CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Metabolic modulation of tumours with engineered bacteria for immunotherapy.
Metabolic modulation of tumours with engineered bacteria for immunotherapy.
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肿瘤中L-精氨酸的可用性是高效抗肿瘤T细胞应答的关键决定因素1-4。因此,提高肿瘤内通常较低的L-精氨酸浓度,可能极大地增强免疫检查点抑制剂(如程序性死亡配体1(PD-L1)阻断抗体)的抗肿瘤应答5。然而,目前尚无局部提高肿瘤内L-精氨酸水平的方法。在此,我们采用合成生物学方法,开发了一株工程化益生菌Escherichia coli Nissle 1917菌株,该菌株可定植于肿瘤并持续将氨(一种在肿瘤中蓄积的代谢废物6)转化为L-精氨酸。这些细菌在肿瘤中的定植提高了肿瘤内L-精氨酸浓度,增加了肿瘤浸润T细胞数量,并在清除肿瘤方面与PD-L1阻断抗体产生了显著协同效应。这些细菌的抗肿瘤作用由L-精氨酸介导,并依赖于T细胞。这些结果表明,工程化微生物疗法能够实现对肿瘤微环境的代谢调控,从而增强免疫疗法的疗效。
The availability of L-arginine in tumours is a key determinant of an efficient anti-tumour T cell response 1-4 . Consequently, increases of typically low L-arginine concentrations within the tumour may greatly potentiate the anti-tumour responses of immune checkpoint inhibitors, such as programmed death-ligand 1 (PD-L1)-blocking antibodies 5 .
However, currently no means are available to locally increase intratumoural L-arginine levels.
Here we used a synthetic biology approach to develop an engineered probiotic Escherichia coli Nissle 1917 strain that colonizes tumours and continuously converts ammonia, a metabolic waste product that accumulates in tumours 6 , to L-arginine. Colonization of tumours with these bacteria increased intratumoural L-arginine concentrations, increased the number of tumour-infiltrating T cells and had marked synergistic effects with PD-L1 blocking antibodies in the clearance of tumours.
The anti-tumour effect of these bacteria was mediated by L-arginine and was dependent on T cells. These results show that engineered microbial therapies enable metabolic modulation of the tumour microenvironment leading to enhanced efficacy of immunotherapies.
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