Harnessing Bacterial Membrane Components for Tumor Vaccines: Strategies and Perspectives
Tumor vaccines stand at the vanguard of tumor immunotherapy, demonstrating significant potential and promise in recent years. While tumor vaccines have achieved breakthroughs in the treatment of cancer, they still encounter numerous challenges, including improving the immunogenicity of vaccines and...
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Veröffentlicht in: | Advanced healthcare materials 2024-10, Vol.13 (26), p.e2401615-n/a |
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Sprache: | eng |
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Zusammenfassung: | Tumor vaccines stand at the vanguard of tumor immunotherapy, demonstrating significant potential and promise in recent years. While tumor vaccines have achieved breakthroughs in the treatment of cancer, they still encounter numerous challenges, including improving the immunogenicity of vaccines and expanding the scope of vaccine application. As natural immune activators, bacterial components offer inherent advantages in tumor vaccines. Bacterial membrane components, with their safer profile, easy extraction, purification, and engineering, along with their diverse array of immune components, activate the immune system and improve tumor vaccine efficacy. This review systematically summarizes the mechanism of action and therapeutic effects of bacterial membranes and its derivatives (including bacterial membrane vesicles and hybrid membrane biomaterials) in tumor vaccines. Subsequently, the authors delve into the preparation and advantages of tumor vaccines based on bacterial membranes and hybrid membrane biomaterials. Following this, the immune effects of tumor vaccines based on bacterial outer membrane vesicles are elucidated, and their mechanisms are explained. Moreover, their advantages in tumor combination therapy are analyzed. Last, the challenges and trends in this field are discussed. This comprehensive analysis aims to offer a more informed reference and scientific foundation for the design and implementation of bacterial membrane‐based tumor vaccines.
This review systematically explores the strategies, mechanisms, and therapeutic effects of bacterial membranes and their derivatives in tumor vaccines. It emphasizes the role of bacterial membrane and hybrid biomaterials in enhancing vaccine efficacy. Challenges and emerging trends in the field are also highlighted, providing a scientific foundation for future development and implementation of bacterial membrane‐based tumor vaccines. |
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ISSN: | 2192-2640 2192-2659 2192-2659 |
DOI: | 10.1002/adhm.202401615 |