MARTINEZ ROSAS, VICTOR

MARTINEZ ROSAS, VICTOR

QUIMICA · Nivel C

en Instituto Tecnológico de Milpa Alta

Información*

Nombre VICTOR MARTINEZ ROSAS
Área BIOLOGÍA Y QUÍMICA
Campo QUIMICA
Disciplina QUÍMICA GENERAL
Especialidad OTRAS
CVU 932153
Institución
Dependencia INSTITUTO TECNOLOGICO DE MILPA ALTA
Entidad CIUDAD DE MEXICO
Nivel C
Vigencia Inicio: 01/01/2026
Fin: 31/12/2029

* Información del primer trimestre de 2026.
Fuente: SECIHTI.

Publicaciones ORCID

2025
Targeting G6PD with Benzimidazole and Thiazole Derivatives Suppresses SIRT 2 and VEGF Expression and Induces Cytotoxicity in Glioma Cells International Journal of Molecular Sciences
Nitazoxanide Analogs: Synthesis, In Vitro Giardicidal Activity, and Effects on <i>Giardia lamblia</i> Metabolic Gene Expression International Journal of Molecular Sciences
Análisis de compuestos análogos a Nitazoxanida: efecto giardicida y alteraciones en la expresión génica de Giardia lamblia Revista Tendencias en Docencia e Investigación en Química
Derivados de benzimidazol y tiazol como inhibidores de G6PD: efectos sobre SIRT2, VEGF y viabilidad celular en líneas celulares de glioblastoma Revista Tendencias en Docencia e Investigación en Química
2024
Imidazole Carbamates as a Promising Alternative for Treating Trichomoniasis: In Vitro Effects on the Growth and Gene Expression of Trichomonas vaginalis Molecules
Effect of Trichomonacide 6-Nitro-1H-benzimidazole Derivative Compounds on Expression Level of Metabolic Genes in Trichomonas vaginalis International Journal of Molecular Sciences
Fused Enzyme Glucose-6-Phosphate Dehydrogenase::6-Phosphogluconolactonase (G6PD::6PGL) as a Potential Drug Target in Giardia lamblia, Trichomonas vaginalis, and Plasmodium falciparum Microorganisms
2023
An Overall View of the Functional and Structural Characterization of Glucose-6-Phosphate Dehydrogenase Variants in the Mexican Population International Journal of Molecular Sciences
Nitazoxanide Inhibits the Bifunctional Enzyme GlG6PD::6PGL of Giardia lamblia: Biochemical and In Silico Characterization of a New Druggable Target International Journal of Molecular Sciences
2022
Pyridyl Methylsulfinyl Benzimidazole Derivatives as Promising Agents against Giardia lamblia and Trichomonas vaginalis Molecules