Current molecular aspects in the development and treatment of diabetes.

J Physiol Biochem

Laboratorio de Biofísica y Biocatálisis, Sección de Estudios de Posgrado e Investigación, Escuela Superior de Medicina, Instituto Politécnico Nacional, Plan de San Luis y Salvador Díaz Mirón s/n, Casco de Santo Tomás, 11340, Ciudad de México, México.

Published: February 2020

AI Article Synopsis

  • Diabetes mellitus (DM) causes complications in microvascular, macrovascular, and nervous systems, but the link to weak bones is less understood.
  • Various molecular mechanisms resulting from chronic high blood sugar levels (hyperglycemia) differ depending on the organ and tissue affected.
  • The complexity of diabetes treatment stems from individual patient conditions and the side effects of therapies, with an emphasis on the role of osmotic changes, oxidative stress, and inflammation in disease progression.

Article Abstract

Diabetes mellitus (DM) leads to microvascular, macrovascular, and neurological complications. Less is understood about the mechanisms of this disease that give rise to weak bones. The many molecular mechanisms proposed to explain the damage caused by chronic hyperglycemia are organ and tissue dependent. Since all the different treatments for DM involve therapeutic activity combined with side effects and each patient represents a unique condition, there is no generalized therapy. The alterations stemming from hyperglycemia affect metabolism, osmotic pressure, oxidative stress, and inflammation. In part, hemodynamic modifications are linked to the osmotic potential of the excess of carbohydrates implicated in the disease. The change in osmotic balance increases as the disease progresses because hyperglycemia becomes chronic. The aim of the current contribution is to provide an updated overview of the molecular mechanisms that participate in the development and treatment of diabetes.

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Source
http://dx.doi.org/10.1007/s13105-019-00717-0DOI Listing

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