Heerklotz H, Seelig J
Department of Biophysical Chemistry, Biocenter of the University of Basel, Basel, Switzerland.
Biophys J. 2000 May;78(5):2435-40. doi: 10.1016/S0006-3495(00)76787-7.
The membrane/water partition coefficients, K, of 15 electrically neutral (non-charged or zwitterionic) detergents were measured with phospholipid vesicles by using isothermal titration calorimetry, and were compared to the corresponding critical micellar concentrations, cmc. The detergents measured were oligo(ethylene oxide) alkyl ethers (C(m)EO(n) with m = 10/n = 3, 7 and m = 12/n = 3.8); alkylglucosides (octyl, decyl); alkylmaltosides (octyl, decyl, dodecyl); diheptanoylphosphatidylcholine; Tritons (X-100, X-114) and CHAPS. A linear relation between the free energies of partitioning into the membrane and micelle formation was found such that K. CMC approximately 1. The identity K. CMC = 1 was used to classify detergents with respect to their membrane disruption potency. "Strong" detergents are characterized by K. CMC < 1 and solubilize lipid membranes at detergent-to-lipid ratios X(b) < 1 (alkylmaltosides, tritons, heptaethylene glycol alkyl ethers). "Weak" detergents are characterized by K. CMC > 1 and accumulate in the membrane- to detergent-to-lipid ratios X(b) > 1 before the bilayer disintegrates (alkylglucosides, pentaethylene glycol dodecyl ether).
使用等温滴定量热法,通过磷脂囊泡测量了15种电中性(不带电荷或两性离子)去污剂的膜/水分配系数K,并将其与相应的临界胶束浓度cmc进行比较。所测量的去污剂包括聚(环氧乙烷)烷基醚(m = 10/n = 3、7以及m = 12/n = 3.8的C(m)EO(n));烷基糖苷(辛基、癸基);烷基麦芽糖苷(辛基、癸基、十二烷基);二庚酰磷脂酰胆碱;曲拉通(X - 100、X - 114)和CHAPS。发现了进入膜的分配自由能与胶束形成自由能之间的线性关系,使得K·CMC约为1。用K·CMC = 1来根据去污剂的膜破坏能力进行分类。“强”去污剂的特征是K·CMC < 1,并且在去污剂与脂质的比例X(b) < 1时溶解脂质膜(烷基麦芽糖苷、曲拉通、七甘醇烷基醚)。“弱”去污剂的特征是K·CMC > 1,并且在双层解体之前,在膜 - 去污剂 - 脂质比例X(b) > 1时在膜中积累(烷基糖苷、五甘醇十二烷基醚)。