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载姜黄素的聚乙二醇化 PAMAM 树枝状大分子的接枝、表征及对癌细胞治疗活性的增强

Grafting, characterization and enhancement of therapeutic activity of berberine loaded PEGylated PAMAM dendrimer for cancerous cell.

机构信息

Institute of Pharmaceutical Research (IPR), GLA University, Mathura, Uttar Pradesh, India.

University Institute of Pharma Sciences (UIPS), Chandigarh University, Mohali, Punjab, India.

出版信息

J Biomater Sci Polym Ed. 2023 Jun;34(8):1053-1066. doi: 10.1080/09205063.2022.2155782. Epub 2022 Dec 14.

Abstract

Berberine is an anticancer medication that generates side effects due to its hydrophobicity and low cellular promiscuity as well as high dose requirement. Thus, have to prepare PEGylated dendrimer conjugates which increases the targeting and release of chemotherapeutic drugs at the tumor site although falling the adverse side effects. The circulation time of drug is enhanced by PEGylation. It is the covalent attachment of PEG to therapeutic protein or any molecule. PEGylated berberine dendrimer was prepared by biotinylation cross linking method and characterized by particle size, zeta potential, entrapment efficiency, release and stability study. The Structure validation of berberine before and after grafting was confirmed by FTIR and NMR spectroscopy. Further prepared PEGylated complex were proceeded for the cellular uptake study in AMJ-13, and BT-20 cells line by fluorescent microscopy study and MTT assay cytotoxicity study in MCF-7 cell line. The prepared PEGylated formulation showed nanometric size, desired zeta potential, and 69.56 ± 23% entrapment efficiency. The prepared PEGylated particle showed 70.23% release at 72 h with good stability at 90 days. The cellular uptake of formulation was highly appreciable which is clearly observed in AMJ-13 and BT-20 cells line. In comparison to pure drug, developed formulation has 10.8 M high efficiency for breast cancer cell line. PEGylation is easy and reasonable way, as it requires lesser time and is proved to be superior technique for treatment of cancer.

摘要

小檗碱是一种抗癌药物,由于其疏水性、低细胞混杂性和高剂量要求,会产生副作用。因此,必须制备聚乙二醇化树状大分子缀合物,以增加在肿瘤部位的靶向和释放化疗药物,同时降低不良反应。PEG 化可延长药物的循环时间。它是通过共价键将 PEG 连接到治疗性蛋白质或任何分子上。采用生物素交联法制备了小檗碱树状大分子,并通过粒径、Zeta 电位、包封效率、释放和稳定性研究对其进行了表征。通过傅里叶变换红外光谱和核磁共振波谱对小檗碱接枝前后的结构进行了验证。进一步将制备的 PEG 化复合物用于 AMJ-13 和 BT-20 细胞系的细胞摄取研究,并通过荧光显微镜研究和 MCF-7 细胞系的 MTT 细胞毒性研究进行 PEG 化复合物的细胞摄取研究。所制备的 PEG 化配方具有纳米级粒径、所需的 Zeta 电位和 69.56±23%的包封效率。在 72 小时内,制备的 PEG 化颗粒释放了 70.23%,在 90 天内具有良好的稳定性。制剂的细胞摄取率非常高,在 AMJ-13 和 BT-20 细胞系中观察到明显的摄取。与纯药物相比,该制剂对乳腺癌细胞系的效率高达 10.8μM。PEG 化是一种简单合理的方法,因为它需要的时间更少,并且被证明是治疗癌症的优越技术。

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