靶向巨噬细胞的癌症治疗策略
Macrophage-directed therapeutic strategies in cancer.
肿瘤相关巨噬细胞(TAMs)是肿瘤微环境的主要组成部分,具有显著的功能可塑性,根据所处的微环境信号,既可表现为促进肿瘤进展的免疫抑制细胞,也可表现为支持抗肿瘤免疫的免疫刺激细胞。
英文原题:Antitumor activity of T cells secreting αCD133-αCD3 bispecific T-cell engager against cholangiocarcinoma.
Antitumor activity of T cells secreting αCD133-αCD3 bispecific T-cell engager against cholangiocarcinoma.
我们的发现证明了原理验证,即分泌αCD133-αCD3衔接器的T细胞可作为治疗CD133阳性CCA的一种替代方法,并为未来的体内研究和临床试验奠定了基础。
胆管癌(CCA)是一种胆管上皮细胞的致死性癌症,死亡率高且治疗选择有限。因此,迫切需要有效的治疗来改善这些患者的治疗结局。为了开发新的治疗选择,我们构建了分泌αCD133-αCD3双特异性T细胞衔接器的T细胞,并评估了其对表达CD133的CCA细胞的抗肿瘤效果。将编码αCD133-αCD3双特异性T细胞衔接器(αCD133-αCD3-ENG)的cDNA克隆到pCDH慢病毒载体中,并在Lenti-X 293T细胞中检测其表达。随后用工程化慢病毒转导来自健康供者的T细胞,以创建分泌αCD133-αCD3衔接器的T细胞,从而评估其抗肿瘤活性。转导进入T细胞的平均效率约为60.03±21.65%。在包含分泌αCD133-αCD3衔接器的T细胞(作为效应细胞)和表达mWasabi-luciferase的CCA细胞(KKU-100和KKU-213A;作为靶细胞)的共培养系统中,在效应细胞与靶细胞比例为5:1时,效应T细胞对靶CCA细胞表现出显著更高的溶细胞活性(分别为49.0±9.76%和64.10±13.18%),高于未转导T细胞所观察到的活性(10.97±10.65%;p = 0.0103和9.80±11.05%;p = 0.0054)。此外,分泌的αCD133-αCD3衔接器显著重定向了转导T细胞和旁观者T细胞以杀伤靶CCA细胞(高达73.20±1.68%;p<0.05)。而且,转导T细胞和旁观者T细胞杀伤靶CCA球体的速率约为未处理对照条件的5倍(p = 0.0011)。我们的发现证明了原理验证,即分泌αCD133-αCD3衔接器的T细胞可作为治疗CD133阳性CCA的一种替代方法,并为未来的体内研究和临床试验奠定了基础。
Cholangiocarcinoma (CCA) is a lethal cancer of bile duct epithelial cells with a high mortality rate and limited therapeutic options. An effective treatment is, therefore, urgently needed to improve treatment outcomes for these patients. To develop a new therapeutic option, we engineered T cells secreting αCD133-αCD3 bispecific T-cell engager and evaluated their antitumor effects against CD133-expressing CCA cells. The cDNA encoding αCD133-αCD3 bispecific T-cell engager (αCD133-αCD3-ENG) was cloned into pCDH lentiviral construct and its expression was tested in Lenti-X 293T cells. T cells from healthy donors were then transduced with engineered lentiviruses to create T cells secreting αCD133-αCD3 engager to evaluate their antitumor activities. The average transduction efficiency into T cells was approximately 60.03±21.65%. In the co-culture system containing T cells secreting αCD133-αCD3 engager (as effector cells) and mWasabi-luciferase-expressing CCA cells (KKU-100 and KKU-213A; as target cells), the effector T cells exhibited significantly higher cytolytic activities against the target CCA cells (49.0±9.76% and 64.10±13.18%, respectively) than those observed against the untransduced T cells (10.97±10.65%; p = 0.0103 and 9.80±11.05%; p = 0.0054) at an effector-to-target ratio of 5:1. In addition, the secreted αCD133-αCD3 engager significantly redirected both transduced T cells and bystander T cells to kill the target CCA cells (up to 73.20±1.68%; p<0.05). Moreover, the transduced and bystander T cells could kill the target CCA spheroids at a rate approximately 5-fold higher than that of the no treatment control condition (p = 0.0011). Our findings demonstrate proof-of-principle that T cells secreting αCD133-αCD3 engager can be an alternative approach to treating CD133-positive CCA, and they pave the way for future in vivo study and clinical trials.
MEMBER ACCOUNT
登录成功会直接打开下一页。