Self-driving bioprinting laboratories
The severe shortage of donor organs and limitations of current disease models highlight the urgent need for transformative strategies in tissue engineering (TE) and regenerative medicine (RM). Bioprinting has emerged as a powerful approach for creating functional tissues and organs, yet current workflows remain labor-intensive, variable, and challenging to scale. The convergence of artificial intelligence (AI), advanced bioprinting technologies, robotics, biosensing, and cutting-edge biological
Record details
Published: 9 January 2026
Source: OpenAlex
Category: Research
Topics: Jobs & economy · Agents & autonomy · Biotech
Retrieved: 14 July 2026
Related evidence
These records share source-supplied organisations, an exact publisher byline, automatic topics or regions. The reason is shown on every link; related does not mean supporting, agreeing with or verifying this record.
A Self-Evolving Agentic System for Automated Generation and Execution of Biological Protocols
arXiv · 30 June 2026
Multi-agent AI
OpenAlex · 6 February 2026
Real-Time AI Service Economy: A Framework for Agentic Computing Across the Continuum
arXiv · 5 March 2026
THETA: A Textual Hybrid Embedding-based Topic Analysis Framework and AI Scientist Agent for Scalable Computational Social Science
arXiv · 6 March 2026
Agentic AI for Embodied-enhanced Beam Prediction in Low-Altitude Economy Networks
arXiv · 12 March 2026
ELISA: An Interpretable Hybrid Generative AI Agent for Expression-Grounded Discovery in Single-Cell Genomics
arXiv · 12 March 2026
How to cite this record
ethics.ai (9 January 2026), “Self-driving bioprinting laboratories,” evidence record 10015, https://ethics.ai/record/10015 (originally published by OpenAlex).
Use and limitations
This page is a stable index and citation surface for a source record. ethics.ai did not author the underlying report and has not independently verified every claim. Automatic topics may be imperfect. For consequential use, quote and cite the original publisher.