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" alt="" style="border: 0px;">
氨丁三醇(Tris)是一种缓冲盐,广泛应用于生物药学领域。化学式C4H11NO3,白色晶粒,常用于蛋白或核酸缓冲液,其有效范围通常是在pH 7.0-9.2之间。Tris用于不同pH条件下蛋白质晶体的生长。氨丁三醇(Tris)也是蛋白质电泳缓冲液的主要成分之一。它在电泳缓冲液中与甘氨酸构形成缓冲体,稳定电泳过程中的pH值。此外,氨丁三醇(Tris)也是制备硫化促进剂、表面活性剂和一些药物的中间物,Tris也被用作滴定标准物。
氨丁三醇(Tris)应用案例: