类有机物
医学
癌症研究
门1
免疫组织化学
突变体
靶向治疗
个性化医疗
癌症
肿瘤科
内科学
生物信息学
神经内分泌肿瘤
病理
精密医学
转化研究
鉴定(生物学)
护理标准
生长激素
依维莫司
病人护理
计算生物学
总体生存率
生物
作者
Steven D. Forsythe,Srujana V. Yellapragada,Tracey Pu,Darryl Nousome,Samarth Mathur,Dilara Akbulut,Andrews Sb,Kamala A. Kenny,Martha Quezado,Maggie Cam,Jaydira Del Rivero,Serguei Kozlov,Jonathan M. Hernandez,Naris Nilubol,James P. Madigan,Samira M. Sadowski
出处
期刊:Science Advances
[American Association for the Advancement of Science]
日期:2026-07-24
卷期号:12 (30): eaea4296-eaea4296
被引量:1
标识
DOI:10.1126/sciadv.aea4296
摘要
Gastro-entero-pancreatic neuroendocrine tumors (GEP-NETs) are a rare subset of cancers with increasing incidence. Due to their slow growth and lack of targetable mutations, the identification of effective treatments remains limited. One reason behind this stagnation is the lack of applicable, accurate study models. One solution is patient tumor organoids (PTOs) that maintain tumor characteristics and can scale for high throughput assays. In this study, PTOs were generated from 35 tumors of pancreatic, small intestinal, and gastric origin, obtained from 17 patients. Important subtypes including hormone functional and MEN1 / VHL mutant GEP-NETs are represented, with each demonstrating growth in culture while maintaining GEP-NET immunohistochemistry and genomic characteristics. Half of G2/G3 tumors (10 of 20) could be cultured past passage 6, whereas G1 tumors ( n = 15) were capable of growth until passage 4. Therapeutic targeting of the PTOs displayed both tissue-origin and grade-based response to standard of care and investigational therapies while maintaining patient tumor sensitivity and resistance. Last, a successful PTO xenograft model was developed from one PTO line. This study describes GEP-NET organoid development that demonstrates feasibility for expansion, enabling their use for translational investigations.
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