Farasati Far Bahareh, Omrani Mohsen, Naimi Jamal Mohammad Reza, Javanshir Shahrzad
Research Laboratory of Green Organic Synthesis & Polymers, Department of Chemistry, Iran University of Science and Technology, 16846-13114, Tehran, Iran.
Pharmaceutical and Heterocyclic Compounds Research Laboratory, Department of Chemistry, Iran University of Science and Technology, 16846-13114, Tehran, Iran.
Commun Chem. 2023 Feb 10;6(1):28. doi: 10.1038/s42004-023-00829-1.
As medical research progresses, the derivation and development of biological materials such as hydrogels have steadily gained more interest. The biocompatibility and non-toxicity of chitosan make chitosan hydrogels potential carriers for drug delivery. This work aims to develop two multi-reactive, safe, and highly swellable bio-hydrogels consisting of chitosan-graft-glycerol (CS-g-gly) and carboxymethyl chitosan-graft-glycerol (CMCS-g-gly), for sustained and controlled drug release, improved bioavailability along with entrapment in nanocarriers, which reduces side effects of vincristine sulphate. CS-g-gly and CMCS-g-gly are successfully prepared and fully characterized using analytical techniques. Under various conditions, the prepared hydrogels exhibit a high swelling ratio. Vincristine-loaded CS-g-gly (VCR/CS-g-gly), and CMCS-g-gly (VCR/CMCS-g-gly) show high encapsulation efficiency between 72.28-89.97%, and 56.97-71.91%, respectively. VCR/CS-g-gly show a sustained release behavior, and the maximum release of VCR from hydrogels reached 82% after 120 h of incubation. MCF-7 (breast cancer cell line) and MCF-10 (normal breast cell line) are evaluated for cell viability and apoptosis induction. The in-vitro anti-tumor efficacy is investigated using flow cytometry. The tetrazolium-based MTT assay of hydrogels shows no evidence of significant cytotoxicity in MCF-7 and MCF-10 cells. According to these findings, these hydrogels can effectively deliver drugs to MCF-7 and other breast cancer cells.
随着医学研究的进展,水凝胶等生物材料的衍生和开发越来越受到关注。壳聚糖的生物相容性和无毒性使其成为药物递送的潜在载体。本研究旨在开发两种具有多重反应性、安全性高且高度可溶胀的生物水凝胶,分别由壳聚糖接枝甘油(CS-g-gly)和羧甲基壳聚糖接枝甘油(CMCS-g-gly)组成,用于药物的持续和控释,提高生物利用度,并包裹于纳米载体中,从而降低硫酸长春新碱的副作用。通过分析技术成功制备并全面表征了CS-g-gly和CMCS-g-gly。在各种条件下,所制备的水凝胶均表现出高溶胀率。载有长春新碱的CS-g-gly(VCR/CS-g-gly)和CMCS-g-gly(VCR/CMCS-g-gly)的包封率分别高达72.28 - 89.97%和56.97 - 71.91%。VCR/CS-g-gly呈现出持续释放行为,孵育120小时后,水凝胶中长春新碱的最大释放率达到82%。对MCF-7(乳腺癌细胞系)和MCF-10(正常乳腺细胞系)进行了细胞活力和凋亡诱导评估。使用流式细胞术研究了体外抗肿瘤疗效。基于四氮唑的MTT法检测水凝胶对MCF-7和MCF-10细胞无明显细胞毒性。根据这些发现,这些水凝胶能够有效地将药物递送至MCF-7和其他乳腺癌细胞。