In vivo and in vitro research on the biological effects of deuterium-depleted water: 1. Influence of deuterium-depleted water on cultured cell growth.

W Bild, Veronica Năstasă, I Haulică
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Abstract

Deuterium depleted-water (DDW) is a new available tool for decreasing deuterium concentration in the environment of cells in culture. Several types of established cell lines, both normal and neoplastic were grown in culture media dissolved with DDW and compared with the same strains, in the same amounts, grown in media dissolved with normal distilled water. Naive mice splenocytes were grown, under stimulation with proliferation triggers, like bacterial lipopolysaccharide (LPS) and Concanavalin A (ConA) in the same conditions. The growth and proliferation were estimated using the MTT assay. Both established cell types and explanted splenocytes in the DDW-media had a significantly higher growth rate than cell cultured in normal media. In an attempt to identify the membrane mechanisms involved in the growth stimulation by DDW, the membrane proton transporters Na+/H+ antiporter and H+/K+ATP-ase were inhibited with their selective blockers amiloride and respectively lansoprazole. The results, however incomplete, point towards a lack of involvement of the Na+/H+ antiporter and a possible implication of the H+/K+ATP-ase.

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贫氘水生物效应的体内外研究:贫氘水对培养细胞生长的影响。
贫氘水(DDW)是一种降低培养细胞环境中氘浓度的新工具。几种已建立的细胞系,包括正常细胞系和肿瘤细胞系,在溶解DDW的培养基中培养,并与在溶解普通蒸馏水的培养基中以相同数量培养的相同菌株进行比较。在相同条件下,在细菌脂多糖(LPS)和豆豆蛋白A (ConA)等增殖触发器的刺激下,培养幼稚小鼠脾细胞。用MTT法测定细胞的生长和增殖。无论是建立的细胞类型还是外植的脾细胞,在ddw培养基中的生长速度都明显高于在正常培养基中培养的细胞。为了确定DDW刺激生长的膜机制,我们分别用选择性阻滞剂阿米洛利和兰索拉唑抑制膜质子转运体Na+/H+反转运体和H+/K+ atp酶。结果,然而不完整,指向缺乏参与Na+/H+反转运蛋白和H+/K+ atp酶的可能含义。
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