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1.西藏民族大学医学院,陕西 咸阳 712000
2.中山大学医学院,广东 深圳 518107
孙丹丹,第一作者,研究方向:肿瘤微生物,E-mail: 953743047@qq.com。
[ "田国宝,男,博士,教授,博士生导师,中山大学医学部学术委员会副主任委员、医学院副院长、医学教育处副处长、热带病防治研究教育部重点实验室副主任、中山大学中山医学院免疫学与微生物学系副主任。国家自然科学基金杰出青年科学基金获得者,国家自然科学基金优秀青年科学基金获得者,广东省自然科学基金杰出青年基金获得者,广东特支计划青年拔尖人才、广州市珠江科技新星,中山大学逸仙杰出学者,中山大学“百人计划”引进人才。一直致力于抗生素耐药性与生物安全研究,以通讯作者先后在Lancet Microbe, Lancet Infect Dis,Mol Biol Evol,Clin Infect Dis等本领域国际顶尖和主流期刊上发表SCI论文60余篇,参编专著5部,获省部级奖2项,以第一发明人申请专利11项(授权4项)。主持国家自然科学基金杰青项目、重点项目、国际合作研究项目、优青项目、面上项目、广东省杰出青年基金项目等10余项;主持和参与国家传染病重大专项、国家重点研发计划项目和课题10余项。E-mail: tiangb@mail.sysu.edu.cn。" ]
收稿日期:2024-12-28,
录用日期:2025-04-09,
纸质出版日期:2025-05-20
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孙丹丹,田国宝.细菌及其代谢物影响乳腺癌发展及治疗的研究进展[J].中山大学学报(医学科学版),2025,46(03):361-370.
SUN Dandan,TIAN Guobao.Research Progress in Bacteria and Their Metabolites Influence on the Development and Treatment of Breast Cancer[J].Journal of Sun Yat-sen University(Medical Sciences),2025,46(03):361-370.
孙丹丹,田国宝.细菌及其代谢物影响乳腺癌发展及治疗的研究进展[J].中山大学学报(医学科学版),2025,46(03):361-370. DOI: 10.13471/j.cnki.j.sun.yat-sen.univ(med.sci).2025.0301.
SUN Dandan,TIAN Guobao.Research Progress in Bacteria and Their Metabolites Influence on the Development and Treatment of Breast Cancer[J].Journal of Sun Yat-sen University(Medical Sciences),2025,46(03):361-370. DOI: 10.13471/j.cnki.j.sun.yat-sen.univ(med.sci).2025.0301.
乳腺癌是女性最常见的癌症之一,严重威胁女性健康。早期诊断和精准化治疗乳腺癌有助于改善患者预后。本文总结了细菌及其代谢物对乳腺癌发展与治疗的研究现状,详细探讨了细菌及其代谢物在乳腺癌发展及干预中的作用与机制。这些机制包括调控炎症和免疫反应、损伤DNA以及调控细胞生物学特征等。工程菌因其在靶向肿瘤和激活免疫方面的天然优势,近年来已成为乳腺癌治疗领域的热点之一。本文进一步对工程菌在乳腺癌治疗中的研究进展进行了总结,旨在为制定靶向治疗策略及改善患者预后提供重要参考依据。虽然细菌及其代谢物通过多种机制影响乳腺癌的发展与治疗,并能够增强癌症治疗效果,减轻治疗不良反应,但细菌在抗乳腺癌治疗的临床应用中仍面临诸多挑战。细菌组成的高度个体化导致治疗缺乏普适性,而细菌与宿主之间复杂的相互作用进一步增加了研究难度。未来亟需更深入地探索细菌及其代谢物影响乳腺癌发展及治疗的机制,推动细菌在抗乳腺癌治疗中的临床应用。
Breast cancer is one of the most common cancers in women, which seriously threatens women's health. Early diagnosis and precise treatment of breast cancer are helpful to improve the prognosis of patients. This article summarizes the research status of bacteria and their metabolites in the development and treatment of breast cancer, and discusses in detail the role and mechanism of bacteria and their metabolites in the development and intervention of breast cancer. These mechanisms include regulation of inflammation and immune response, DNA damage, and regulation of cell biological characteristics. Engineering bacteria have become one of the hotspots in the field of breast cancer treatment in recent years due to their natural advantages in targeting tumors and activating immunity. This article further summarizes the research progress of engineered bacteria in the treatment of breast cancer, aiming to provide an important reference for formulating targeted treatment strategies and improving the prognosis of patients. Although bacteria and their metabolites affect the development and treatment of breast cancer through a variety of mechanisms, and can enhance the therapeutic effect of cancer and reduce the adverse effects of treatment, the clinical application of bacteria in anti-breast cancer therapy still faces numerous challenges. The highly individualized composition of bacteria leads to the lack of universality of treatment, and the complex interaction between bacteria and host further increases the difficulty of research. In the future, it is urgent to further explore the mechanism of bacteria and their metabolites affecting the development and treatment of breast cancer, and promote the clinical application of bacteria in anti-breast cancer treatment.
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