iOrganBio, an innovator in intelligent cell manufacturing, today announced the appointment of Lee L. Rubin, Ph.D., to its Scientific Advisory Board. Dr. Rubin is a leading authority in stem cell biology, regenerative medicine, and translational neuroscience, whose research has advanced the understanding of neurodegenerative diseases and contributed to the development of multiple therapeutic candidates. He is Co-Director and Principal Faculty of the Harvard Stem Cell Institute and Professor in Harvard's Department of Stem Cell and Regenerative Biology.
Dr. Rubin's appointment is expected to be key to expanding iOrganBio's platform in neurological applications. His pioneering work spans blood-brain barrier biology, neural stem cell differentiation, disease modeling using patient-derived induced pluripotent stem cells, and the discovery of therapeutic candidates for disorders including Parkinson's disease, amyotrophic lateral sclerosis (ALS), and spinal muscular atrophy (SMA). iOrganBio's CellForge platform combines AI prediction, biological sensing, and automated 3D incubation to engineer human cells and organoids with greater precision and consistency, enabling scalable production for disease modeling, drug discovery, and cell therapy development.
According to the company, the addition of Dr. Rubin to the Scientific Advisory Board will help iOrganBio leverage its technology for neurological research. The company's CellForge platform uses AI and automation to guide cell development and make real-time adjustments aligned with defined biological profiles. At the core of the platform is iOrganBio's functional human CellAtlas, a comprehensive reference built from single-cell and multi-omics data that provides the digital blueprints for each cell type.
To view the full announcement, including downloadable images, bios, and more, click here. iOrganBio is transforming human cell production with CellForge, its AI-powered platform for consistent, scalable, and intelligent manufacturing of cells and organoids for in vitro modeling and cell therapies. By applying engineering precision to biology, the platform delivers the accuracy, efficiency, and quality partners need to turn scientific ideas into breakthroughs, accelerating disease modeling, regenerative medicine, and drug development.
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