A workflow integrating organ-on-chip culture and correlative 3D light and electron microscopy for microtissue analysis
Abstract
Abstract Correlative microscopy approaches offer powerful means to study tissue development across spatial scales, but combining 3D light and electron imaging remains technically challenging. Here, we present a practical workflow that integrates organ-on-a-chip culture with longitudinal fluorescence imaging and volume electron microscopy. By modifying an existing chip platform designed for aligned tissue growth, we demonstrate the feasibility of extended 3D live imaging and subsequent high-pressure freezing of intact microtissues. Fluorescence-guided targeting enables focused ion beam/scanning electron microscopy (FIB/SEM) of selected regions, revealing ultrastructural features such as cellular organization, collagen alignment, and matrix mineralization. While not aimed at new biological discoveries, this study highlights the compatibility and potential of this pipeline for future high-resolution, multiscale studies of tissue morphogenesis and pathology in controlled microenvironments.
Article Details
Authors (14)
Judith M. Schaart
Dorothee Wasserberg
Marcos A. Eufrásio Cruz
Mariska Kea-te Lindert
Robin H. M. van der Meijden
Rona Roverts
Nataliya Debera
Minh Phu Lu
Jeroen Rouwkema
Wouter H. Nijhuis
Andries D. van der Meer
Pascal Jonkheijm
Nico Sommerdijk
Anat Akiva