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普萘洛尔和噻吗洛尔与模型及生物膜系统相互作用的比较。

Comparisons of the interaction of propranolol and timolol with model and biological membrane systems.

作者信息

Herbette L, Katz A M, Sturtevant J M

出版信息

Mol Pharmacol. 1983 Sep;24(2):259-69.

PMID:6888369
Abstract

The nonspecific interaction of the beta-adrenergic blocking drugs, propranolol and timolol, with model and biological membranes has been investigated. Radioisotope measurements of the association of these drugs with dimyristoyl lecithin (DMPC) bilayers showed that both propranolol and timolol had a significantly greater molar association (mole of drug per mole of lipid) with DMPC above its phase transition temperature than below. Timolol had a much lower molar association with DMPC as compared with propranolol both above and below the phase transition temperature. For the DMPC model membrane system, the molar association of propranolol as measured by radioisotope and inferred from calorimetric studies was similar. Neutron diffraction utilizing propranolol deuterated in the naphthalene moiety showed that the naphthalene moiety of propranolol partitions into the hydrocarbon core of the DMPC lipid bilayer, and that the charged amine side chain is most likely positioned in the aqueous phospholipid head group region. For timolol, the association as measured by radioisotope methods was apparently greater than the partitioning inferred from calorimetric studies using freezing point depression analysis, suggesting a more complex interaction of timolol as compared with propranolol with the DMPC lipid bilayer. The association of propranolol and timolol with sarcoplasmic reticulum vesicles (SR) was similar to that with highly purified protein-depleted SR lipids, and DMPC above its phase transition. The association of propranolol with the SR membrane (mole of propranolol per mole of SR phospholipid) correlated with its ability to inhibit calcium uptake, whereas only a fraction of the total association of timolol with the SR membrane appeared to lead to inhibition of calcium uptake. These results suggest that the major nonspecific interactions of propranolol and timolol are with the SR membrane lipids, and that the magnitude of their interactions depends on both the lipid solubility of the drug and the physical state of the fatty acyl chains of the membrane. Both propranolol and timolol appear to perturb the functional properties of the calcium pump protein in the SR membrane (inhibition of ATP-induced calcium uptake) indirectly by partitioning into the bulk lipid matrix of the SR lipid bilayer, although other sites of interaction cannot be excluded.

摘要

已对β-肾上腺素能阻滞剂普萘洛尔和噻吗洛尔与模型膜及生物膜的非特异性相互作用进行了研究。通过放射性同位素测量这些药物与二肉豆蔻酰卵磷脂(DMPC)双层膜的结合情况,结果显示,在高于其相变温度时,普萘洛尔和噻吗洛尔与DMPC的摩尔结合量(每摩尔脂质中药物的摩尔数)均显著高于低于相变温度时。在相变温度之上和之下,噻吗洛尔与DMPC的摩尔结合量均远低于普萘洛尔。对于DMPC模型膜系统,通过放射性同位素测量以及从量热研究推断出的普萘洛尔的摩尔结合量相似。利用萘部分氘代的普萘洛尔进行中子衍射研究表明,普萘洛尔的萘部分分配到DMPC脂质双层的烃核中,而带电荷的胺侧链最有可能位于磷脂头部基团的水相区域。对于噻吗洛尔,通过放射性同位素方法测量的结合量明显大于使用凝固点降低分析从量热研究推断出的分配量,这表明与普萘洛尔相比,噻吗洛尔与DMPC脂质双层的相互作用更为复杂。普萘洛尔和噻吗洛尔与肌浆网囊泡(SR)的结合情况与它们与高度纯化的无蛋白SR脂质以及高于相变温度的DMPC的结合情况相似。普萘洛尔与SR膜的结合量(每摩尔SR磷脂中普萘洛尔的摩尔数)与其抑制钙摄取的能力相关,而噻吗洛尔与SR膜的总结合量中只有一部分似乎会导致钙摄取受到抑制。这些结果表明,普萘洛尔和噻吗洛尔的主要非特异性相互作用是与SR膜脂质发生的,且它们相互作用的程度取决于药物的脂溶性以及膜中脂肪酰链的物理状态。普萘洛尔和噻吗洛尔似乎都是通过分配到SR脂质双层的主体脂质基质中,间接干扰SR膜中钙泵蛋白的功能特性(抑制ATP诱导的钙摄取),尽管不能排除其他相互作用位点。

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