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ESI-IM-MS characterization of cyclodextrin complexes and their chemically cross-linked alpha (α-), beta (β-) and gamma (γ-) cyclodextrin particles as promising drug delivery materials with improved bioavailability.

ESI-IM-MS characterization of cyclodextrin complexes and their chemically cross-linked alpha (α-), beta (β-) and gamma (γ-) cyclodextrin particles as promising drug delivery materials with improved bioavailability.

机构信息

Department of Chemistry, Faculty of Sciences & Arts, and Nanoscience and Technology Research and Application Center (NANORAC), Canakkale Onsekiz Mart University Terzioglu Campus, Canakkale 17100, Turkey.

Department of Chemistry, Faculty of Science, Hacettepe University, Beytepe Campus, Ankara 06800, Turkey.

出版信息

Colloids Surf B Biointerfaces. 2023 Oct;230:113522. doi: 10.1016/j.colsurfb.2023.113522. Epub 2023 Aug 22.

DOI:10.1016/j.colsurfb.2023.113522
PMID:37657404
Abstract

Cyclodextrins (CDs) are natural cyclic oligosaccharides with a relatively hydrophobic cavity and a hydrophilic outer surface. In this study, alpha (α-), beta (β-) and gamma (γ-) CD particles were prepared by directly using α-, β-, and γ-CDs as monomeric units and divinyl sulfone (DVS) as a crosslinker in a single-step via reverse micelle microemulsion crosslinking technique. Particles of p(α-CD), p(β-CD), and p(γ-CD) were perfectly spherical in sub- 10 µm size ranges. The prepared p(CD) particles at 1.0 mg/mL concentrations were found biocompatible with > 95 % cell viability against L929 fibroblasts. Furthermore, p(α-CD) and p(β-CD) particles were found non-hemolytic with < 2 % hemolysis ratios, whereas p(γ-CD) particles were found to be slightly hemolytic with its 2.1 ± 0.4 % hemolysis ratio at 1.0 mg/mL concentration. Furthermore, a toxic compound, Bisphenol A (BPA) and a highly antioxidant polyphenol, curcumin (CUR) complexation with α-, β-, and γ-CD molecules was investigated via Electrospray-Ion Mobility-Mass Spectrometry (ESI-IM-MS) and tandem mass spectrometry (MS/MS) analysis. It was determined that the most stable noncovalent complex was in the case of β-CD, but the complex stoichiometry was changed by the hydrophobic nature of the guest molecules. In addition, BPA and CUR were separately loaded into prepared p(CD) particles as active agents. The drug loading and release studies showed that p(CD) particles possess governable loading and releasing profiles.

摘要

环糊精(CDs)是具有相对疏水空腔和亲水外表面的天然环状低聚糖。在本研究中,通过在一步法中直接使用α-、β-和γ-CD 作为单体单元,并且使用二乙烯基砜(DVS)作为交联剂,通过反胶束微乳液交联技术制备α-CD、β-CD 和γ-CD 颗粒。p(α-CD)、p(β-CD) 和 p(γ-CD) 颗粒的粒径在亚 10 µm 范围内呈完美的球形。在 1.0 mg/mL 浓度下,制备的 p(CD) 颗粒具有>95%的细胞活力,与 L929 成纤维细胞的生物相容性良好。此外,p(α-CD)和 p(β-CD)颗粒的溶血率<2%,被认为是非溶血的,而 p(γ-CD)颗粒的溶血率为 2.1±0.4%,在 1.0 mg/mL 浓度下略有溶血。此外,通过电喷雾离子迁移-质谱(ESI-IM-MS)和串联质谱(MS/MS)分析研究了双酚 A(BPA)和高度抗氧化多酚姜黄素(CUR)与α-、β-和γ-CD 分子的络合。确定最稳定的非共价复合物是β-CD,但由于客体分子的疏水性,络合化学计量发生了变化。此外,将 BPA 和 CUR 分别负载到制备的 p(CD)颗粒中作为活性物质。药物负载和释放研究表明,p(CD)颗粒具有可控制的负载和释放特性。

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