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通过(1)H-、(2)H-、(31)P-核磁共振和电子自旋共振研究环孢菌素A在聚α-环糊精中的非晶态固体分散体与模型膜的相互作用

Interaction Study of an Amorphous Solid Dispersion of Cyclosporin A in Poly-Alpha-Cyclodextrin with Model Membranes by (1)H-, (2)H-, (31)P-NMR and Electron Spin Resonance.

作者信息

Debouzy Jean-Claude, Crouzier David, Bourbon Fréderic, Lahiani-Skiba Malika, Skiba Mohamed

机构信息

IRBA, RNI-Biophysics Laboratory, 24, avenue des Maquis du Grésivaudan, BP 82, 38702 La Tronche Cedex, France.

Galenic Pharmaceutical Laboratory, LAGEP UMR CNRS 5007, UFR Medicine and Pharmacy, 22 boulevard Gambetta, 76183 Rouen, France.

出版信息

J Drug Deliv. 2014;2014:575719. doi: 10.1155/2014/575719. Epub 2014 May 5.

Abstract

The properties of an amorphous solid dispersion of cyclosporine A (ASD) prepared with the copolymer alpha cyclodextrin (POLYA) and cyclosporine A (CYSP) were investigated by (1)H-NMR in solution and its membrane interactions were studied by (1)H-NMR in small unilamellar vesicles and by (31)P (2)H NMR in phospholipidic dispersions of DMPC (dimyristoylphosphatidylcholine) in comparison with those of POLYA and CYSP alone. (1)H-NMR chemical shift variations showed that CYSP really interacts with POLYA, with possible adduct formation, dispersion in the solid matrix of the POLYA, and also complex formation. A coarse approach to the latter mechanism was tested using the continuous variations method, indicating an apparent 1 : 1 stoichiometry. Calculations gave an apparent association constant of log Ka = 4.5. A study of the interactions with phospholipidic dispersions of DMPC showed that only limited interactions occurred at the polar head group level ((31)P). Conversely, by comparison with the expected chain rigidification induced by CYSP, POLYA induced an increase in the fluidity of the layer while ASD formation led to these effects almost being overcome at 298 K. At higher temperature, while the effect of CYSP seems to vanish, a resulting global increase in chain fluidity was found in the presence of ASD.

摘要

采用溶液中的¹H-NMR研究了用共聚物α-环糊精(POLYA)和环孢素A(CYSP)制备的环孢素A无定形固体分散体(ASD)的性质,并通过小单层囊泡中的¹H-NMR以及与单独的POLYA和CYSP相比,在二肉豆蔻酰磷脂酰胆碱(DMPC)的磷脂分散体中用³¹P²H NMR研究了其膜相互作用。¹H-NMR化学位移变化表明CYSP确实与POLYA相互作用,可能形成加合物,分散在POLYA的固体基质中,还形成了复合物。使用连续变化法测试了后一种机制的粗略方法,表明化学计量比约为1∶1。计算得出表观缔合常数log Ka = 4.5。对与DMPC磷脂分散体相互作用的研究表明,仅在极性头部基团水平(³¹P)发生有限的相互作用。相反,与CYSP诱导的预期链刚性化相比,POLYA导致层的流动性增加,而ASD形成在298 K时几乎克服了这些影响。在较高温度下,虽然CYSP的影响似乎消失,但在存在ASD的情况下发现链流动性总体增加。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6ce1/4027026/57dbf4425a8c/JDD2014-575719.003.jpg

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