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Abstract Low-temperature biopreservation and 3D tissue engineering present two differing routes towards eventual on-demand access to transplantable biologics, but recent advances in both fields present critical new opportunities for crossover between them. In this work, we demonstrate sub-zero centigrade preservation and revival of autonomously beating three-dimensional human induced pluripotent stem cell (hiPSC)-derived cardiac microtissues via isochoric supercooling, without the use of chemical cryoprotectants. We show that these tissues can cease autonomous beating during preservation and resume it after warming, that the supercooling process does not affect sarcomere structural integrity, and that the tissues maintain responsiveness to drug exposure following revival. Our work suggests both that functional three dimensional (3D) engineered tissues may provide an excellent high-content, low-risk testbed to study complex tissue biopreservation in a genetically human context, and that isochoric supercooling may provide a robust method for preserving and reviving engineered tissues themselves.more » « less
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Ma, Zhen; Huebsch, Nathaniel; Koo, Sangmo; Mandegar, Mohammad A.; Siemons, Brian; Boggess, Steven; Conklin, Bruce R.; Grigoropoulos, Costas P.; Healy, Kevin E. (, Nature Biomedical Engineering)
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Guillerme, Thomas; Cooper, Natalie; Brusatte, Stephen L.; Davis, Katie E.; Jackson, Andrew L.; Gerber, Sylvain; Goswami, Anjali; Healy, Kevin; Hopkins, Melanie J.; Jones, Marc E.; et al (, Biology letters)null (Ed.)Analyses of morphological disparity have been used to characterize and investigate the evolution of variation in the anatomy, function and ecology of organisms since the 1980s. While a diversity of methods have been employed, it is unclear whether they provide equivalent insights. Here, we review the most commonly used approaches for characterizing and analysing morphological disparity, all of which have associated limitations that, if ignored, can lead to misinterpretation. We propose best practice guidelines for disparity analyses, while noting that there can be no ‘one-size-fits-all’ approach. The available tools should always be used in the context of a specific biological question that will determine data and method selection at every stage of the analysis.more » « less
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