Polymeric biomaterial-inspired cell surface modulation for the development of novel anticancer therapeutics.

IF 11.3 1区 医学 Q1 Medicine Biomaterials Research Pub Date : 2023-06-21 DOI:10.1186/s40824-023-00404-8
Ashok Kumar Jangid, Sungjun Kim, Kyobum Kim
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引用次数: 2

Abstract

Immune cell-based therapies are a rapidly emerging class of new medicines that directly treat and prevent targeted cancer. However multiple biological barriers impede the activity of live immune cells, and therefore necessitate the use of surface-modified immune cells for cancer prevention. Synthetic and/or natural biomaterials represent the leading approach for immune cell surface modulation. Different types of biomaterials can be applied to cell surface membranes through hydrophobic insertion, layer-by-layer attachment, and covalent conjugations to acquire surface modification in mammalian cells. These biomaterials generate reciprocity to enable cell-cell interactions. In this review, we highlight the different biomaterials (lipidic and polymeric)-based advanced applications for cell-surface modulation, a few cell recognition moieties, and how their interplay in cell-cell interaction. We discuss the cancer-killing efficacy of NK cells, followed by their surface engineering for cancer treatment. Ultimately, this review connects biomaterials and biologically active NK cells that play key roles in cancer immunotherapy applications.

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高分子生物材料激发的细胞表面调控用于新型抗癌疗法的发展。
基于免疫细胞的疗法是一种迅速崛起的新型药物,可以直接治疗和预防靶向癌症。然而,多种生物屏障阻碍了活免疫细胞的活性,因此需要使用表面修饰的免疫细胞来预防癌症。合成和/或天然生物材料是免疫细胞表面调节的主要方法。在哺乳动物细胞中,不同类型的生物材料可以通过疏水插入、逐层附着、共价偶联等方式应用于细胞膜表面,从而获得表面修饰。这些生物材料产生互易性,使细胞间相互作用成为可能。在这篇综述中,我们重点介绍了不同的生物材料(脂质和聚合物)在细胞表面调制中的先进应用,一些细胞识别片段,以及它们在细胞-细胞相互作用中的相互作用。我们讨论了NK细胞的抗癌功效,然后讨论了NK细胞的表面工程用于癌症治疗。最后,本文综述了生物材料和具有生物活性的NK细胞在癌症免疫治疗应用中的关键作用。
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来源期刊
Biomaterials Research
Biomaterials Research Medicine-Medicine (miscellaneous)
CiteScore
10.20
自引率
3.50%
发文量
63
审稿时长
30 days
期刊介绍: Biomaterials Research, the official journal of the Korean Society for Biomaterials, is an open-access interdisciplinary publication that focuses on all aspects of biomaterials research. The journal covers a wide range of topics including novel biomaterials, advanced techniques for biomaterial synthesis and fabrication, and their application in biomedical fields. Specific areas of interest include functional biomaterials, drug and gene delivery systems, tissue engineering, nanomedicine, nano/micro-biotechnology, bio-imaging, regenerative medicine, medical devices, 3D printing, and stem cell research. By exploring these research areas, Biomaterials Research aims to provide valuable insights and promote advancements in the biomaterials field.
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