研究概要
将类器官与免疫细胞结合在共培养系统中,标志着癌症研究和免疫学领域的突破性进展。
中文摘要
将类器官与免疫细胞结合在共培养系统中,标志着癌症研究和免疫学领域的一项突破性进展。这些三维模型来源于原发肿瘤标本或干细胞,比传统的二维培养或动物模型能更准确地再现肿瘤微环境(TME)。这种增强的模型允许对癌细胞与免疫系统之间复杂的相互作用进行全面检查。尽管类器官建系的成功率可能有所不同,在13种不同肿瘤类型中平均为36.8%,但成功的类器官建立使其能够与多种免疫细胞共培养,如T细胞、TIL(肿瘤浸润淋巴细胞)(TILs)、外周血单核细胞(PBMCs)、巨噬细胞、树突状细胞和自然杀伤(NK)细胞。该平台使得研究针对癌症的免疫应答、免疫逃逸机制以及TME对免疫激活和抑制的影响成为可能。本综述强调了涉及肠道、胰腺、脑、肝脏和宫颈类器官的研究,突出其在阐明疾病机制、评估免疫疗法(包括检查点抑制剂和治疗性疫苗)有效性以及开展临床前药物评价中的作用。值得注意的例子包括利用肠道类器官模拟移植物抗宿主病、研究DCLK1对胰腺癌免疫抑制的影响、利用脑类器官评估工程化T细胞对神经母细胞瘤的有效性,以及分析癌症相关成纤维细胞对结肠癌药物反应的影响。此外,还探讨了类器官在疫苗开发和测试中的潜力,特别是针对流感和其他病毒感染,展示了其在评估免疫反应和疫苗有效性方面的实用性。尽管存在现有挑战,例如类器官生成效率相对较低以及完全模拟TME所涉及的复杂性,但包括肿瘤芯片系统和增强基质材料在内的持续技术创新,预计将改善这些先进体外模型的功能性和临床适用性。
展开英文摘要原文
The incorporation of organoids with immune cells in co-culture systems signifies a groundbreaking advancement in the fields of cancer research and immunology. These three-dimensional models, derived from primary tumor specimens or stem cells, provide a more accurate representation of the tumor microenvironment (TME) than conventional two-dimensional cultures or animal models. This enhanced model allows for a thorough examination of the intricate interactions between cancer cells and the immune system. Although the success rates for organoid initiation can vary, averaging 36.8% across 13 different tumor types, successful organoid establishment enables the co-culture with a variety of immune cells, such as T cells, tumor-infiltrating lymphocytes (TILs), peripheral blood mononuclear cells (PBMCs), macrophages, dendritic cells, and natural killer (NK) cells. This platform enables the study of immune responses to cancer, mechanisms of immune evasion, and the influence of the TME on immune activation and suppression. The review emphasizes research involving intestinal, pancreatic, brain, liver, and cervical organoids, highlighting their role in elucidating disease mechanisms, assessing the effectiveness of immunotherapies (including checkpoint inhibitors and therapeutic vaccines), and conducting preclinical drug evaluations. Notable examples include modeling graft-versus-host disease with intestinal organoids, investigating the influence of DCLK1 on immunosuppression in pancreatic cancer, evaluating the effectiveness of engineered T cells against neuroblastoma using brain organoids, and analyzing the effects of cancer-associated fibroblasts on drug responses in colon cancer. Additionally, the potential of organoids in vaccine development and testing, particularly for influenza and other viral infections, is examined, demonstrating their utility in assessing immune responses and vaccine effectiveness. Despite existing challenges, such as the relatively low efficiency of organoid generation and the complexities involved in fully mimicking the TME, ongoing technological innovations, including tumor-on-chip systems and enhanced matrix materials, are expected to improve the functionality and clinical applicability of these advanced in vitro models.
论文信息
- 作者
- Najafi F、Zoghi NA、Khalili H、Najafi N、Yazdi MH、Sisakht MM
- 第一作者单位
- Faculty of Pharmacy, Tehran Medical Sciences, Islamic Azad University, Tehran, Iran.Iran
- 通讯作者单位
- Stem Cell and Regenerative Medicine Innovation Center, Tehran University of Medical Sciences, Tehran, Iran. mmollapour@farabi.tums.ac.ir.Iran
- 文献类型
- 综述
- 期刊
- Molecular biology reports2026 Feb 4