Alhakamy Nabil A, Ahmed Osama A A, Fahmy Usama A, Md Shadab
Department of Pharmaceutics, Faculty of Pharmacy, King Abdulaziz University, Jeddah 21589, Saudi Arabia.
Center of Excellence for Drug Research and Pharmaceutical Industries, Faculty of Pharmacy, King Abdulaziz University, Jeddah 21589, Saudi Arabia.
Pharmaceuticals (Basel). 2021 Jul 27;14(8):729. doi: 10.3390/ph14080729.
Pancreatic cancer has a low survival rate and has limited therapeutic options due to the peculiarity of the tumor tissue. Cancer nanotechnology provides several opportunities to resolve such difficulties as a result of the high surface-to-volume ratio of nanostructures. Peptide-drug nanocomplexes have proved to have immense potential in anticancer activity against pancreatic cancer cells. Thus, in the present study apamin (APA) and alendronate sodium (ALS) were combined to form nanocomplexes (APA-ALS-NC) against pancreatic cancer cells. Optimization of ALS, incubation time, and sonication time in terms of particle size of the nanocomplex was carried out. The optimized formulation was evaluated for anticancer activities in pancreatic cancer cells (PANC-1 cells). A Box-Behnken design using ALS, incubation time, and sonication time as independent factors and particle size as the response was chosen to optimize the APA-ALS-NC formulation. The optimized APA-ALS-NC had a particle size of 161.52 ± 8.4 nm. The evaluation of APA-ALS-NC in PANC-1 cells was carried out using various in vitro tests. The IC values were determined by MTT assay and found to be 37.6 ± 1.65, 13.4 ± 0.59, and 1.01 ± 0.04 µg/mL for ALS, APA, and APA-ALS-NC, respectively. The higher cytotoxicity activity of APA-ALS-NC was confirmed from the higher percentage of cells in the necrosis phase (apoptosis study) and the G2-M phase (cell cycle study) compared to that of ALS and APA. While the loss of mitochondrial membrane potential was less for APA-ALS-NC, the levels of IL-1β, TNF-α, caspase-3, ROS, IL-6, and NF-kB showed that APA-ALS-NC can significantly enhance apoptosis and cytotoxicity in PANC-1 cells. Moreover, Bax (10.87 ± 1.36), Bcl-2 (0.27 ± 0.02), and p53 (9.16 ± 1.22) gene expressions confirmed that APA-ALS-NC had a significant apoptotic effect compared to ALS and APA. In summary, the APA-ALS-NC had a more significant cytotoxic effect than ALS and APA. The results of the present study are promising for further evaluation in pre-clinical and clinical trials for arriving at a successful therapeutic strategy against pancreatic cancer.
胰腺癌的生存率较低,且由于肿瘤组织的特殊性,其治疗选择有限。癌症纳米技术因纳米结构具有高比表面积,为解决此类难题提供了多种机会。肽 - 药物纳米复合物已被证明在抗胰腺癌细胞的抗癌活性方面具有巨大潜力。因此,在本研究中,蜂毒明肽(APA)和阿仑膦酸钠(ALS)被组合形成针对胰腺癌细胞的纳米复合物(APA - ALS - NC)。针对纳米复合物的粒径,对ALS、孵育时间和超声处理时间进行了优化。对优化后的制剂在胰腺癌细胞(PANC - 1细胞)中进行了抗癌活性评估。选择以ALS、孵育时间和超声处理时间作为独立因素,粒径作为响应变量的Box - Behnken设计来优化APA - ALS - NC制剂。优化后的APA - ALS - NC粒径为161.52±8.4 nm。使用各种体外试验对PANC - 1细胞中的APA - ALS - NC进行了评估。通过MTT法测定IC值,发现ALS、APA和APA - ALS - NC的IC值分别为37.6±1.65、13.4±0.59和1.01±0.04μg/mL。与ALS和APA相比,坏死期(凋亡研究)和G2 - M期(细胞周期研究)中细胞百分比更高,证实了APA - ALS - NC具有更高的细胞毒性活性。虽然APA - ALS - NC的线粒体膜电位损失较小,但IL - 1β、TNF - α、caspase - 3、ROS、IL - 6和NF - kB的水平表明,APA - ALS - NC可显著增强PANC - 1细胞中的凋亡和细胞毒性。此外,Bax(10.87±1.36)、Bcl - 2(0.27±0.02)和p53(9.16±1.22)基因表达证实,与ALS和APA相比,APA - ALS - NC具有显著的凋亡作用。总之,APA - ALS - NC比ALS和APA具有更显著的细胞毒性作用。本研究结果有望在临床前和临床试验中进行进一步评估,以制定出成功的胰腺癌治疗策略。