免疫系统
阿替唑单抗
癌症研究
医学
癌症
免疫原性
胰腺癌
离体
体内
免疫疗法
CTL公司*
癌细胞
胰腺导管腺癌
免疫学
叶黄素
癌症免疫疗法
体外
腺癌
干细胞
抗原
临床试验
嵌合抗原受体
作者
Nathalia Ferreira,David Agorku,André Henrique Rosa,Julia Roosz,Lena Christ,Nicole Anderle,Ajinkya Kulkarni,Abir Hussein,Sana Sayedipour,Omar Luna,Tobias J. Legler,P. Ströbel,F. Albericio,Luis J. Cruz,Phillipp Beckhove,Peter Loskill,Frauke Alves,M. Andrea Markus,Fernanda Ramos‐Gomes
标识
DOI:10.1002/advs.202515199
摘要
Pancreatic ductal adenocarcinoma (PDAC) remains a major clinical challenge due to late detection and limited treatment responsiveness. To better evaluate complex immunotherapies in a human-relevant setting, we developed an integrated organoid-immune co-culture pipeline using PDAC patient-derived organoids (PDOs) and matched HLA immune cells. As a proof of concept, we assessed an MSLN-targeted nanovaccine (Mesovac), alone and in combination with FOLFIRINOX chemotherapy and Atezolizumab. We evaluated Mesovac across a multi-stage pipeline, including T-cell stimulation, ex vivo expansion, and PDO-immune co-cultures, to assess immune activation, specificity, and synergy with combinatorial treatments. MSLN-stimulated T-cells, derived from PDAC patients, showed increased IFN-γ production and selective infiltration into MSLN-expressing PDOs. Artificial antigen-presenting cells (aAPCs) boosted the expansion of reactive T-cells, enhancing antitumor responses. Notably, combining Mesovac with FOLFIRINOX and Atezolizumab maintained PD-L1+ T-cell levels and reduced cancer stem cells and aggressive PDAC subsets. Using this advanced in vitro workflow, we highlight that this platform, using human organoid-immune cell co-cultures, enables the evaluation of complex processes related to nanovaccine strategies that would not be possible in vivo.
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