Application of PLGA in Tumor Immunotherapy

Author:

Wu Jiashuai1,Wang Xiaopeng1,Wang Yunduan2,Xun Zhe3,Li Shuo4ORCID

Affiliation:

1. Innovation Institute, China Medical University, Shenyang 110122, China

2. School of Intelligent Medicine, China Medical University, Shenyang 110122, China

3. Liaoning Key Laboratory of Obesity and Glucose/Lipid Associated Metabolic Diseases, Health Science Institute, China Medical University, Shenyang 110122, China

4. Department of Biochemistry & Molecular Biology, School of Life Sciences, China Medical University, Shenyang 110122, China

Abstract

Biodegradable polymers have been extensively researched in the field of biomedicine. Polylactic-co-glycolic acid (PLGA), a biodegradable polymer material, has been widely used in drug delivery systems and has shown great potential in various medical fields, including vaccines, tissue engineering such as bone regeneration and wound healing, and 3D printing. Cancer, a group of diseases with high mortality rates worldwide, has recently garnered significant attention in the field of immune therapy research. In recent years, there has been growing interest in the delivery function of PLGA in tumor immunotherapy. In tumor immunotherapy, PLGA can serve as a carrier to load antigens on its surface, thereby enhancing the immune system’s ability to attack tumor cells. Additionally, PLGA can be used to formulate tumor vaccines and immunoadjuvants, thereby enhancing the efficacy of tumor immunotherapy. PLGA nanoparticles (NPs) can also enhance the effectiveness of tumor immunotherapy by regulating the activity and differentiation of immune cells, and by improving the expression and presentation of tumor antigens. Furthermore, due to the diverse physical properties and surface modifications of PLGA, it has a wider range of potential applications in tumor immunotherapy through the loading of various types of drugs or other innovative substances. We aim to highlight the recent advances and challenges of plga in the field of oncology therapy to stimulate further research and development of innovative PLGA-based approaches, and more effective and personalized cancer therapies.

Funder

National Key R&D Program of China: BTIT

General research project of Liaoning Provincial Department of Education

Research Project of Liaoning Educational Committee

Publisher

MDPI AG

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