免疫系统
佐剂
免疫疗法
细菌
癌症研究
肿瘤微环境
医学
先天免疫系统
癌症
耐受性
获得性免疫系统
免疫学
生物
药理学
内科学
不利影响
遗传学
作者
Ya‐Jia Xie,Min Huang,Dan Li,Jincai Hou,Haihai Liang,Ali Adnan Nasim,Jumin Huang,Chun Xie,Elaine Lai‐Han Leung,Xing‐Xing Fan
标识
DOI:10.1016/j.phrs.2022.106282
摘要
Bacteria-based immunotherapy has become a promising strategy to induce innate and adaptive responses for fighting cancer. The advantages of bacteriolytic tumor therapy mainly lie in stimulation of innate immunity and colonization of some bacteria targeting the tumor microenvironment (TME). These bacteria have cytotoxic proteins and immune modulating factors that can effectively restrain tumor growth. However, cancer is a multifactorial disease and single therapy is typically unable to eradicate tumors. Rapid progress has been made in combining bacteria with nanotechnology. Using the nanomolecular properties of bacterial products for tumor treatment preserves many features from the original bacteria while providing some unique advantages. Nano-bacterial therapy can enhance permeability and retention of drugs, increase the tolerability of the targeted drugs, promote the release of immune cell mediators, and induce immunogenic cell death pathways. In addition, combining nano-bacterial mediated antitumor therapeutic systems with modern therapy is an effective strategy for overcoming existing barriers in antitumor treatment and can achieve satisfactory therapeutic efficacy. Overall, exploring the immune antitumor characteristics of adjuvant clinical treatment with bacteria can provide potential efficacious treatment strategies for combatting cancer.
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