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工程细菌诱导易位作为引发基于个性化新抗原的肿瘤免疫反应的治疗剂的潜在效用。

Potential Utility of Induced Translocation of Engineered Bacteria as a Therapeutic Agent for Mounting a Personalized Neoantigen-Based Tumor Immune Response.

作者信息

Luengo-Gil Ginés, Conesa-Zamora Pablo

机构信息

Clinical Analysis and Pathology Department Group of Molecular Pathology and Pharmacogenetics Institute for Biohealth Research from Murcia (IMIB) Hospital Universitario Santa Lucía c/Mezquita sn Cartagena 30202 Spain.

Pathology and Histology Department Facultad de Ciencias de la Salud UCAM Universidad Católica San Antonio de Murcia Campus de los Jerónimos, s/n, Guadalupe Murcia 30107 Spain.

出版信息

Glob Chall. 2021 Dec 16;6(3):2100051. doi: 10.1002/gch2.202100051. eCollection 2022 Mar.

DOI:10.1002/gch2.202100051
PMID:35284089
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC8902290/
Abstract

Today, an unprecedented understanding of the cancer genome, along with major breakthroughs in oncoimmunotherapy, and a resurgence of nucleic acid vaccines against cancer are being achieved. However, in most cases, the immune system response is still insufficient to react against cancer, especially in those tumors showing low mutational burden. One way to counteract tumor escape can be the induction of bacterial translocation, a phenomenon associated with autoimmune diseases which consists of a leakage in the colonic mucosa barrier, causing the access of gut bacteria to sterile body compartments such as blood. Certain commensal or live-attenuated bacteria can be engineered in such a way as to contain nucleic acids coding for tumor neoantigens previously selected from individual tumor RNAseq data. Hypothetically, these modified bacteria, previously administered orally to a cancer patient, can be translocated by several compounds acting on colonic mucosa, thus releasing neoantigens in a systemic environment in the context of an acute inflammation. Several strategies for selecting neoantigens, suitable bacteria strains, genetic constructs, and translocation inducers to achieve tumor-specific activations of CD4 and CD8 T-cells are discussed in this hypothesis.

摘要

如今,我们对癌症基因组有了前所未有的认识,肿瘤免疫治疗取得了重大突破,针对癌症的核酸疫苗也再度兴起。然而,在大多数情况下,免疫系统的反应仍不足以对抗癌症,尤其是在那些突变负担较低的肿瘤中。对抗肿瘤逃逸的一种方法可能是诱导细菌易位,这是一种与自身免疫性疾病相关的现象,其表现为结肠黏膜屏障的渗漏,导致肠道细菌进入无菌的身体腔室,如血液。某些共生菌或减毒活菌可以通过基因工程改造,使其包含编码先前从个体肿瘤RNA测序数据中筛选出的肿瘤新抗原的核酸。理论上,这些经过改造的细菌,预先口服给癌症患者后,可通过几种作用于结肠黏膜的化合物实现易位,从而在急性炎症的背景下,在全身环境中释放新抗原。本假说讨论了几种选择新抗原、合适的细菌菌株、基因构建体以及易位诱导剂以实现CD4和CD8 T细胞肿瘤特异性激活的策略。

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本文引用的文献

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Intestinal barrier dysfunction plays an integral role in arthritis pathology and can be targeted to ameliorate disease.肠道屏障功能障碍在关节炎发病机制中起着重要作用,可以作为治疗靶点来改善疾病。
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Improved DNA delivery using invasive E. coli DH10B in human cells by modified bactofection method.改良的细菌转染法提高侵袭性大肠杆菌 DH10B 向人细胞内的 DNA 递送效率。
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Exploratory clinical characterization of experimentally-induced ulcerative colitis nonhuman primates.
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The flagellin of candidate live biotherapeutic Enterococcus gallinarum MRx0518 is a potent immunostimulant.候选活菌治疗性肠球菌 MRx0518 的鞭毛蛋白是一种有效的免疫刺激剂。
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Neoantigen vaccine generates intratumoral T cell responses in phase Ib glioblastoma trial.在 Ib 期胶质母细胞瘤试验中,新型抗原疫苗可在肿瘤内产生 T 细胞应答。
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DNA Vaccines-How Far From Clinical Use?DNA 疫苗——距离临床应用还有多远?
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