Influence of Reduction with NaBH4 and HCl in Obtaining Amino Derivatives of Cashew Gum and Cytotoxic Profile

Author:

Brito Francisco das C. M.123ORCID,Lopes Wilton C.24ORCID,Ribeiro Fábio O. S.2ORCID,Rodrigues Raiza Raianne Luz5,França Rodrigues Klinger Antonio da5ORCID,Santos Machado Fabrício dos6,Araújo Ana Jérsia6ORCID,Marinho Filho José Delano Barreto6,Oliveira Antônia Carla J.7,Filho Edson C. S.7ORCID,Ribeiro Irisvan S.8ORCID,Paula Regina C. M. de8ORCID,Hallwass Fernando9,Viana Vicente Gálber F.3ORCID,Silva Durcilene A.2

Affiliation:

1. Federal Institute of Piauí, Campus, Piripiri 64260-000, PI, Brazil

2. Biodiversity and Biotechnology Research Center, Biotec, Parnaíba Delta Federal University, UFDPar, Parnaíba 64202-020, PI, Brazil

3. Postgraduate Program in Materials Engineering PPGEM, Federal Institute of Piauí, Campus, Teresina 64000-040, PI, Brazil

4. Federal Institute of Piauí, Campus, Pedro II 64255-000, PI, Brazil

5. Infectious Disease Laboratory, Ladic, Parnaíba, Delta Federal University, UFDPar, Parnaíba 64202-020, PI, Brazil

6. Laboratório de Cultura de Células do Delta (LCCDelta), Parnaíba Delta Federal University, UFDPar, Parnaíba 64202-020, PI, Brazil

7. Interdisciplinary Laboratory for Advanced Materials, Teresina 64049-550, PI, Brazil

8. Department of Organic and Inorganic Chemistry, Federal University of Ceará, Fortaleza 60440-900, CE, Brazil

9. Department of Fundamental Chemistry, Federal University of Pernambuco, Recife 50670-901, PE, Brazil

Abstract

Tree-exuded gums are natural polymers that represent an abundant raw material in the food and pharmaceutical industries. The cashew gum can be obtained by exudation of trees of the genus Anacardium, a native species of the Brazilian northeast; its polymer consists of monosaccharide units propitious to the action of chemical reactions that tend to improve their intrinsic characteristics among them, as the degree of hydro-solubility. The objective of this work was to modify the exudate gum of Anacardium occidentale (cashew gum (CG)) through an amine reaction. The modification was confirmed by Nuclear Magnetic Resonance (1H NMR), infrared spectroscopy (FTIR), gel permeation chromatography (GPC), zeta potential, and thermogravimetric analysis (TG). In addition, the chemical modification altered the molar mass and surface charge of the CG, and the amino group binding to the CG polymers was confirmed by FTIR spectra. In addition, cytotoxicity tests were performed where cell viability was estimated by an MTT assay on RAW 264.7 macrophages. Through these tests, it was found that the amine caused an increase in the thermal stability of the amino compounds and did not present cytotoxic potential at concentrations below 50.0 mg/L.

Publisher

MDPI AG

Subject

Polymers and Plastics,General Chemistry

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