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Rapid assessment of migration and proliferation: A novel 3D high-throughput platform for rational and combinatorial screening of tissue-specific biomaterials

机译:快速评估迁移和增殖:一种新颖的3D高通量平台,用于组织特异性生物材料的合理和组合筛选

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摘要

Designing an ideal biomaterial supportive of multicellular tissue repair is challenging, especially with a poor understanding of the synergy between constituent proteins and growth factors. A brute-force approach, based on screening all possible combinations of proteins and growth factors, is inadequate due to the prohibitively large experimental space coupled with current low-throughput screening techniques. A high-throughput screening platform based on rational and combinatorial strategies for design and testing of proteins and growth factors can significantly impact the discovery of novel tissue-specific biomaterials. Here, we report the development of a flexible high-throughput screening platform, Rapid Assessment of Migration and Proliferation (RAMP), to rapidly investigate cell viability, proliferation, and migration in response to highly miniaturized three-dimensional biomaterial cultures (4-20 μL) with sparingly low cell densities (63-1000 cells perμL for cell arrays; 1μL of 1000-10,000 cells perμL for migration arrays). The predictions made by RAMP on the efficacy and potency of the biomaterials are in agreement with the predictions made by conventional assays but at a throughput that is at least 100-1000-fold higher. The RAMP assay is therefore a novel approach for the rapid discovery of tissue-specific biomaterials for tissue engineering and regenerative medicine.
机译:设计一种支持多细胞组织修复的理想生物材料具有挑战性,尤其是在对组成蛋白和生长因子之间的协同作用了解不足的情况下。由于筛选空间过大,加上目前的低通量筛选技术,基于筛选蛋白质和生长因子所有可能组合的蛮力方法是不够的。基于合理和组合策略的高通量筛选平台,用于蛋白质和生长因子的设计和测试,可以显着影响新型组织特异性生物材料的发现。在这里,我们报告了灵活的高通量筛选平台的发展,即迁移和增殖的快速评估(RAMP),以快速研究细胞活力,增殖和迁移,以应对高度小型化的三维生物材料培养物(4-20μL )的细胞密度较低(对于细胞阵列,每微升63-1000个细胞;对于迁移阵列,每微升1000-10,000个细胞中的1微升)。 RAMP对生物材料的功效和效能的预测与常规测定的预测一致,但通量至少高100-1000倍。因此,RAMP测定法是一种用于组织工程和再生医学的快速发现组织特异性生物材料的新颖方法。

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