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锌硼-聚乳酸-羟基乙酸共聚物生物复合材料的制备、结构表征及体外评估。

Zinc-Boron-PLGA biocomposite material: preparation, structural characterization, and in vitro assessment.

机构信息

Department of Biochemistry, BioBoron Research Institute, S.C. Natural Research S.R.L., Podari, Dolj County, Romania;

出版信息

Rom J Morphol Embryol. 2023 Oct-Dec;64(4):567-577. doi: 10.47162/RJME.64.4.14.

Abstract

Nowadays, the state-of-the-art discoveries in the field of delivery systems for therapeutic purposes have redefined the importance of biocompatible and biodegradable poly(lactic-co-glycolic acid (PLGA) nanocomposites. The study aimed to obtain a biocomposite material, with improved properties of its constituents [zinc-boron (Zn-B) complex and PLGA], by a simple, cost-effective method. The water∕oil∕water double emulsion technique allowed the adjustment of the synthesis parameters, to maximize the degree of Zn-B complex encapsulation. The morphological aspects of the samples were established by scanning electron microscopy (SEM). Particle size distribution was determined by dynamic light scattering (DLS). Morphology was typical for PLGA, spherical one. Depending on the synthesis conditions, the obtained particles have diameters between 10-450 nm. Zeta potential (ZP) showed that the particles have electronegative surface charge, offering a favorable perspective on aggregation, flocculation, and dispersion phenomena. It was observed, applying the design of experiments, that the particles size increased with increasing amounts of PLGA and polyvinyl alcohol (PVA), while ZP increased with higher PLGA and smaller PVA amounts in the formulation. The encapsulation efficiency was determined by ultra-high performance liquid chromatography∕mass spectrometry (UHPLC∕MS). The in vitro assessment was performed using Vero CCL-81 epithelial cell line and the 3-(4,5-Dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide (MTT) test. Zn-B-PLGA biocomposite has promising characteristics and can be used for future biomedical applications.

摘要

如今,治疗用途输送系统领域的最新发现重新定义了生物相容和可生物降解的聚(乳酸-共-乙醇酸)(PLGA)纳米复合材料的重要性。本研究旨在通过简单、经济高效的方法获得具有改进性能的生物复合材料,其组成部分为锌-硼(Zn-B)配合物和 PLGA。水/油/水双乳液技术允许调整合成参数,以最大程度地实现 Zn-B 配合物的包封。通过扫描电子显微镜(SEM)确定了样品的形态特征。通过动态光散射(DLS)确定了粒径分布。形态为典型的 PLGA,为球形。根据合成条件的不同,得到的粒子直径在 10-450nm 之间。Zeta 电位(ZP)表明,粒子具有带负电荷的表面,为聚集、絮凝和分散现象提供了有利的前景。通过实验设计观察到,随着 PLGA 和聚乙烯醇(PVA)用量的增加,粒子尺寸增大,而 ZP 随着配方中 PLGA 用量的增加和 PVA 用量的减小而增大。通过超高效液相色谱/质谱联用(UHPLC/MS)测定包封效率。体外评估采用 Vero CCL-81 上皮细胞系和 3-(4,5-二甲基噻唑-2-基)-2,5-二苯基四氮唑溴盐(MTT)试验进行。Zn-B-PLGA 生物复合材料具有良好的特性,可用于未来的生物医学应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1a84/10863689/bffcce11df41/RJME-64-4-567-fig1.jpg

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