Harrison S M, Bers D M
Division of Biomedical Sciences, University of California, Riverside 92521.
Am J Physiol. 1989 Jun;256(6 Pt 1):C1250-6. doi: 10.1152/ajpcell.1989.256.6.C1250.
The association constants of ethylene glycol-bis(beta-aminoethyl ether)-N,N,N',N'-tetraacetic acid (EGTA) for protons and Ca can be used to calculate the apparent association constant of EGTA for Ca (K'CaEGTA). This value is often used in calculating the free [Ca2+] of complex solutions such as those used to determine the Ca sensitivity of skinned muscle fibers. As association constants are usually measured at 0.1 M ionic strength and between 20 and 25 degrees C, these constants must first be adjusted for conditions different from those at which they were measured, before calculation of K'CaEGTA. The proton and Ca association constants (and their delta H values) from A. E. Martell and R. M. Smith (Critical Stability Constants, New York: Plenum, vol. 1, 1974) adjusted for ionic strength and temperature using a semiempirical Debye-Hückel formalism and Van't Hoff isochore, respectively, closely describe the influence of both ionic strength and temperature on K'CaEGTA. Errors in the adjustment or calculation of association constants can dramatically affect the calculated value of K'CaEGTA and hence the calculated free [Ca2+] of complex solutions, such as those used to mimic the intracellular environment.
乙二醇双(β-氨基乙醚)-N,N,N',N'-四乙酸(EGTA)与质子和钙的缔合常数可用于计算EGTA对钙的表观缔合常数(K'CaEGTA)。该值常用于计算复杂溶液中的游离[Ca2+],例如用于确定去皮肌纤维钙敏感性的溶液。由于缔合常数通常是在0.1M离子强度以及20至25摄氏度之间测量的,因此在计算K'CaEGTA之前,必须首先针对与测量条件不同的情况对这些常数进行调整。A. E. Martell和R. M. Smith(《临界稳定常数》,纽约:Plenum,第1卷,1974年)的质子和钙缔合常数(及其ΔH值),分别使用半经验德拜-休克尔形式和范特霍夫等容线针对离子强度和温度进行了调整,它们密切描述了离子强度和温度对K'CaEGTA的影响。缔合常数调整或计算中的误差会极大地影响K'CaEGTA的计算值,进而影响复杂溶液(如用于模拟细胞内环境的溶液)中游离[Ca2+]的计算值。