RNF43 p.G659fs 通过 PI3K/AKT/mTOR 信号通路和 HLA-E 上调导致 MSI-high 结直肠癌中 NK 细胞功能障碍
RNF43 p.G659fs leads to natural killer cell dysfunction in MSI-high colorectal cancer through PI3K/AKT/mTOR signaling and HLA-E up-regulation.
英文原题:Dual Targeting of Glioblastoma Cells with Bispecific Killer Cell Engagers Directed to EGFR and ErbB2 (HER2) Facilitates Effective Elimination by NKG2D-CAR-Engineered NK Cells.
Dual Targeting of Glioblastoma Cells with Bispecific Killer Cell Engagers Directed to EGFR and ErbB2 (HER2) Facilitates Effective Elimination by NKG2D-CAR-Engineered NK Cells.
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NKG2D是NK 细胞的活化受体,可识别许多肿瘤细胞表达的应激诱导配体(NKG2DL)。然而,NKG2DL的下调或脱落仍可使癌细胞逃避免疫监视。
在此,我们使用慢病毒基因转移技术,将临床可用的NK-92细胞改造为表达嵌合抗原受体(NKAR)的细胞,该受体包含用于靶标识别的NKG2D胞外域,或同时表达NKAR与IL-15超级激动剂RD-IL15,并将这些效应细胞与重组NKG2D相互作用双特异性衔接分子联合使用,后者可同时识别肿瘤相关抗原表皮生长因子受体(EGFR)或ErbB2(HER2)。在体外细胞杀伤实验中,单独应用时,这些NKAB-EGFR和NKAB-ErbB2抗体可特异性将NKAR-NK-92和NKAR_RD-IL15-NK-92细胞重定向至EGFR或ErbB2水平升高的胶质母细胞瘤及其他癌细胞。
然而,在用作异质性靶抗原表达模型的混合胶质母细胞瘤细胞培养中,NKAR-NK细胞仅在存在其中一种NKAB分子时才能裂解表达EGFR或ErbB2的亚群。通过同时应用NKAB-EGFR和NKAB-ErbB2可规避这一问题,从而产生与针对同时表达两种靶抗原的胶质母细胞瘤细胞相似的有效抗肿瘤活性。
我们的结果表明,将携带活化NKAR受体的NK细胞与双特异性NKAB抗体联合使用可实现灵活靶向,从而增强肿瘤抗原特异性细胞毒性并防止免疫逃逸。
NKG2D is an activating receptor of natural killer cells that recognizes stress-induced ligands (NKG2DL) expressed by many tumor cells. Nevertheless, NKG2DL downregulation or shedding can still allow cancer cells to evade immune surveillance.
Here, we used lentiviral gene transfer to engineer clinically usable NK-92 cells with a chimeric antigen receptor (NKAR) which contains the extracellular domain of NKG2D for target recognition, or an NKAR, together with the IL-15 superagonist RD-IL15, and combined these effector cells with recombinant NKG2D-interacting bispecific engagers that simultaneously recognize the tumor-associated antigens epidermal growth factor receptor (EGFR) or ErbB2 (HER2).
Applied individually, in in vitro cell-killing assays, these NKAB-EGFR and NKAB-ErbB2 antibodies specifically redirected NKAR-NK-92 and NKAR_RD-IL15-NK-92 cells to glioblastoma and other cancer cells with elevated EGFR or ErbB2 levels.
However, in mixed glioblastoma cell cultures, used as a model for heterogeneous target antigen expression, NKAR-NK cells only lysed the EGFR- or ErbB2-expressing subpopulations in the presence of one of the NKAB molecules. This was circumvented by applying NKAB-EGFR and NKAB-ErbB2 together, resulting in effective antitumor activity similar to that against glioblastoma cells expressing both target antigens.
Our results demonstrate that combining NK cells carrying an activating NKAR receptor with bispecific NKAB antibodies allows for flexible targeting, which can enhance tumor-antigen-specific cytotoxicity and prevent immune escape.
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