首页> 美国卫生研究院文献>Scientific Reports >Chitosan-Dextran sulfate coated doxorubicin loaded PLGA-PVA-nanoparticles caused apoptosis in doxorubicin resistance breast cancer cells through induction of DNA damage
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Chitosan-Dextran sulfate coated doxorubicin loaded PLGA-PVA-nanoparticles caused apoptosis in doxorubicin resistance breast cancer cells through induction of DNA damage

机译:壳聚糖-葡聚糖硫酸盐包裹的阿霉素负载的PLGA-PVA-纳米颗粒通过诱导DNA损伤导致阿霉素抗性乳腺癌细胞凋亡

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摘要

To overcome the toxicity, pharmacokinetics and drug resistance associated with doxorubicin (DOX), a strategy was developed by encapsulating DOX- loaded-PLGA-PVA- nanoparticles within chitosan-dextran sulfate nanoparticles (CS-DS) [CS-DS-coated-DOX-loaded -PLGA-PVA-NP] and study the sensitivity against DOX- resistance- breast cancer cells (MCF-7-DOX-R). These CS-DS and PLGA-PVA double coated DOX are spherical, stable, polydispersed and have zeta potential +2.89 mV. MCF-7- DOX-R cells were derived by exposing increasing doses of DOX in MCF-7 cells. These cells were resistance to 500 nM of DOX while parental cells were susceptible at 150 nM. The double coated NP caused more cytotoxicity in cancer and MCF-7-DOX-R cells without affecting the normal cells in comparison to DOX-loaded-PLGA-PVA-NP. These NP enhances the uptake of DOX in MCF-7-DOX-R cells and caused apoptosis by increasing apoptotic nuclei, Bax/Bcl-xL ratio, cleaved product PARP-1, tumor suppressor gene p21, p53, topoisomerase inhibition activity, DNA damage and decreasing the migratory potential of cells. An increased S phase arrest was noted in DOX and DOX- loaded- PLGA-PVA-NP treated cells but reduction of S phase and simultaneous increase of Sub-G1 was observed in double coated-NP. Thus, data revealed that CS-DS- DOX- loaded PLGA-PVA- NP caused DOX-resistance cell death by inducing inhibition of topoisomerase activity followed by DNA damage.
机译:为了克服与阿霉素(DOX)相关的毒性,药代动力学和耐药性,开发了一种策略,将负载DOX的PLGA-PVA-纳米颗粒封装在壳聚糖-葡聚糖硫酸盐纳米颗粒(CS-DS)[CS-DS-coated-DOX中-PLGA-PVA-NP],并研究其对DOX耐药乳腺癌细胞(MCF-7-DOX-R)的敏感性。这些CS-DS和PLGA-PVA双层DOX是球形,稳定,多分散的,ζ电位为+2.89 + mV。 MCF-7- DOX-R细胞是通过在MCF-7细胞中暴露剂量不断增加的DOX衍生而来的。这些细胞对500 nM的DOX有抗性,而亲代细胞对150 nM的敏感性。与装载DOX的PLGA-PVA-NP相比,双层包覆的NP在癌症和MCF-7-DOX-R细胞中引起更多的细胞毒性,而不会影响正常细胞。这些NP通过增加凋亡核,Bax / Bcl-xL比,裂解产物PARP-1,肿瘤抑制基因p21,p53,拓扑异构酶抑制活性,DNA损伤来增强MCF-7-DOX-R细胞对DOX的吸收并引起细胞凋亡。并降低细胞的迁移潜力。在用DOX和DOX加载的PLGA-PVA-NP处理的细胞中,S期停滞现象有所增加,但在双包被的NP中观察到S期减少和Sub-G1同时增加。因此,数据显示,CS-DS-DOX负载的PLGA-PVA-NP通过诱导对拓扑异构酶活性的抑制继而引起DNA损伤,导致DOX抗性细胞死亡。

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