Insulin Sensitization by PPARγ and GLUT-4 Overexpression/Translocation Mediates the Antidiabetic Effect of Plantago australis

Author:

Estrada-Soto Samuel1ORCID,Ornelas-Mendoza Kathia1,Navarrete-Vázquez Gabriel1ORCID,Chávez-Silva Fabiola2,Almanza-Pérez Julio Cesar2,Villalobos-Molina Rafael3,Ortiz-Barragán Erandi2,Loza-Rodríguez Hilda4,Rivera-Leyva Julio César1ORCID,Flores-Flores Angélica5ORCID,Perea-Arango Irene6,Rodríguez-Carpena Javier-German7ORCID,Ávila-Villarreal Gabriela78ORCID

Affiliation:

1. Facultad de Farmacia, Universidad Autónoma del Estado de Morelos, Cuernavaca 62209, Mexico

2. Laboratorio de Farmacología, Depto. Ciencias de la Salud, D.C.B.S., Universidad Autónoma Metropolitana—Iztapalapa, Ciudad de Mexico 09340, Mexico

3. Unidad de Biomedicina, Facultad de Estudios Superiores Iztacala, Universidad Nacional Autónoma de México, Tlalnepantla 54090, Mexico

4. Laboratorio de Microbiología Experimental, División de Tecnología Ambiental, Universidad Tecnológica de Nezahualcoyotl, Nezahualcoyotl 57000, Mexico

5. Departamento de Inmunofarmacología, Instituto Nacional de Enfermedades Respiratorias, Ciudad de Mexico 14080, Mexico

6. Centro de Investigación en Biotecnología, Universidad Autónoma del Estado de Morelos, Cuernavaca 62209, Mexico

7. Centro Nayarita de Innovación y Transferencia de Tecnología “Unidad especializada en I+D+i en Calidad de Alimentos y Productos Naturales”, Universidad Autónoma de Nayarit, Tepic 63000, Mexico

8. Unidad Académica de Ciencias Químico Biológicas y Farmacéuticas, Universidad Autónoma de Nayarit, Tepic 63000, Mexico

Abstract

Plantago australis Lam. Subsp. hirtella (Kunth) Rahn is a medicinal plant used as a diuretic, anti-inflammatory, antibacterial, throat cancer treatment and for the control of diabetes. P. australis was collected in the state of Morelos, México. The hydroalcoholic extract (HAEPa) of P. australis was obtained by maceration and concentrated in vacuo. Once dry, it was evaluated through an oral glucose tolerance test (OGTT) in normoglycemic mice and in a non-insulin-dependent diabetic mice model. The expression of PPARγ and GLUT-4 mRNA was determined by rt-PCR, and GLUT-4 translocation was confirmed by confocal microscopy. The toxicological studies were conducted in accordance with the guidelines suggested by the OECD, sections 423 and 407, with some modifications. HAEPa significantly decreased glycemia in OGTT curves, as well as in the experimental diabetes model compared to the vehicle group. In vitro tests showed that HAEPa induced an α-glucosidase inhibition and increased PPARγ and GLUT-4 expression in cell culture. The LD50 of HAEPa was greater than 2000 mg/kg, and sub-chronic toxicity studies revealed that 100 mg/kg/day for 28 days did not generate toxicity. Finally, LC-MS analysis led to the identification of verbascoside, caffeic acid and geniposidic acid, and phytochemical approaches allowed for the isolation of ursolic acid, which showed significant PPARγ overexpression and augmented GLUT-4 translocation. In conclusion, HAEPa induced significant antidiabetic action by insulin sensitization through PPARγ/GLUT-4 overexpression.

Funder

SEP-CONACYT

CONACYT FORDECYT-PRONACES

“Estudios preclínicos de plantas selectas de Nayarit” Fortalecimiento a la investigación a través del impulse a conclusion de proyectos de investigación con financiamiento externo PATRONATO

Publisher

MDPI AG

Subject

Drug Discovery,Pharmaceutical Science,Molecular Medicine

Reference57 articles.

1. (2022, March 26). Guías ALAD de Diagnóstico, Control y Tratamiento de la Diabetes Mellitus Tipo 2. (In Spanish).

2. Clinical review of antidiabetic drugs: Implications for type 2 diabetes mellitus management;Chaudhury;Front. Endocrinol.,2017

3. (2021). IDF Diabetes Atlas, International Diabetes Federation. [10th ed.]. Available online: https://fmdiabetes.org/wp-content/uploads/2022/01/IDF_Atlas_10th_Edition_2021-comprimido.pdf.

4. Adherencia al tratamiento en pacientes con Diagnóstico de Diabetes Mellitus Tipo II;Luher;Biomedicina,2015

5. Chemistry and biology of selected Mexican medicinal plants;Kinghorn;Progress in the Chemistry of Organic Natural Products,2019

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