研究概要
我们开发了抗肿瘤NP和MV,通过向内源性T细胞同时递送多种免疫刺激信号,在体内有效诱导了抗肿瘤免疫应答。该平台能够将所需组合的抗肿瘤免疫信号递送至T细胞和NK细胞。
研究思路结论见上方概要
背景
多种免疫治疗策略已被开发并进入临床。双特异性抗体(BsAbs)是其中一种模式,通过内源性T细胞在多种血液系统恶性肿瘤中诱导强效疗效。然而,大多数接受治疗的患者仅获得暂时获益。目前可用的BsAbs仅提供抗CD3抗体介导的T细胞刺激,但缺乏T细胞完全活化所必需的共刺激或细胞因子信号。在此,我们假设同时输入更全面的信号将引发更强效且持久的效应T细胞功能。
方法
我们对白血病细胞系K562进行基因工程改造,使其在细胞表面表达BsAbs、共刺激配体、细胞因子以及针对免疫检查点分子的阻断抗体,随后通过机械匀浆和分离步骤获得质膜组分。将质膜重构于聚乳酸-羟基乙酸共聚物表面,以制备膜包被纳米颗粒(NPs)。或者,通过超声分散分离的膜,制备纳米级膜囊泡(MVs)。在体外和体内评估了负载各种免疫调节因子的NPs和MVs的抗肿瘤功能。
结果
膜包被的NPs和MVs均能在非特异性T细胞中诱导BsAb介导的抗原特异性细胞毒性活性,其中MVs在体内诱导的反应略优。重要的是,T细胞活化仅在靶肿瘤细胞存在时被触发,为临床使用提供了安全性优势。表达共刺激分子(CD80/4-1BBL)和细胞因子(白细胞介素(IL)-7/IL-15)的NPs和MVs进一步增强了效应T细胞功能,并在体内诱导了治疗效果。此外,表达免疫检查点抗体和炎性细胞因子IL-12和IL-18的MVs在实体瘤模型中诱导了客观抗肿瘤反应,部分通过将免疫抑制性巨噬细胞转化为促炎表型并诱导细胞毒性T细胞浸润至肿瘤中实现。最后,我们展示了MVs还可通过装载多种配体被工程化以激活自然杀伤(NK)细胞。装载BsAbs、4-1BBL、IL-15和IL-21的MVs以抗原特异性方式诱导了NK细胞细胞毒性活性。
展开英文摘要原文
BACKGROUND: A number of immunotherapeutic approaches have been developed and are entering the clinic. Bispecific antibodies (BsAbs) are one of these modalities and induce robust efficacy by endogenous T cells in several hematological malignancies. However, most of the treated patients experience only a temporary benefit. Currently available BsAbs provide only anti-CD3 antibody-mediated T-cell stimulation, but not the costimulation or cytokine signaling essential for full T-cell activation. Here, we hypothesized that the simultaneous input of more comprehensive signals would elicit more robust and durable effector T-cell functions.
METHODS: We genetically engineered the leukemia cell line K562 to express BsAbs, costimulatory ligands, cytokines, and blocking antibodies against immune checkpoint molecules on the cell surface, from which we obtained plasma membrane fractions by mechanical homogenization and subsequent isolation steps. Plasma membranes were reconstituted on the poly (lactic-co-glycolic acid) surface to generate membrane-coated nanoparticles (NPs). Alternatively, nano-sized membrane vesicles (MVs) were generated by ultrasonic dispersion of the isolated membranes. The antitumor function of NPs and MVs loaded with various immunomodulatory factors was evaluated in vitro and in vivo.
RESULTS: Both membrane-coated NPs and MVs induced BsAb-mediated antigen-specific cytotoxic activity in non-specific T cells, with MVs inducing a slightly better response in vivo. Importantly, T-cell activation was elicited only in the presence of target tumor cells, providing a safety advantage for clinical use. NPs and MVs expressing costimulatory molecules (CD80/4-1BBL) and cytokines (interleukin (IL)-7/IL-15) further enhanced effector T-cell function and induced therapeutic efficacy in vivo. In addition, MVs expressing immune checkpoint antibodies and inflammatory cytokines IL-12 and IL-18 induced objective antitumor responses in solid tumor models partly by converting immunosuppressive macrophages to proinflammatory phenotypes and inducing cytotoxic T-cell infiltration into the tumor. Finally, we showed that MVs were also engineered to activate natural killer (NK) cells by loading multiple ligands. MVs loaded with BsAbs, 4-1BBL, IL-15, and IL-21 induced NK-cell cytotoxic activity in an antigen-specific manner.
CONCLUSIONS: We developed antitumor NPs and MVs that efficiently induced antitumor immune responses in vivo by simultaneously delivering multiple immunostimulatory signals to endogenous T cells. This platform enables the delivery of desired combinations of antitumor immune signals into T cells and NK cells.
论文信息
- 作者
- Ito Y、Kasuya H、Kataoka M、Nakamura N、Yoshikawa T、Nakashima T、Zhang H、Li Y
- 第一作者单位
- Division of Tumor Immunology, Institute for Advanced Medical Research, Keio University School of Medicine, Tokyo, Japan.Japan
- 通讯作者单位
- Division of Tumor Immunology, Institute for Advanced Medical Research, Keio University School of Medicine, Tokyo, Japan ykagoya@keio.jp.Japan
- 期刊
- Journal for immunotherapy of cancer2025 Jan 26