissues (human skeletal muscle) with altered protein activities of insulin signal transduction pathway components. The model has now been optimized to predict the effect of short term exercise on insulin sensitivity for human test subjects with obesity or type II diabetes mellitus. A comparison between our extended model and the original model showed that our model better simulates the GLUT4 translocation events of the insulin signal transduction pathway and glucose uptake as a clinically relevant model output. Results from our extended model correlate with O'Gorman's published in-vivo results. This study demonstrates the ability to adapt this model to study insulin sensitivity to many biological systems (human skeletal muscle and mouse liver) with minimal changes in the model parameters.
Copyright © 2016 Elsevier Inc. All rights reserved.

Entities:  

Keywords:  Insulin sensitivity; Insulin signal transduction pathway; Mathematical modeling

Mesh:

Substances:

Year:  2016        PMID: 27746033     DOI: 10.1016/j.ymgme.2016.09.007

Source DB:  PubMed          Journal:  Mol Genet Metab        ISSN: 1096-7192            Impact factor:   4.797


  8 in total

1.  Islet isograft transplantation improves insulin sensitivity in a murine model of type 2 diabetes.

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Review 2.  Natural Insulin Sensitizers for the Management of Diabetes Mellitus: A Review of Possible Molecular Mechanisms.

Authors:  Habib Yaribeygi; Thozhukat Sathyapalan; Tannaz Jamialahmadi; Amirhossein Sahebkar
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Review 4.  Pathophysiology of Physical Inactivity-Dependent Insulin Resistance: A Theoretical Mechanistic Review Emphasizing Clinical Evidence.

Authors:  Habib Yaribeygi; Mina Maleki; Thozhukat Sathyapalan; Tannaz Jamialahmadi; Amirhossein Sahebkar
Journal:  J Diabetes Res       Date:  2021-10-07       Impact factor: 4.011

Review 5.  Molecular mechanisms linking stress and insulin resistance.

Authors:  Habib Yaribeygi; Mina Maleki; Alexandra E Butler; Tannaz Jamialahmadi; Amirhossein Sahebkar
Journal:  EXCLI J       Date:  2022-01-24       Impact factor: 4.068

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Journal:  Sci Rep       Date:  2022-06-23       Impact factor: 4.996

Review 7.  Therapeutic Potential of β-Caryophyllene: A Dietary Cannabinoid in Diabetes and Associated Complications.

Authors:  Hebaallah Mamdouh Hashiesh; Mohamed F Nagoor Meeran; Charu Sharma; Bassem Sadek; Juma Al Kaabi; Shreesh K Ojha
Journal:  Nutrients       Date:  2020-09-28       Impact factor: 5.717

Review 8.  Which Role Plays 2-Hydroxybutyric Acid on Insulin Resistance?

Authors:  André P Sousa; Diogo M Cunha; Carolina Franco; Catarina Teixeira; Frantz Gojon; Pilar Baylina; Ruben Fernandes
Journal:  Metabolites       Date:  2021-12-03
  8 in total

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