Heteropterys tomentosa A. Juss: Toxicological and adaptogenic effects in experimental models

Author:

Fraga Géssica Alves1,Balogun Sikiru Olaitan23,Pascqua Emilly Della1,de Oliveira Ruberlei Godinho2,Botelho Guilherme2,Pavan Eduarda2,da Rosa Lima Thiago4,Avila Eudes Thiago Pereira1,de Medeiros Amorim Krueger Clarissa5,Filho Valdir Cechinel5,Damazo Amílcar Sabino4,de Oliveira Martins Domingos Tabajara2,Voltarelli Fabrício Azevedo1

Affiliation:

1. Graduate Program of Physical Education, Faculty of Physical Education, Federal University of Mato Grosso, Cuiabá, Mato Grosso, Brazil

2. Pharmacology Area, Department of Basic Sciences in Health, Faculty of Medicine, Federal University of Mato Grosso (UFMT), Cuiabá, Mato Grosso, Brazil

3. Pharmacy Course, Northwest of Mato Grosso Faculty, Association of Higher Education of Juína (AJES), Juína, Mato Grosso, Brazil

4. Histology and Cell Biology Area, Department of Basic Sciences in Health, Faculty of Medicine, Federal University of Mato Grosso (UFMT), Cuiabá, Mato Grosso, Brazil

5. Graduate Program in Pharmaceutical Sciences and e Nucleus of Chemical-Pharmaceutical Research, University of the Valley of Itajaí (UNIVALI), Itajaí, Santa Catarina, Brazil

Abstract

Background: The constant pursuit of improved athletic performance characterizes high-performance sport and the use of medicinal plants as dietary supplements is becoming widespread among athletes to enhance long-term endurance performance. Aim: The present study evaluated the toxicity of Heteropterys tomentosa (HEHt) and its acute adaptogenic effects. Methods: The in vitro safety profile was evaluated on CHO-k1 cells using the alamar Blue assay, at concentrations ranging from 3.125 to 200 µg/mL. In vivo acute oral toxicity was conducted in male and female mice with oral administration of graded doses of HEHt from 400 to 2000 mg/kg. A subchronic oral toxicity study was completed by oral administration of HEHt (50, 200 or 1000 mg/kg) and vehicle for 30 days in male Wistar rats. Clinical observations and toxicological related parameters were determined. Blood was collected for biochemical and hematological analyses, while histological examinations were performed on selected organs. Thereafter, an adaptogenic test consisting of progressive loads until exhaustion was conducted in rats ( n = 5/group) orally pre-treated with the vehicle and HEHt (25, 100 or 400 mg/kg). Results: HEHt exhibited no cytotoxic effects on the CHO-k1 cells and, apparently, no acute toxicity in mice and no subchronic toxicity in rats. An ergogenic effect was observed only at the dose of 25 mg/kg compared with the vehicle in relation to time to exhaustion and exercise load ( p = .011 and .019, respectively). HEHt is safe at up to 400 mg/kg, contains astilbin and taxifolin as the major phytochemical compounds, and exhibited a potential adaptogenic effect. Conclusions: These results justify its anecdotal usage as a tonic, show that the hydroethanolic maceration of the root does not cause toxicity, and provide scientific evidence of its potential as a source of new adaptogenic substance(s).

Funder

CNPq/INAU

Publisher

SAGE Publications

Subject

Nutrition and Dietetics,General Medicine,Medicine (miscellaneous)

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