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As a journalist, you can create a free Muck Rack account to customize your profile, list your contact preferences, and upload a portfolio of your best work.Articles
An Intelligent Magneto‐Mechanical Platform for Cellular Sensing in 3D Microenvironments
1 Introduction Quantifying the dynamic behaviors of cells within 3D microenvironments over extended timescales is fundamental to understanding biological processes such as cancer invasion, drug resistance, and tissue morphogenesis [1, 2]. Advanced in vitro cancer cell screening platforms enable reduced drug development timelines and costs, coupled with improved reliability in predicting therapeutic efficacy and toxicological profiles [3, 4].
Analysis of Personalized Cardiovascular Drug Therapy: From Monitoring Technologies to Data Integration and Future Perspectives
All articles published by MDPI are made immediately available worldwide under an open access license. No special permission is required to reuse all or part of the article published by MDPI, including figures and tables. For articles published under an open access Creative Common CC BY license, any part of the article may be reused without permission provided that the original article is clearly cited. For more information, please refer to https://www.mdpi.com/openaccess.
Advancing Cellular Transfer Printing: Achieving Bioadhesion-Free Deposition via Vibration Microstreaming
Advancing Cellular Transfer Printing: Achieving Bioadhesion-Free Deposition via Vibration Microstreaming Cell transfer printing plays an essential role in biomedical research and clinical diagnostics. Traditional bioadhesion-based methods often necessitate complex surface modifications and offer limited control over the quantity of transferred cells. There is a critical need for a modification-free, non-labeling, and high-throughput cell transfer printing technique.
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