Gaikwad Sachin S, Morade Yogita Y, Kothule Akshada M, Kshirsagar Sanjay J, Laddha Umesh D, Salunkhe Kishor S
Department of Pharmaceutics, Sanjivani College of Pharmaceutical Education and Research, At Sahajanandnagar, Post-Shinganapur, Tal-Kopargaon, Dist-Ahmednagar, Maharashtra 423603, India.
Department of Pharmaceutics, MET's Institute of Pharmacy, Affiliated to Savitribai Phule Pune University, Bhujbal Knowledge City, Adgaon, Nashik 422003, India.
Heliyon. 2023 May 24;9(6):e16561. doi: 10.1016/j.heliyon.2023.e16561. eCollection 2023 Jun.
One of the major causes of death on the globe is cancer. It has remained a significant obstacle for current therapies and has not yet been effectively treated. Conventional treatment strategies available for cancer such as surgery, chemotherapy, radiation therapy etc. have severe adverse effects. The use of herbal active constituents in cancer treatment has tremendous potential to increase the effectiveness of conventional cancer therapy. Natural plant active components have been reported to have strong in vitro pharmacological activity but narrow in vivo absorption. In order to increase their bioavailability and absorption and get around the drawbacks and negative effects of traditional herbal extracts, Phytosomes are one of the growing nanotechnologies that can be used to improve the miscibility of bioactive phytoconstituents in lipid-rich barriers and overcome their poor bioavailability. Many novel drug delivery carriers are employed for targeted delivery of phytoconstituent at the site of action. Phytosomes are well-known biocompatible nanocarriers that can be employed to increase the solubility and permeability of phytopharmaceuticals among various novel drug delivery systems (NDDS). This review mainly focused on various conventional as well as novel approaches and various Nano carrier used in cancer therapies. Also comprising summary of the most recent research on the development and use of phytosomes as a better carrier for herbal constituents in the treatment of cancer. Additionally provides information about the formulation, characterization technique and mechanism of drug release from phytosome. Some of the major herbal active constituents made of phytosome which have shown proven anticancer activity are also studied. Finally, challenges and future perspective related to phytosome in cancer treatment are also discussed.
全球主要死因之一是癌症。它仍然是当前治疗的重大障碍,尚未得到有效治疗。现有的癌症传统治疗策略,如手术、化疗、放疗等,都有严重的副作用。在癌症治疗中使用草药活性成分具有极大潜力,可提高传统癌症治疗的有效性。据报道,天然植物活性成分在体外具有很强的药理活性,但体内吸收较差。为了提高它们的生物利用度和吸收率,并克服传统草药提取物的缺点和负面影响,磷脂复合物是一种不断发展的纳米技术,可用于改善生物活性植物成分在富含脂质屏障中的混溶性,并克服其生物利用度低的问题。许多新型药物递送载体被用于将植物成分靶向递送至作用部位。在各种新型药物递送系统(NDDS)中,磷脂复合物是众所周知的生物相容性纳米载体,可用于提高植物药的溶解度和渗透性。本综述主要关注癌症治疗中使用的各种传统方法和新型方法以及各种纳米载体。还包括关于磷脂复合物作为草药成分在癌症治疗中更好载体的开发和使用的最新研究总结。此外,还提供了有关磷脂复合物的制剂、表征技术和药物释放机制的信息。还研究了一些由磷脂复合物制成的已显示出抗癌活性的主要草药活性成分。最后,还讨论了与磷脂复合物在癌症治疗中相关的挑战和未来展望。