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Artículo

Structure-Activity Relationship Study of an Alkynylphosphonate and a Vynilphosphonate Analogues of Calcitriol

Grioli, Silvina MarielaIcon ; Alonso, Eliana NoeliaIcon ; Mascaro, EvangelinaIcon ; Stabile, Santiago ArmandoIcon ; Ferronato, María JuliaIcon ; Quevedo, Mario AlfredoIcon ; Radivoy, Gabriel EduardoIcon ; Facchinetti, Maria MartaIcon ; Vitale, Cristian AlejandroIcon ; Curino, Alejandro CarlosIcon
Fecha de publicación: 18/08/2021
Editorial: Bentham Science Publishers
Revista: Medicinal Chemistry
ISSN: 1573-4064
e-ISSN: 1875-6638
Idioma: Inglés
Tipo de recurso: Artículo publicado
Clasificación temática:
Bioquímica y Biología Molecular

Resumen

Background: 1α,25-dihydroxy vitamin D3 (calcitriol) shows potent growth-inhibitory properties on different cancer cell lines, but its hypercalcemic effects have severely hampered its therapeutic application. Therefore, it is important to develop synthetic calcitriol analogues that retain or even increase its antitumoral effects and lack hypercalcemic activity. Based on previous evidence of the potent antitumor effects of the synthetic alkynylphosphonate EM1 analogue, we have now synthesized a derivative called SG. Objective: The aim of the present work is to evaluate the calcemic activity and the antitumor effect of SG, comparing these effects with those exerted by calcitriol and with those previously published for EM1. In addition, we propose to analyze by in silico studies, the chemical structure-biological function relationship of these molecules. Methods: We performed the synthesis of vinylphosphonate SG analogue; in vitro assays on different cancer cell lines; in vivo assays on mice; and in silico assays applying computational molecular modeling. Results: The SG compound lacks hypercalcemic activity, similar to the parent compound EM1. However, the antitumor activity was blunted, as no antiproliferative or anti-migratory effects were observed. By in silico assays, we demonstrated that SG analogue has a lower affinity for the VDRligand- binding domain than the EM1 compound due to lack of interaction with the important residues His305 and His397. Conclusion: These results demonstrate that the chemical modification in the lateral side chain of the SG analogue affects the antitumoral activity observed previously for EM1 but does not affect the calcemic activity. These results contribute to the rational design and synthesis of novel calcitriol analogues.
Palabras clave: CALCITRIOL , CANCER , COMPUTATIONAL MODELLING , HYPERCALCEMIA , IN VITRO ASSAYS , IN VIVO ASSAYS , PHOSPHONATE ANALOGUES , SYNTHESIS
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info:eu-repo/semantics/restrictedAccess Excepto donde se diga explícitamente, este item se publica bajo la siguiente descripción: Creative Commons Attribution-NonCommercial-ShareAlike 2.5 Unported (CC BY-NC-SA 2.5)
Identificadores
URI: http://hdl.handle.net/11336/156237
URL: https://www.eurekaselect.com/185002/article
DOI: http://dx.doi.org/10.2174/1573406416999200818145115
Colecciones
Articulos(INIBIBB)
Articulos de INST.DE INVEST.BIOQUIMICAS BAHIA BLANCA (I)
Articulos(INQUISUR)
Articulos de INST.DE QUIMICA DEL SUR
Articulos(UNITEFA)
Articulos de UNIDAD DE INVESTIGACION Y DESARROLLO EN TECNOLOGIA FARMACEUTICA
Citación
Grioli, Silvina Mariela; Alonso, Eliana Noelia; Mascaro, Evangelina; Stabile, Santiago Armando; Ferronato, María Julia; et al.; Structure-Activity Relationship Study of an Alkynylphosphonate and a Vynilphosphonate Analogues of Calcitriol; Bentham Science Publishers; Medicinal Chemistry; 17; 3; 18-8-2021; 230 - 246
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