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用于癌症治疗的植物甾醇负载表面定制生物活性聚合物纳米颗粒:优化、体外细胞活力、抗氧化活性及稳定性研究

Phytosterol-Loaded Surface-Tailored Bioactive-Polymer Nanoparticles for Cancer Treatment: Optimization, In Vitro Cell Viability, Antioxidant Activity, and Stability Studies.

作者信息

Karim Shahid, Akhter Md Habban, Burzangi Abdulhadi S, Alkreathy Huda, Alharthy Basma, Kotta Sabna, Md Shadab, Rashid Md Abdur, Afzal Obaid, Altamimi Abdulmalik S A, Khalilullah Habibullah

机构信息

Department of Pharmacology, Faculty of Medicine, King Abdulaziz University, Jeddah 21589, Saudi Arabia.

School of Pharmaceutical and Population Health Informatics (SoPPHI), DIT University, Dehradun 248009, India.

出版信息

Gels. 2022 Apr 2;8(4):219. doi: 10.3390/gels8040219.

Abstract

This study aimsto optimize, characterize, and assess the phytosterol-loaded surface-tailored bioactive Alginate/Chitosan NPs for antitumor efficacy against breast cancer. β-Sitosterol-loaded Alginate/Chitosan nanoparticles (β-SIT-Alg/Ch-NPs) were fabricated using an ion-gelation technique, and then the NPs’ surfaces were activated using an EDC/sulfo-NHS conjugation reaction. The activated chitosan NPs werefunctionalized with folic acid (FA), leveled as β-SIT-Alg/Ch-NPs-FA. Moreover, the functionalized NPs were characterized for size distribution, polydispersity index (PDI), and surface charge, FT-IR and DSC. β-SIT released from β-SIT-Alg/Ch-NPs was estimated in various biorelevant media of pH 7.4, 6.5, and 5.5, and data werefitted into various kinetic models. The cytotoxic study of β-SIT-Alg/Ch-NPs-FA against the cancer cell line was established. The antioxidant study of developed β-SIT-Alg/Ch-NPs was performed using DPPH assay. The stability of developed optimized formulation was assessed in phosphate buffer saline (PBS, pH 7.4), as per ICH guidelines. The drug-entrapped Alg/Ch-NPs-FA appeared uniform and nonaggregated, and the nanoscale particle measured a mean size of 126 ± 8.70 nm. The %drug encapsulation efficiency and %drug loading in β-SIT-Alg/Ch-NPs-FA were 91.06 ± 2.6% and 6.0 ± 0.52%, respectively. The surface charge on β-SIT-Alg/Ch-NPs-FA was measured as +25 mV. The maximum β-SIT release from β-SIT-Alg/Ch-NPs-FA was 71.50 ± 6.5% in pH 5.5. The cytotoxic assay expressed an extremely significant antitumor effect by β-SIT-Alg/Ch-NPs-FA when compared to β-SIT-suspension (p < 0.001). The antioxidant capacity of β-SIT-Alg/Ch-NPs-FA was 91 ± 5.99% compared to 29 ± 8.02% for β-SIT-suspension. The stability of NPs noticed an unworthy alteration (p > 0.05) in particle sizes and other parameters under study in the specific period.

摘要

本研究旨在优化、表征和评估负载植物甾醇的表面定制生物活性藻酸盐/壳聚糖纳米颗粒对乳腺癌的抗肿瘤疗效。采用离子凝胶技术制备了负载β-谷甾醇的藻酸盐/壳聚糖纳米颗粒(β-SIT-Alg/Ch-NPs),然后通过EDC/磺基-NHS偶联反应活化纳米颗粒表面。将活化的壳聚糖纳米颗粒用叶酸(FA)功能化,命名为β-SIT-Alg/Ch-NPs-FA。此外,对功能化纳米颗粒的尺寸分布、多分散指数(PDI)、表面电荷、傅里叶变换红外光谱(FT-IR)和差示扫描量热法(DSC)进行了表征。在pH值为7.4、6.5和5.5的各种生物相关介质中估计了从β-SIT-Alg/Ch-NPs释放的β-SIT,并将数据拟合到各种动力学模型中。建立了β-SIT-Alg/Ch-NPs-FA对癌细胞系的细胞毒性研究。使用二苯基苦味酰基自由基(DPPH)测定法对所制备的β-SIT-Alg/Ch-NPs进行了抗氧化研究。根据国际协调会议(ICH)指南,在磷酸盐缓冲盐水(PBS,pH 7.4)中评估了所制备的优化制剂的稳定性。载药的Alg/Ch-NPs-FA呈现均匀且无聚集状态,纳米级颗粒的平均尺寸为126±8.70 nm。β-SIT-Alg/Ch-NPs-FA中的药物包封率和载药量分别为91.06±2.6%和6.0±0.52%。β-SIT-Alg/Ch-NPs-FA的表面电荷测定为+25 mV。在pH 5.5条件下,β-SIT从β-SIT-Alg/Ch-NPs-FA中的最大释放量为71.50±6.5%。细胞毒性试验表明,与β-SIT悬浮液相比,β-SIT-Alg/Ch-NPs-FA具有极其显著的抗肿瘤作用(p<0.001)。β-SIT-Alg/Ch-NPs-FA的抗氧化能力为91±5.99%,而β-SIT悬浮液的抗氧化能力为29±8.02%。在特定时间段内,纳米颗粒的稳定性在粒径和其他研究参数方面没有明显变化(p>0.05)。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f7b7/9026838/7029c42a5321/gels-08-00219-g001.jpg

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