Bhuyan Prajna Paramita, Nayak Rabindra, Patra Srimanta, Abdulabbas Hadi Sajid, Jena Mrutyunjay, Pradhan Biswajita
Department of Botany, Maharaja Sriram Chandra Bhanja Deo University, Baripada 757003, India.
Algal Biotechnology and Molecular Systematic Laboratory, Post Graduate Department of Botany, Berhampur University, Bhanja Bihar, Berhampur 760007, India.
Cancers (Basel). 2023 Jan 24;15(3):715. doi: 10.3390/cancers15030715.
Seaweed-derived bioactive compounds are regularly employed to treat human diseases. Sulfated polysaccharides are potent chemotherapeutic or chemopreventive medications since it has been discovered. They have exhibited anti-cancer properties by enhancing immunity and driving apoptosis. Through dynamic modulation of critical intracellular signalling pathways, such as control of ROS generation and preservation of essential cell survival and death processes, sulfated polysaccharides' antioxidant and immunomodulatory potentials contribute to their disease-preventive effectiveness. Sulfated polysaccharides provide low cytotoxicity and good efficacy therapeutic outcomes via dynamic modulation of apoptosis in cancer. Understanding how sulfated polysaccharides affect human cancer cells and their molecular involvement in cell death pathways will showcase a new way of chemoprevention. In this review, the significance of apoptosis and autophagy-modulating sulfated polysaccharides has been emphasized, as well as the future direction of enhanced nano-formulation for greater clinical efficacy. Moreover, this review focuses on the recent findings about the possible mechanisms of chemotherapeutic use of sulfated polysaccharides, their potential as anti-cancer drugs, and proposed mechanisms of action to drive apoptosis in diverse malignancies. Because of their unique physicochemical and biological properties, sulfated polysaccharides are ideal for their bioactive ingredients, which can improve function and application in disease. However, there is a gap in the literature regarding the physicochemical properties and functionalities of sulfated polysaccharides and the use of sulfated polysaccharide-based delivery systems in functional cancer. Furthermore, the preclinical and clinical trials will reveal the drug's efficacy in cancer.
源自海藻的生物活性化合物经常被用于治疗人类疾病。自从被发现以来,硫酸化多糖一直是有效的化疗或化学预防药物。它们通过增强免疫力和诱导细胞凋亡展现出抗癌特性。通过动态调节关键的细胞内信号通路,如控制活性氧生成以及维持细胞生存和死亡的基本过程,硫酸化多糖的抗氧化和免疫调节潜能有助于其疾病预防效果。硫酸化多糖通过动态调节癌症中的细胞凋亡提供低细胞毒性和良好疗效的治疗结果。了解硫酸化多糖如何影响人类癌细胞及其在细胞死亡途径中的分子参与情况将展示一种新的化学预防方法。在这篇综述中,强调了细胞凋亡和自噬调节性硫酸化多糖的重要性,以及增强纳米制剂以提高临床疗效的未来方向。此外,这篇综述聚焦于硫酸化多糖化疗用途的可能机制、其作为抗癌药物的潜力以及在多种恶性肿瘤中诱导细胞凋亡的作用机制的最新研究结果。由于其独特的物理化学和生物学特性,硫酸化多糖因其生物活性成分而非常理想,这些成分可以改善其在疾病中的功能和应用。然而,关于硫酸化多糖的物理化学性质和功能以及基于硫酸化多糖的递送系统在功能性癌症中的应用,文献中存在空白。此外,临床前和临床试验将揭示该药物在癌症中的疗效。