Alshehri Awatef M, Wilson Otto C
Department of Biomedical Engineering, The Catholic University of America, Washington, DC 20064, USA.
Department of Nanomedicine, King Abdullah International Medical Research Center (KAIMRC), King Saud bin Abdelaziz University for Health Sciences (KSAU-HS), Ministry of National Guard-Health Affairs (MNGHA), Riyadh 11426, Saudi Arabia.
Gels. 2024 Jun 30;10(7):437. doi: 10.3390/gels10070437.
Recent developments in biomimetic hydrogel research have expanded the scope of biomedical technologies that can be used to model, diagnose, and treat a wide range of medical conditions. Cancer presents one of the most intractable challenges in this arena due to the surreptitious mechanisms that it employs to evade detection and treatment. In order to address these challenges, biomimetic design principles can be adapted to beat cancer at its own game. Biomimetic design strategies are inspired by natural biological systems and offer promising opportunities for developing life-changing methods to model, detect, diagnose, treat, and cure various types of static and metastatic cancers. In particular, focusing on the cellular and subcellular phenomena that serve as fundamental drivers for the peculiar behavioral traits of cancer can provide rich insights into eradicating cancer in all of its manifestations. This review highlights promising developments in biomimetic nanocomposite hydrogels that contribute to cancer therapies via enhanced drug delivery strategies and modeling cancer mechanobiology phenomena in relation to metastasis and synergistic sensing systems. Creative efforts to amplify biomimetic design research to advance the development of more effective cancer therapies will be discussed in alignment with international collaborative goals to cure cancer.
仿生水凝胶研究的最新进展扩大了生物医学技术的范围,这些技术可用于对各种医疗状况进行建模、诊断和治疗。由于癌症采用隐秘机制逃避检测和治疗,因此在这一领域提出了最棘手的挑战之一。为应对这些挑战,可采用仿生设计原则在癌症自身的“游戏”中战胜它。仿生设计策略受自然生物系统启发,为开发改变生活的方法以对各种类型的原位癌和转移性癌进行建模、检测、诊断、治疗及治愈提供了有前景的机会。特别是,关注作为癌症特殊行为特征基本驱动因素的细胞和亚细胞现象,可为根除各种表现形式的癌症提供丰富见解。本综述重点介绍了仿生纳米复合水凝胶的有前景的进展,这些进展通过增强药物递送策略以及对与转移和协同传感系统相关的癌症力学生物学现象进行建模,为癌症治疗做出了贡献。将结合国际抗癌协作目标,讨论为推进更有效的癌症治疗发展而扩大仿生设计研究的创新努力。