Stepanov Ivan, Gottshall Noah R, Ahmadianyazdi Alireza, Sinha Daksh, Lockhart Ethan J, Nguyen Tran N H, Hassan Sarmad, Horowitz Lisa F, Yeung Raymond S, Gujral Taranjit S, Folch Albert
bioRxiv. 2024 Aug 6:2024.03.21.586169. doi: 10.1101/2024.03.21.586169.
The scarcity of human biopsies available for drug testing is a paramount challenge for developing new therapeutics, disease models, and personalized treatments. Microtechnologies that combine the microscale manipulation of tissues and fluids offer the exciting possibility of miniaturizing both disease models and drug testing workflows on scarce human biopsies. Unfortunately, these technologies presently require microfluidic devices or robotic dispensers that are not widely accessible. We have rapidly-prototyped an inexpensive platform based on an off-the-shelf robot that can microfluidically manipulate live microtissues into/out of culture plates without using complicated accessories such as microscopes or pneumatic controllers. The robot integrates complex functions with a simple, cost-effective and compact construction, allowing placement inside a tissue culture hood for sterile workflows. We demonstrated a proof-of-concept cancer drug evaluation workflow of potential clinical utility using patient tumor biopsies with multiple drugs on 384-well plates. Our user-friendly, low-cost platform promises to make drug testing of microtissues broadly accessible to pharmaceutical, clinical, and biological laboratories.
A low-cost robot for handling microtissues and catalyzing their use in cancer drug evaluation and personalized oncology.
可用于药物测试的人体活检样本稀缺,这是开发新疗法、疾病模型和个性化治疗的一项重大挑战。能够对组织和液体进行微观操作的微技术,为缩小疾病模型和稀缺人体活检样本上的药物测试工作流程提供了令人兴奋的可能性。不幸的是,目前这些技术需要微流控设备或机器人分配器,而这些设备并不容易获得。我们基于现成的机器人快速制作了一个低成本平台,该平台无需使用显微镜或气动控制器等复杂配件,就能通过微流控技术将活的微组织移入/移出培养板。该机器人将复杂功能与简单、经济高效且紧凑的结构相结合,可放置在组织培养罩内以实现无菌工作流程。我们展示了一个具有潜在临床应用价值的概念验证癌症药物评估工作流程,使用患者肿瘤活检样本在384孔板上测试多种药物。我们这个用户友好、低成本的平台有望使微组织的药物测试在制药、临床和生物实验室中广泛可用。
一种用于处理微组织并促进其在癌症药物评估和个性化肿瘤学中应用的低成本机器人。