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合成一种新型 CS-g-MMCs 偶联物并抑制体外 Tenon 囊成纤维细胞的增殖。

Synthesis of a novel CS-g-MMCs conjugate and the inhabitation on the proliferation of Tenon's capsule fibroblasts in vitro.

机构信息

DSAPM Lab, PCFM Lab, School of Chemistry and Chemical Engineering, Sun Yat-Sen University, Guangzhou 510275, China.

出版信息

Eur J Pharm Sci. 2012 Aug 15;46(5):357-66. doi: 10.1016/j.ejps.2012.02.023. Epub 2012 Mar 3.

Abstract

A novel anti-proliferative macromolecular conjugate, CS-g-MMCs, was synthesized in order to decrease the cytotoxicity of Mitomycin C (MMC) which was a traditional anti-proliferative agent of fibroblast in trabeculectomy. The structure of CS-g-MMCs was characterized by (1)H NMR, FT-IR spectroscopy and GPC analysis. The grafting degree (dg) of MMC onto chitosan (CS) was determined to be in the range of 2.8-11.3%, which could be controlled by variation of the molar ratios of MMC to oxidized chitosan (CS-CHO). In the drug release profiles of CS-g-MMCs in vitro, an initial burst followed by slow leakage was observed, and addition of acid or lysozyme obviously accelerated the MMC release. The MTS assay indicated that CS-CHO of 8 mg/ml has no cytotoxicity against human Tenon's capsule fibroblasts (HTCFs). The inhibition of HTCFs proliferation by CS-g-MMCs increased along with increasing the dg of conjugate. The CS-g-MMCs also caused the apoptosis of HTCFs and interfered in the active DNA synthesis in HTCFs. Furthermore, the expression of a-SMA at gene and protein levels were obviously lower when HTCFs were treated with CS-g-MMCs, as compared to MMC or blend of MMC/CS-CHO (p<0.05). Our results primarily demonstrated that the CS-g-MMCs conjugates have low cytotoxicity and have the effect to inhibit fibroblast proliferation.

摘要

为了降低丝裂霉素 C(MMC)作为传统小梁切除术中成纤维细胞抗增殖药物的细胞毒性,合成了一种新型的抗增殖高分子缀合物 CS-g-MMCs。通过(1)H NMR、FT-IR 光谱和 GPC 分析对 CS-g-MMCs 的结构进行了表征。MMC 接枝到壳聚糖(CS)上的接枝度(dg)在 2.8-11.3%范围内,可通过改变 MMC 与氧化壳聚糖(CS-CHO)的摩尔比来控制。在 CS-g-MMCs 的体外药物释放曲线中,观察到初始突释后缓慢泄漏,添加酸或溶菌酶明显加速了 MMC 的释放。MTS 测定表明,8mg/ml 的 CS-CHO 对人 Tenon 囊成纤维细胞(HTCFs)无细胞毒性。随着缀合物 dg 的增加,CS-g-MMCs 对 HTCFs 增殖的抑制作用也随之增强。CS-g-MMCs 还导致 HTCFs 凋亡,并干扰 HTCFs 中活性 DNA 的合成。此外,与 MMC 或 MMC/CS-CHO 混合物(p<0.05)相比,用 CS-g-MMCs 处理 HTCFs 时,a-SMA 的基因和蛋白水平的表达明显降低。我们的研究结果初步表明,CS-g-MMCs 缀合物具有低细胞毒性,并具有抑制成纤维细胞增殖的作用。

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