Browsing by Author "Gregory, Carl A"
Now showing items 1-9 of 9
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Xin, Shangjing (2019-11-13)Therapeutic cell delivery is a major strategy to stimulate the repair in tissue engineering and regenerative medicine. Efficacious cell therapies require a biomaterial carrier to retain injected cells in degenerated sites ...
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Tondon, Abhishek (2015-12-07)Extracellular matrix is a complex network of molecules that accomplishes various roles within each tissue. The mechanical properties and biochemical composition of the extracellular matrix vary considerably across tissues. ...
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Rogers, Robert Eugene (2022-05-05)Bioreactor-mediated expansion of human mesenchymal stem cells (hMSCs) is a promising technique for the generation of hMSCs and their secreted products for immunoregulation therapies at scales required for use in the clinic. ...
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Lin, Yu-Lieh (2022-04-12)Osteoarthritis, the progressive degeneration of articular cartilage, affects more than 200 million people worldwide and represents a major health problem. Current therapeutic strategies to restore the joint function are ...
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Mohammadipoor, Arezoo (2015-08-03)There has been significant interest in the therapeutic potential of the adult stem/progenitor cells from bone marrow called multipotent mesenchymal stromal cells (MSCs). Signals from injured tissues activate MSCs to secrete ...
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Mondragon, Eli (2020-07-13)Engineered bone graft designs have been largely inspired by adult bone despite significant deviation from the composition of anabolic bone. Highly osteogenic extracellular matrix (ECM) secreted by human mesenchymal stem ...
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Zeitouni, Suzanne; Ford, Brian S; Harris, Sean M; Whitney, Mandolin J; Gregory, Carl A; Prockop, Darwin J (BMC Biotechnology, 2008)
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Mota, Sakina Mohammed (2022-01-05)Chronic disorders are leading causes of disability and death, and their high pervasiveness calls for effective treatments leading to a long-term cure. Studies show that stem cell-based therapies can provide successful ...
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Haskell, Andrew William (2022-11-20)Human mesenchymal stem cells (hMSCs) are a promising therapeutic owing to their ability to differentiate into osteogenic, chondrogenic, and adipogenic tissue as well as their immunomodulatory characteristics. These cells, ...