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胃癌裂解物负载的树突状细胞中 siRNA 介导的 B7H7 敲低可增强自体 T 细胞的扩增和细胞因子分泌

英文原题:siRNA-Mediated B7H7 Knockdown in Gastric Cancer Lysate-Loaded Dendritic Cells Amplifies Expansion and Cytokine Secretion of Autologous T Cells.

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siRNA-Mediated B7H7 Knockdown in Gastric Cancer Lysate-Loaded Dendritic Cells Amplifies Expansion and Cytokine Secretion of Autologous T Cells.

PubMed 2023/12/04(内容时间) Biomedicines Q2 · IF 4.5(JCR 2025)

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研究概要

研究发现,在胃癌细胞裂解物作用下,抑制 DCs 中 B7H7 的表达可显著增强其成熟和刺激活性。这些 B7H7 沉默的 DCs 能大幅增加细胞因子产生并促进共培养 T 细胞扩增。因此,抑制 DCs 中的 B7H7 可能提供一种实用策略,以增强 DCs 启动 T 淋巴细胞应答的能力,并提高 DC 细胞疗法对癌症患者的疗效。

研究思路结论见上方概要

胃癌是全球第五大常见癌症,其治疗面临多重挑战。这些障碍通常由癌症干细胞引起,而癌症干细胞与复发、转移和耐药性相关。尽管基于树突状细胞(DC)的免疫疗法已显示出作为一种治疗策略的前景,但其疗效可能受到肿瘤微环境和某些抑制性免疫检查点分子(如 B7H7)的限制。在肿瘤细胞裂解物脉冲的 DC 中,siRNA 介导的 B7H7 敲低可增加细胞因子分泌和自体 T 淋巴细胞扩增。本研究旨在评估胃癌细胞裂解物脉冲的 DC 中 B7H7 抑制对自体 CD3 + T 淋巴细胞刺激潜能的影响。

外周血单个核细胞(PBMCs)被分离并获得单核细胞;随后,通过GM-CSF和IL-4将其分化为未成熟DC(iDCs)。收集人胃癌细胞系的肿瘤细胞裂解物,并通过用肿瘤细胞裂解物和脂多糖刺激iDCs,将其转化为成熟DC(mDCs)。使用电穿孔将B7H7-siRNA递送到mDCs中,并评估基因沉默效率。使用特异性表面标志物、倒置光学显微镜和流式细胞术评估iDCs、mDCs和B7H7沉默mDCs的表型特征。通过磁激活细胞分选分离CD3 + T细胞。用CFSE染料标记它们,并与mDCs和B7H7沉默mDCs共培养,以评估其诱导T细胞增殖的能力。使用流式细胞术评估T细胞增殖。评估共培养上清液中CD3 + T细胞分泌的TGF-β、IL-4和IFN-γ浓度,以研究细胞的细胞因子分泌活性。

在最佳条件下将B7H7 siRNA转染至mDCs中,siRNA转染以剂量依赖性方式有效降低了B7H7 mRNA表达。siRNA介导的mDCs中B7H7敲低增强了DCs的成熟和活化,表现为CD11c、CD86和CD40表面表达增加。共培养实验显示,与未转染的mDCs相比,B7H7沉默的mDCs具有更强的诱导T细胞增殖的能力。T细胞的细胞因子产生模式也发生了改变。在检测共培养上清液中CD3+ T细胞释放的TGF-β、IL-4和IFN-γ水平后,我们发现与未转染的mDCs相比,沉默mDCs中的B7H7导致IL-4分泌增加和TGF-β水平降低。

展开英文摘要原文

Gastric cancer, ranked as the fifth most common cancer worldwide, presents multiple treatment challenges. These obstacles often arise due to cancer stem cells, which are associated with recurrence, metastasis, and drug resistance. While dendritic cell (DC)-based immunotherapy has shown promise as a therapeutic strategy, its efficacy can be limited by the tumor microenvironment and certain inhibitory immune checkpoint molecules, such as B7H7. SiRNA-medicated knockdown of B7H7 in tumor cell lysate-pulsed DCs can increase cytokine secretion and autologous T lymphocyte expansion. This study aimed to evaluate the impact of B7H7 suppression in gastric cancer cell lysate-pulsed DCs on the stimulatory potential of autologous CD3 + T lymphocytes.

Peripheral blood mononuclear cells (PBMCs) were isolated and monocytes were obtained; then, they were differentiated to immature DCs (iDCs) by GM-CSF and IL-4. Tumor cell lysates from human gastric cancer cell lines were harvested, and iDCs were transformed into mature DCs (mDCs) by stimulating iDCs with tumor cell lysate and lipopolysaccharide. B7H7-siRNA was delivered into mDCs using electroporation, and gene silencing efficiency was assessed. The phenotypic characteristics of iDCs, mDCs, and B7H7-silenced mDCs were evaluated using specific surface markers, an inverted light microscope, and flow cytometry. CD3 + T cells were isolated via magnetically activated cell sorting. They were labeled with CFSE dye and co-cultured with mDCs and B7H7-silenced mDCs to evaluate their ability to induce T-cell proliferation. T-cell proliferation was assessed using flow cytometry. The concentration of TGF-β, IL-4, and IFN-γ secreted from CD3 + T cells in the co-cultured supernatant was evaluated to investigate the cytokine secretory activity of the cells.

Transfection of B7H7 siRNA into mDCs was performed in optimal conditions, and the siRNA transfection effectively reduced B7H7 mRNA expression in a dose-dependent manner. SiRNA-mediated B7H7 knockdown in mDCs enhanced maturation and activation of the DCs, as demonstrated by an increased surface expression of CD11c, CD86, and CD40. Co-culture experiments revealed that B7H7-silenced mDCs had more capacity to induce T cell proliferation compared to non-transfected mDCs. The cytokine production patterns of T cells were also altered. Upon examining the levels of TGF-β, IL-4, and IFN-γ released by CD3 + T cells in the co-culture supernatant, we found that silencing B7H7 in mDCs resulted in a rise in IL-4 secretion and a reduction in TGF-β levels compared to mDCs that were not transfected.

The study found that suppressing B7H7 expression in DCs significantly enhances their maturation and stimulatory activity when exposed to gastric cancer cell lysate. These B7H7-silenced DCs can substantially increase cytokine production and promote co-cultured T-cell expansion. Consequently, inhibiting B7H7 in DCs may offer a practical strategy to enhance the ability of DCs to initiate T lymphocyte responses and improve the effectiveness of DC-based cell therapy for cancer patients.

论文信息

作者
Masoumi J、Ghorbaninezhad F、Saeedi H、Safaei S、Khaze Shahgoli V、Ghaffari Jolfayi A、Naseri B、Baghbanzadeh A
单位
Immunology Research Center, Tabriz University of Medical Sciences, Tabriz 51548-53431, Iran.Iran
期刊
Biomedicines2023 Dec 4
原文标识
PubMed 38137433 · DOI 10.3390/biomedicines11123212