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功能性抗体递送:细胞操作的进展

Functional antibody delivery: Advances in cellular manipulation.

作者信息

Koch Kayla C, Tew Gregory N

机构信息

Department of Polymer Science & Engineering, University of Massachusetts, Amherst, MA 01003, United States.

Department of Polymer Science & Engineering, University of Massachusetts, Amherst, MA 01003, United States; Molecular & Cellular Biology Program, University of Massachusetts, Amherst, MA 01003, United States; Department of Veterinary & Animal Sciences, University of Massachusetts, Amherst, MA 01003, United States.

出版信息

Adv Drug Deliv Rev. 2023 Jan;192:114586. doi: 10.1016/j.addr.2022.114586. Epub 2022 Oct 22.

Abstract

The current therapeutic antibody market in the U.S. consists of 100 antibody-based products and their market value is expected to explode beyond $300 billion by 2025. These therapies are presently limited to extracellular targets due to the innate inability of antibodies to transverse membranes. To expand the number of accessible therapeutic targets, intracellular antibody delivery is necessary. Many delivery vehicles for antibodies have been used with some promising results, such as nanoparticles and cell penetrating polymers. Despite the success of these delivery platforms using model antibody cargo, there is a surprisingly small number of studies that focus on functional antibody delivery into the cytosol that also measures a cellular response. Antibodies can be designed for essentially unlimited targets, including proteins and DNA, that will ultimately control cell function once delivered inside cells. Advancement in cellular manipulation depends on the application of intracellularly delivering functional antibodies to achieve a desired result. This review focuses on the emerging field of functional antibody delivery which enables various cellular responses and cell manipulation.

摘要

美国目前的治疗性抗体市场由100种基于抗体的产品组成,预计到2025年其市场价值将突破3000亿美元。由于抗体本身无法穿过细胞膜,这些疗法目前仅限于细胞外靶点。为了扩大可及的治疗靶点数量,有必要进行细胞内抗体递送。许多抗体递送载体已被使用并取得了一些有前景的结果,如纳米颗粒和细胞穿透聚合物。尽管这些递送平台使用模型抗体货物取得了成功,但令人惊讶的是,专注于将功能性抗体递送至细胞质溶胶并同时测量细胞反应的研究数量很少。抗体可以针对基本上无限的靶点进行设计,包括蛋白质和DNA,一旦递送至细胞内,这些靶点最终将控制细胞功能。细胞操作的进展取决于应用细胞内递送功能性抗体以实现预期结果。本综述聚焦于功能性抗体递送这一新兴领域,该领域能够引发各种细胞反应并实现细胞操作。

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