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人卵巢癌细胞中HPMA共聚物-Mce6缀合物的亚细胞区室化与化疗活性的相关性

Correlation of subcellular compartmentalization of HPMA copolymer-Mce6 conjugates with chemotherapeutic activity in human ovarian carcinoma cells.

作者信息

Tijerina Monica, Kopecková Pavla, Kopecek Jindŕich

机构信息

Department Pharmaceutics, University of Utah, Salt Lake City 84112, USA.

出版信息

Pharm Res. 2003 May;20(5):728-37. doi: 10.1023/a:1023425300829.

Abstract

PURPOSE

Intracellular targets sensitive to oxidized damage generated by photodynamic therapy (PDT) utilizing N-(2-hydroxypropyl)methacrylamide (HPMA) copolymer-mesochlorin e6 monoethylenediamine (Mce6) conjugates was explored to aid in the design of second generation PDT delivery systems.

METHODS

Low temperature, metabolic inhibitor, and nuclear localization sequences (NLS(FITC)) were used to achieve desired subcellular localization that was evaluated by confocal analysis and subcellular fractionation. Mce6 was bound to HPMA copolymer conjugates via non-degradable dipeptide linkers (P-GG-Mce6, P-NLS(FITC)-GG-Mce6) or lysosomally degradable tetrapeptide spacers (P-GFLG-Mce6, P-NLS(FITC)-GFLG-Mce6). Chemotherapeutic efficacy was assessed by the concentration that inhibited growth by 50% (IC50), cell associated drug concentration (CAD) and confocal microscopy.

RESULTS

P-GFLG-Mce6 possessed enhanced chemotherapeutic activ ity compared to P-GG-Mce6 indicating enzymatically released Mce6 was more active than copolymer-bound Mce6. Lysosomes appeared less sensitive to photodamage as observed by a higher IC50. Nuclear-directed HPMA copolymer-Mce6 conjugates (P-NLS(FITC)-GG-Mce6, P-NLS(FITC)-GFLG-Mce6) possessed enhanced chemotherapeutic activity. However, control cationic HPMA copolymer-Mce6 conjugates containing a scrambled NLS (P-scNLS(FITC)-GG-Mce6) or amino groups (P-NH2-GG-Mce6) also displayed increased chemotherapeutic activity.

CONCLUSIONS

Nuclear delivery was observed for P-NLS(FITC)-GG-Mce6 and P-NLS(FITC)-GFLG-Mce6 indicating NLS was a feasible approach for nuclear delivery. Due to the cationic nature of NLS, increased membrane binding of PDT systems incorporating cationic nuclear targeting moieties must be addressed.

摘要

目的

利用N-(2-羟丙基)甲基丙烯酰胺(HPMA)共聚物-中氯卟啉e6单乙二胺(Mce6)共轭物,探索对光动力疗法(PDT)产生的氧化损伤敏感的细胞内靶点,以辅助设计第二代PDT递送系统。

方法

利用低温、代谢抑制剂和核定位序列(NLS(FITC))来实现所需的亚细胞定位,通过共聚焦分析和亚细胞分级分离进行评估。Mce6通过不可降解的二肽接头(P-GG-Mce6、P-NLS(FITC)-GG-Mce6)或溶酶体可降解的四肽间隔物(P-GFLG-Mce6、P-NLS(FITC)-GFLG-Mce6)与HPMA共聚物共轭物结合。通过抑制生长50%的浓度(IC50)、细胞相关药物浓度(CAD)和共聚焦显微镜评估化疗疗效。

结果

与P-GG-Mce6相比,P-GFLG-Mce6具有增强的化疗活性,表明酶促释放的Mce6比共聚物结合的Mce6更具活性。如通过较高的IC50所观察到的,溶酶体对光损伤似乎不太敏感。核导向的HPMA共聚物-Mce6共轭物(P-NLS(FITC)-GG-Mce6、P-NLS(FITC)-GFLG-Mce6)具有增强的化疗活性。然而,含有混乱NLS(P-scNLS(FITC)-GG-Mce6)或氨基(P-NH2-GG-Mce6)的对照阳离子HPMA共聚物-Mce6共轭物也显示出化疗活性增加。

结论

观察到P-NLS(FITC)-GG-Mce6和P-NLS(FITC)-GFLG-Mce6的核递送,表明NLS是一种可行的核递送方法。由于NLS的阳离子性质,必须解决包含阳离子核靶向部分的PDT系统增加的膜结合问题。

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