CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:MHCII restriction demonstrates B cells have very limited capacity to activate tumour-specific CD4(+) T cells in vivo.
MHCII restriction demonstrates B cells have very limited capacity to activate tumour-specific CD4(+) T cells in vivo.
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B细胞在抗肿瘤免疫中的作用及其在过继性细胞治疗中的潜在应用日益受到关注。迄今为止,此类疗法的成功仍然有限。B细胞通过TCR依赖性相互作用在体内特异性激活肿瘤特异性CD4+ T细胞的内在能力仍不明确。
我们开发了一种体内肿瘤模型,该模型利用MHCII I-E限制性,在淋巴细胞减少的RAG-/-小鼠中将肿瘤特异性CD4 T细胞的抗原呈递限制于肿瘤特异性B细胞或宿主髓系抗原呈递细胞(APC)。
我们此前已证明,在该模型中,当这些初始肿瘤特异性CD4+ T细胞被宿主APC激活时,能够成功清除已建立的肿瘤。当初始肿瘤特异性B细胞是唯一的I-E+ APC来源时,初始CD4+ T细胞的增殖非常有限,而宿主I-E+ APC则是强效的T细胞激活剂。在体内用抗CD40激动性抗体预激活的B细胞支持T细胞增殖增加,但远不及宿主APC。已经分化为效应/中央记忆表型的CD4+ T细胞对初始B细胞的反应性增殖更强,但仍比对宿主APC的反应低100倍。
本研究表明,即使在显著淋巴细胞减少的环境中,髓系APC仍是肿瘤特异性T细胞的主要初级激活剂,而肿瘤特异性B细胞的能力非常有限。这提示未来纳入活化B细胞的抗肿瘤疗法还应包含激活宿主APC的机制。
There has been growing interest in the role of B cells in antitumour immunity and potential use in adoptive cellular therapies. To date, the success of such therapies is limited. The intrinsic capacity of B cells to specifically activate tumour-specific CD4+ T cells in vivo via TCR-dependent interactions remains poorly defined.
We have developed an in vivo tumour model that utilizes MHCII I-E restriction which limits antigen presentation to tumour-specific CD4 T cells to either tumour-specific B cells or host myeloid antigen presenting cells (APCs) in lymphopenic RAG-/-mice.
We have previously shown that these naive tumour-specific CD4+ T cells can successfully eradicate established tumours in this model when activated by host APCs. When naïve tumour-specific B cells are the only source of I-E+ APC, very limited proliferation of naïve CD4+ T cells is observed, whereas host I-E+ APCs are potent T cell activators.
B cells pre-activated with an anti-CD40 agonistic antibody in vivo support increased T cell proliferation, although far less than host APCs. CD4+ T cells that have already differentiated to an effector/central memory phenotype proliferate more readily in response to naïve B cells, although still 100-fold less than in response to host APCs.
This study demonstrates that even in a significantly lymphopenic environment, myeloid APCs are the dominant primary activators of tumour-specific T cells, in contrast to the very limited capacity of tumour-specific B cells. This suggests that future anti-tumour therapies that incorporate activated B cells should also include mechanisms that activate host APCs.
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