Jain Nishant Kumar, R S Prabhuraj, Bavya M C, Prasad Rajendra, Bandyopadhyaya Rajdip, Naidu V G M, Srivastava Rohit
Department of Biosciences and Bioengineering, Indian Institute of Technology Bombay (IIT-B) Powai Mumbai 400076 India
Centre for Research in Nanotechnology and Science, Indian Institute of Technology Bombay (IIT-B) Powai Mumbai 400076 India.
RSC Adv. 2019 Aug 27;9(46):26572-26581. doi: 10.1039/c9ra03407b. eCollection 2019 Aug 23.
Localized cancer rates are on an upsurge, severely affecting mankind across the globe. Timely diagnosis and adopting appropriate treatment strategies could improve the quality of life significantly reducing the mortality and morbidity rates. Recently, nanotherapeutics has precipitously shown increased efficacy for controlling abnormal tissue growth in certain sites in the body, among which ligand functionalized nanoparticles (NP) have caught much attention for improved survival statistics active targeting. Our focus was to repurpose the antihelminthic drug, niclosamide (NIC), which could aid in inhibiting the abnormal growth of cells restricted to a specific region. The work here presents a one-pot synthesis of niclosamide encapsulated, hyaluronic acid functionalized core-shell nanocarriers [(NIC-PLGA NP)HA] for active targeting of localized cancer. The synthesized nanocarriers were found to possess spherical morphology with mean size of 150.8 ± 9 nm and zeta potential of -24.9 ± 7.21 mV. The encapsulation efficiency was found to be 79.19 ± 0.16% with a loading efficiency of 7.19 ± 0.01%. The nanohybrids exhibited extreme cytocompatibility upon testing with MDA-MB-231 and L929 cell lines. The rate of cancer cell elimination was approximately 85% with targeted cell imaging results being highly convincing. [(NIC-PLGA NP)HA] demonstrates increased cellular uptake leading to a hike in reactive oxygen species (ROS) generation, combating tumour cells aiding in the localized treatment of cancer and associated therapy.
局部癌症发病率呈上升趋势,严重影响着全球人类。及时诊断并采取适当的治疗策略可以显著提高生活质量,降低死亡率和发病率。最近,纳米治疗学已迅速显示出在控制身体某些部位异常组织生长方面的疗效提高,其中配体功能化纳米颗粒(NP)因改善生存统计数据的主动靶向作用而备受关注。我们的重点是重新利用抗蠕虫药物氯硝柳胺(NIC),它有助于抑制局限于特定区域的细胞异常生长。本文介绍了一种一锅法合成包裹氯硝柳胺、透明质酸功能化的核壳纳米载体[(NIC-PLGA NP)HA],用于局部癌症的主动靶向治疗。发现合成的纳米载体具有球形形态,平均尺寸为150.8±9nm,zeta电位为-24.9±7.21mV。包封率为79.19±0.16%,载药率为7.19±0.01%。在用MDA-MB-231和L929细胞系测试时,纳米杂交体表现出极高的细胞相容性。癌细胞消除率约为85%,靶向细胞成像结果非常令人信服。[(NIC-PLGA NP)HA]显示细胞摄取增加,导致活性氧(ROS)生成增加,对抗肿瘤细胞,有助于局部癌症治疗及相关疗法。