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In vitro and in vivo antitumor activity of gemcitabine loaded thermosensitive liposomal nanoparticles and mild hyperthermia in pancreatic cancer

机译:吉西他滨负载的热敏脂质体纳米颗粒和轻度高热在胰腺癌的体内和体外抗肿瘤活性

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摘要

The study was designed to explore the feasibility of increasing the delivery of gemcitabine-HCL (Gem), a poor membrane permeable and short half-life drug, through PEGylated thermosensitive liposomal nanoparticles (TSLnps) delivery system followed by mild hyperthermia (mTH) at 42°C. In vitro release pattern of Gem-TSLnps showed a significant Gem release (60%, p<0.01) at 42°C compared to that released at 37°C (29%). Cell viability and clonogenic assay demonstrated significant inhibition of MiaPaCa-2 cells growth by Gem-TSLnps + mHT compared to Gem alone. Further, IC50 value of Gem treated cells was (0.077μM) 1.2 fold higher compared to that treated with Gem-TSLnps + mHT (0.063 μM). mHT treated cells showed moderate inhibition of cell growth compared to controls. For cellular uptake studies, flow cytometric analysis and confocal imaging revealed higher uptake of Rho-TSLnps compared to Rho-PE or untreated cells. Tumor volume of mice treated with Gem alone was 1.8 fold higher compared to the group treated with Gem-TSLnps + mHT. Further, tumor regression of Gem-TSLnps + mHT treated group was significantly higher (p<0.01) compared to Gem-TSLnps or Gem. No significant elevated liver enzymes were observed when serum alanine aminotransferase (ALT) or aspartate aminotransferase (AST) level of control group was compared to that of Gem or Gem-TSLnps+mHT treated groups. However, serum level of alkaline phosphatase (ALP) of Gem or Gem-TSLnps+ mHT treated group was significantly elevated (p<0.05) when compared to the control group. In conclusion, TSLnps increased the delivery of Gem to tumor cells and also enhanced significantly the antitumor activity of Gem when combined with heat.
机译:该研究旨在探讨通过聚乙二醇化热敏脂质体纳米颗粒(TSLnps)递送系统,随后在42度进行温和热疗(mTH)来增加吉西他滨盐酸盐(Gem)的可行性,该药物是一种膜通透性差,半衰期短的药物℃。与在37°C(29%)释放的Gem-TSLnps的体外释放模式相比,在42°C时Gem-TSLnps具有显着的Gem释放(60%,p <0.01)。与单独的Gem相比,Gem-TSLnps + mHT的细胞活力和克隆形成试验证明MiaPaCa-2细胞的生长受到显着抑制。此外,与用Gem-TSLnps + mHT(0.063μM)处理的细胞相比,经Gem处理的细胞的IC50值高(0.077μM)1.2倍。与对照相比,经mHT处理的细胞显示出中等程度的细胞生长抑制。对于细胞摄取研究,流式细胞仪分析和共聚焦成像显示,与Rho-PE或未经处理的细胞相比,Rho-TSLnps的摄取更高。单独用Gem治疗的小鼠的肿瘤体积比用Gem-TSLnps + mHT治疗的小鼠高1.8倍。此外,与Gem-TSLnps或Gem相比,Gem-TSLnps + mHT治疗组的肿瘤消退明显更高(p <0.01)。将对照组的血清丙氨酸氨基转移酶(ALT)或天冬氨酸氨基转移酶(AST)水平与Gem或Gem-TSLnps + mHT治疗组的水平进行比较,未观察到明显的肝酶升高。但是,与对照组相比,Gem或Gem-TSLnps + mHT治疗组的血清碱性磷酸酶(ALP)水平显着升高(p <0.05)。总之,TSLnps与热结合时增加了Gem向肿瘤细胞的递送,并且还显着增强了Gem的抗肿瘤活性。

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