Chew Sue Anne, Moscato Stefania, George Sachin, Azimi Bahareh, Danti Serena
Department of Health and Biomedical Sciences, University of Texas Rio Grande Valley, One West University Blvd., Brownsville, TX 78520, USA.
Department of Clinical and Experimental Medicine, University of Pisa, Via Roma, 55, 56126 Pisa, Italy.
Cancers (Basel). 2019 Dec 16;11(12):2026. doi: 10.3390/cancers11122026.
Hepatocellular carcinoma (HCC) is the fifth most common type of cancer diagnosed and the second leading cause of death worldwide. Despite advancement in current treatments for HCC, the prognosis for this cancer is still unfavorable. This comprehensive review article focuses on all the current technology that applies biomaterials to treat and study liver cancer, thus showing the versatility of biomaterials to be used as smart tools in this complex pathologic scenario. Specifically, after introducing the liver anatomy and pathology by focusing on the available treatments for HCC, this review summarizes the current biomaterial-based approaches for systemic delivery and implantable tools for locally administrating bioactive factors and provides a comprehensive discussion of the specific therapies and targeting agents to efficiently deliver those factors. This review also highlights the novel application of biomaterials to study HCC, which includes hydrogels and scaffolds to tissue engineer 3D in vitro models representative of the tumor environment. Such models will serve to better understand the tumor biology and investigate new therapies for HCC. Special focus is given to innovative approaches, e.g., combined delivery therapies, and to alternative approaches-e.g., cell capture-as promising future trends in the application of biomaterials to treat HCC.
肝细胞癌(HCC)是全球第五大最常被诊断出的癌症类型,也是全球第二大致死原因。尽管目前针对HCC的治疗取得了进展,但这种癌症的预后仍然不容乐观。这篇综述文章聚焦于当前所有应用生物材料治疗和研究肝癌的技术,从而展示了生物材料在这种复杂病理情况下作为智能工具的多功能性。具体而言,在通过关注HCC的现有治疗方法介绍肝脏解剖学和病理学之后,本综述总结了当前基于生物材料的全身给药方法以及用于局部施用生物活性因子的可植入工具,并对有效递送这些因子的特定疗法和靶向剂进行了全面讨论。本综述还强调了生物材料在研究HCC方面的新应用,其中包括用于组织工程化代表肿瘤环境的3D体外模型的水凝胶和支架。此类模型将有助于更好地理解肿瘤生物学并研究HCC的新疗法。特别关注创新方法,例如联合递送疗法,以及替代方法,例如细胞捕获,作为生物材料应用于治疗HCC的有前景的未来趋势。