Manisekaran Ravichandran, García-Contreras René, Rasu Chettiar Aruna-Devi, Serrano-Díaz Paloma, Lopez-Ayuso Christian Andrea, Arenas-Arrocena Ma Concepción, Hernández-Padrón Genoveva, López-Marín Luz M, Acosta-Torres Laura Susana
Laboratorio de Investigación Interdisciplinaria, Área de Nanoestructuras y Biomateriales, Escuela Nacional de Estudios Superiores Unidad León, Universidad Nacional Autónoma de México, Boulevard UNAM No. 2011, Predio El Saucillo y El Potrero, Guanajuato 37689, Mexico.
Facultad de Química, Materiales-Energía, Universidad Autónoma de Querétaro, Santiago de Querétaro 76010, Mexico.
Pharmaceutics. 2021 Oct 28;13(11):1803. doi: 10.3390/pharmaceutics13111803.
Researchers in cancer nanomedicine are exploring a revolutionary multifaceted carrier for treatment and diagnosis, resulting in the proposal of various drug cargos or "magic bullets" in this past decade. Even though different nano-based complexes are registered for clinical trials, very few products enter the final stages each year because of various issues. This prevents the formulations from entering the market and being accessible to patients. In the search for novel materials, the exploitation of 2D nanosheets, including but not limited to the highly acclaimed graphene, has created extensive interest for biomedical applications. A unique set of properties often characterize 2D materials, including semiconductivity, high surface area, and their chemical nature, which allow simple decoration and functionalization procedures, structures with high stability and targeting properties, vectors for controlled and sustained release of drugs, and materials for thermal-based therapies. This review discusses the challenges and opportunities of recently discovered 2D nanosheets for cancer therapeutics, with special attention paid to the most promising design technologies and their potential for clinical translation in the future.
癌症纳米医学领域的研究人员正在探索一种用于治疗和诊断的革命性多面载体,在过去十年中催生了各种药物载体或“神奇子弹”的提议。尽管不同的纳米基复合物已注册用于临床试验,但由于各种问题,每年进入最后阶段的产品很少。这使得这些制剂无法进入市场并供患者使用。在寻找新型材料的过程中,二维纳米片的开发,包括但不限于备受赞誉的石墨烯,引起了生物医学应用领域的广泛关注。二维材料通常具有一组独特的特性,包括半导体性、高表面积及其化学性质,这使得它们能够进行简单的修饰和功能化程序、具有高稳定性和靶向特性的结构、用于药物控释和缓释的载体以及用于热疗的材料。本文综述了最近发现的二维纳米片在癌症治疗中的挑战和机遇,特别关注了最有前景的设计技术及其未来临床转化的潜力。