This article provides a complete resource for researchers, scientists, and drug development professionals on the critical process of antibiotic selection in cell culture.
This article explores the transformative role of automation and artificial intelligence in organoid culture and analysis, a critical advancement for researchers and drug development professionals.
Central necrosis poses a major bottleneck in the long-term culture of brain organoids, limiting their utility for modeling neurodevelopment and disease.
This article explores the transformative potential of organoids-on-chips technology, an innovative platform that integrates self-assembling 3D organoids with microfluidic systems.
Organoid technology has revolutionized biomedical research by providing physiologically relevant human models.
This article provides a comprehensive analysis of the latest breakthroughs and methodologies in organoid vascularization, a critical challenge limiting the physiological relevance and translational potential of 3D tissue models.
This article provides a comprehensive overview of high-throughput drug screening using patient-derived organoids (PDOs), a transformative technology in oncology and drug discovery.
This article provides a comprehensive overview of the establishment, application, and validation of co-culture systems combining organoids with fibroblasts.
Organoid technology has revolutionized biomedical research by providing three-dimensional models that mimic human organ physiology.
This article provides a comprehensive guide to Matrigel-based 3D organoid culture, a transformative technology that bridges the gap between traditional 2D cell cultures and in vivo physiology.