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Updated: Sep 30, 2026

A High-Throughput Platform for Culture and 3D Imaging of Organoids
Published on: October 14, 2022
Transforming Brain Organoids Into Functional Platforms: Convergence of Engineering, Imaging, AI, and Ethics
Aishwarya Pantula1, Kaustubh Joshi1, Swarangi Samant2
1Department of Biomedical Engineering, Whiting School of Engineering, Johns Hopkins University, Baltimore, Maryland, USA.
Abstract:
Brain organoids are self-organizing 3D aggregates derived from pluripotent stem cells and thus mirror many aspects of human brain development, including gene expression programs, spatial organization, and neuron subtype specification. As a result, these organoids have been used to emulate neurodevelopmental, neuropsychiatric, and neurodegenerative diseases. Yet, their maturation remains fundamentally constrained by diffusion-limited necrosis, incomplete vascularization, limited visualization, and the absence of large-scale circuit integration, which collectively prevent progression beyond the fetal stage. These intrinsic limitations have catalyzed a convergence across microfluidics, biofabrication, imaging, and ethical frameworks, giving rise to a multidisciplinary movement aimed at enhancing organoid viability, reproducibility, and physiological relevance. This perspective examines how these technologies are transforming brain organoids from developmental models into experimentally robust, functional platforms.
