Ayyadurai Pavithra, Ragavendran Chinnasamy
Human Genetics and Molecular Biology, Bharathiar University, Coimbatore, India.
Department of Cariology, Saveetha Institute of Medical and Technical Sciences (SIMATS), Saveetha Dental College and Hospitals, Saveetha University, Chennai, 600 077, India.
Mol Biol Rep. 2024 Dec 18;52(1):58. doi: 10.1007/s11033-024-10164-w.
Nano bio-encapsulation of phyto-vaccines for cancer has marked a cutting-edge strategy that brings together nanotechnology with plant-derived vaccines to enhance cancer therapy. Phyto-vaccines, isolated from bioactive compounds found in plants called protein bodies, have been shown to potentially stimulate the immune system to recognise and destroy cancer cells. However, challenges such as poor stability, rapid degradation, and limited bioavailability in the body have hindered their clinical application. Nano bio-encapsulation offers a solution by packaging these phyto-vaccines into nanoscale carriers such as lectins have provided ways to overcome these limitations. They protect the protein bodies from degradation by proteolytic enzymes, enhance targeted delivery to cancer cells, and enable controlled release. This approach not only improves the bio-distribution and potency of the vaccines but also minimizes side effects, making it a highly promising, sustainable, and efficient method for cancer immunotherapy. As research progresses, this technology has the potential to revolutionize cancer treatment by providing safer and more precise therapeutic options. This review focuses on the concept of nano bio-encapsulation of phyto-vaccines for cancer treatment. It explores how nanotechnology can enhance the stability, bioavailability, and targeted delivery of plant-derived vaccines, addressing the limitations of traditional vaccines. The review delves into the potential of this innovative strategy to advance cancer immunotherapy, providing a comprehensive overview of current research and future directions.
用于癌症治疗的植物疫苗的纳米生物包封是一种前沿策略,它将纳米技术与植物源疫苗相结合,以增强癌症治疗效果。从植物中称为蛋白体的生物活性化合物中分离出的植物疫苗已被证明有可能刺激免疫系统识别并摧毁癌细胞。然而,稳定性差、快速降解以及在体内生物利用度有限等挑战阻碍了它们的临床应用。纳米生物包封通过将这些植物疫苗包装到纳米级载体中提供了一种解决方案,例如凝集素提供了克服这些限制的方法。它们保护蛋白体不被蛋白水解酶降解,增强对癌细胞的靶向递送,并实现控释。这种方法不仅改善了疫苗的生物分布和效力,还将副作用降至最低,使其成为一种极具前景、可持续且高效的癌症免疫治疗方法。随着研究的进展,这项技术有可能通过提供更安全、更精确的治疗选择来彻底改变癌症治疗。本综述聚焦于用于癌症治疗的植物疫苗的纳米生物包封概念。它探讨了纳米技术如何增强植物源疫苗的稳定性、生物利用度和靶向递送,解决传统疫苗的局限性。该综述深入研究了这种创新策略推进癌症免疫治疗的潜力,全面概述了当前的研究和未来方向。