JY
Jun Yan
  • Faculty,
研究方向
  • Immunology
Expansion and Polarization of Human γδT17 Cells in vitro from Peripheral Blood Mononuclear Cells
外周血单核细胞体外扩增和极化人 γδT17 细胞
作者:Xu Chen, Xiaoling Hu, Fuxiang Chen and Jun Yan日期:01/05/2024,浏览量:652,Q&A: 0

γδ T cells play a critical role in homeostasis and diseases such as infectious diseases and tumors in both mice and humans. They can be categorized into two main functional subsets: IFN-γ-producing γδT1 cells and IL-17-producing γδT17 cells. While CD27 expression segregates these two subsets in mice, little is known about human γδT17 cell differentiation and expansion. Previous studies have identified γδT17 cells in human skin and mucosal tissues, including the oral cavity and colon. However, human γδ T cells from peripheral blood mononuclear cells (PBMCs) primarily produce IFN-γ. In this protocol, we describe a method for in vitro expansion and polarization of human γδT17 cells from PBMCs.


Key Features

• Expansion of γδ T cells from peripheral blood mononuclear cells.

• Human IL-17A-producing γδ T-cell differentiation and expansion using IL-7 and anti-γδTCR.

• Analysis of IL-17A production post γδ T-cell expansion.

A Tumor-admixture Model to Interrogate Immune Cell–dependent Tumorigenesis
研究免疫细胞依赖性肿瘤发生的肿瘤混合模型
作者:Jordan T. Noe, Chuanlin Ding, Anne E. Geller, Beatriz E. Rendon, Jun Yan and Robert A. Mitchell日期:03/05/2023,浏览量:1250,Q&A: 0

A rigorous determination of effector contributions of tumor-infiltrating immune cells is critical for identifying targetable molecular mechanisms for the development of novel cancer immunotherapies. A tumor/immune cell–admixture model is an advantageous strategy to study tumor immunology as the fundamental methodology is relatively straightforward, while also being adaptable to scale to address increasingly complex research queries. Ultimately, this method can provide robust experimental information to complement more traditional murine models of tumor immunology. Here, we describe a tumor/macrophage-admixture model using bone marrow–derived macrophages to investigate macrophage-dependent tumorigenesis. Additionally, we provide commentary on potential branch points for optimization with other immune cells, experimental techniques, and cancer types.

13C Tracer Studies of Metabolism in Mouse Tumor Xenografts
13C 示踪研究老鼠肿瘤异种移植中的新陈代谢
作者:Andrew N. Lane, Jun Yan and Teresa W-M. Fan日期:11/20/2015,浏览量:11373,Q&A: 0
Mice are widely used for human tumor xenograft studies of cancer development and drug efficacy and toxicity. Stable isotope tracing coupled with metabolomic analysis is an emerging approach for assaying metabolic network activity. In mouse models there are several routes of tracer introduction, which have particular advantages and disadvantages that depend on the model and the questions addressed. This protocol describes the bolus i.v. route via repeated tail vein injections of solutions of stable isotope enriched tracers including 13C6-glucose and 13C5,15N2-glutamine. Repeated injections give higher enrichments and over longer labeling periods than a single bolus. Multiple injections of glutamine are necessary to achieve adequate enrichment in engrafted tumors.