Advances in mesenchymal stem cell therapy and natural antioxidants for hepatic fibrosis: A comprehensive review

Abeer Kazmi , Tahira Sultana
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Abstract

Liver damage resulting from the administration of various allopathic drugs and their associated toxicity has become a major health problem, leading to hepatic fibrosis, cirrhosis, and metabolic disorders. This epidemic condition of liver disease represents a major global cause of death and morbidity. Although orthotopic liver transplantation remains a vital treatment option for fibrotic liver conditions, its efficacy is limited by organ scarcity and the risk of immunological rejection. Consequently, alternative therapeutic approaches are urgently needed. Cell-based therapy utilizing mesenchymal stem cells (MSCs) has garnered considerable interest as a promising treatment modality. MSCs exhibit immunomodulatory properties and can differentiate into hepatocytes, thus facilitating the regeneration of damaged hepatocytes and increasing residual hepatocyte proliferation while inhibiting activation or apoptosis of liver stellate cells. However, despite their potential benefits, transplanted cells often exhibit low survival rates due to inadequate oxidative and inflammatory stress resistance. Plants harbor a diverse array of bioactive compounds known to possess hepatoprotective and antioxidant properties. Nanomaterials play a crucial role in regenerative medicine by providing targeted delivery of therapeutic agents and scaffolds for tissue engineering. In treating fibrotic liver, nanomaterials can help mitigate fibrosis progression and promote liver regeneration through controlled release of anti-fibrotic agents and growth factors. This review highlights the synergistic potential of stem cell-based therapy, natural antioxidants, differentiation factors, and nanotechnology in combating hepatic fibrosis and advancing liver regenerative medicine. These combined approaches offer promising avenues for effectively treating fibrotic liver conditions and promoting tissue regeneration.

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间充质干细胞疗法和天然抗氧化剂治疗肝纤维化的进展:综述
服用各种对抗疗法药物及其相关毒性造成的肝损伤已成为一个主要的健康问题,导致肝纤维化、肝硬化和代谢紊乱。这种流行性肝病是全球死亡和发病的主要原因。尽管正位肝移植仍是治疗肝纤维化的重要方法,但其疗效却受到器官稀缺性和免疫排斥风险的限制。因此,迫切需要替代治疗方法。利用间充质干细胞(MSCs)进行的细胞疗法作为一种前景广阔的治疗方式,引起了人们的极大兴趣。间充质干细胞具有免疫调节特性,可分化为肝细胞,从而促进受损肝细胞的再生,增加残余肝细胞的增殖,同时抑制肝星状细胞的活化或凋亡。然而,尽管移植细胞具有潜在的益处,但由于抗氧化和抗炎症应激能力不足,其存活率往往很低。植物蕴藏着多种多样的生物活性化合物,已知具有保护肝脏和抗氧化的特性。纳米材料在再生医学中发挥着至关重要的作用,它能有针对性地输送治疗药物,并为组织工程提供支架。在治疗纤维化肝脏时,纳米材料可通过控制抗纤维化药物和生长因子的释放,帮助缓解纤维化进展并促进肝脏再生。本综述强调了干细胞疗法、天然抗氧化剂、分化因子和纳米技术在抗击肝纤维化和促进肝再生医学方面的协同潜力。这些综合方法为有效治疗肝纤维化病症和促进组织再生提供了前景广阔的途径。
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