跳转至内容
Merck
CN
  • Design, synthesis and characterization of novel binary V(V)-Schiff base materials linked with insulin-mimetic vanadium-induced differentiation of 3T3-L1 fibroblasts to adipocytes. Structure-function correlations at the molecular level.

Design, synthesis and characterization of novel binary V(V)-Schiff base materials linked with insulin-mimetic vanadium-induced differentiation of 3T3-L1 fibroblasts to adipocytes. Structure-function correlations at the molecular level.

Journal of inorganic biochemistry (2015-04-30)
E Halevas, O Tsave, M P Yavropoulou, A Hatzidimitriou, J G Yovos, V Psycharis, C Gabriel, A Salifoglou
摘要

Among the various roles of vanadium in the regulation of intracellular signaling, energy metabolism and insulin mimesis, its exogenous activity stands as a contemporary challenge currently under investigation and a goal to pursue as a metallodrug against Diabetes mellitus II. In this regard, the lipogenic activity of vanadium linked to the development of well-defined anti-diabetic vanadodrugs has been investigated through: a) specifically designing and synthesizing Schiff base organic ligands L, bearing a variable number of terminal alcohols, b) a series of well-defined soluble binary V(V)-L compounds synthesized and physicochemically characterized, c) a study of their cytotoxic effect and establishment of adipogenic activity in 3T3-L1 fibroblasts toward mature adipocytes, and d) biomarker examination of a closely-linked molecular target involving or influenced by the specific V(V) forms, cumulatively delineating factors involved in potential pathways linked to V(V)-induced insulin-like activity. Collectively, the results a) project the importance of specific structural features in Schiff ligands bound to V(V), thereby influencing the emergence of its (a)toxicity and for the first time its insulin-like activity in pre-adipocyte differentiation, b) contribute to the discovery of molecular targets influenced by the specific vanadoforms seeking to induce glucose uptake, and c) indicate an interplay of V(V) structural speciation and cell-differentiation biological activity, thereby gaining insight into vanadium's potential as a future metallodrug in Diabetes mellitus.

材料
产品编号
品牌
产品描述

Sigma-Aldrich
Trizma ® 碱, Primary Standard and Buffer, ≥99.9% (titration), crystalline
Sigma-Aldrich
Trizma ® 碱, BioPerformance Certified, meets EP, USP testing specifications, suitable for cell culture, ≥99.9% (titration)
Sigma-Aldrich
氢氧化钠 溶液, BioUltra, Molecular Biology, 10 M in H2O
Sigma-Aldrich
氢氧化钠 溶液, 1.0 N, BioReagent, suitable for cell culture
Sigma-Aldrich
三(羟甲基)氨基甲烷, ACS reagent, ≥99.8%
Sigma-Aldrich
缓血酸胺, meets USP testing specifications
Sigma-Aldrich
Sigma 7-9®®, ≥99% (titration), powder or crystals
Sigma-Aldrich
Trizma ® 碱, BioUltra, Molecular Biology, ≥99.8% (T)
Sigma-Aldrich
乙醇胺, ≥99%
Sigma-Aldrich
乙醇胺, ≥98%
Sigma-Aldrich
乙醇胺, purified by redistillation, ≥99.5%
Sigma-Aldrich
Trizma ® 碱, ≥99.0% (T)
Sigma-Aldrich
Trizma ® 碱, BioXtra, pH 10.5-12.0 (1 M in H2O), ≥99.9% (titration)
Sigma-Aldrich
邻香草醛, 99%
Sigma-Aldrich
Trizma ® 碱, ≥99.9% (titration), crystalline
Sigma-Aldrich
氧钒基乙酰丙酮酯, 98%
Sigma-Aldrich
Trizma ® 碱, anhydrous, free-flowing, Redi-Dri, ≥99.9%
Sigma-Aldrich
乙醇胺, ACS reagent, ≥99.0%
Sigma-Aldrich
氢氧化钠, BioUltra, suitable for luminescence, ≥98.0% (T), pellets
Sigma-Aldrich
氢氧化钠, ultra dry, powder or crystals, 99.99% trace metals basis
Sigma-Aldrich
乙醇胺, liquid, BioReagent, suitable for cell culture, ≥98%
Sigma-Aldrich
Trizma ® 碱, 99.7% (T), puriss. p.a.
Sigma-Aldrich
丝氨醇, 98%
Sigma-Aldrich
钒, powder, −325 mesh, 99.5% trace metals basis
Sigma-Aldrich
钒, powder, -100 mesh, 99.9% trace metals basis
Sigma-Aldrich
钒, foil, thickness 0.127 mm, 99.7% trace metals basis
Sigma-Aldrich
钒, pieces, 1-3 mm, 99.9% trace metals basis
Sigma-Aldrich
3-乙基-2,4-戊二酮,互变异构体的混合物, 98%
Sigma-Aldrich
氢氧化钠-16O 溶液, 20 wt. % in H216O, 99.9 atom % 16O
Sigma-Aldrich
Trizma ® 碱, Vetec, reagent grade, ≥99%