摘要:
A system for qualifying cells of a cell sample labeled with a magnetic or magnetizable moiety is provided. The system includes a cell sample holder for holding a cell of the cells and a first cell analyzer which includes a magnetic field source for applying a magnetic field to the cell and a sensor for qualifying and/or quantifying an effect of the magnetic field on the cell.
摘要:
The invention relates to methods of isolating and implanting mesenchymal stem cells for tissue repair or formation, without prior culture expansion of the mesenchymal stem cells. In particular, the invention relates to methods of isolating mesenchymal stem cells from bone marrow, for repairing or inducing formation of bone, without prior culture expansion of the mesenchymal stem cells. The invention further relates to an isolated, non-culturally expanded human adult mesenchymal stem cell population.
摘要:
Provided are fibrin or silk matrices comprising an oxygen carrier, and matrices, which comprise an oxygen carrier and mesenchymal stem cells. Also provided are methods of generating and using same for ex vivo or in vivo tissue regeneration and/or repair such as for treating a non-union bone fracture and a condition requiring spinal fusion.
摘要:
A system for qualifying cells of a cell sample labeled with a magnetic or magnetizable moiety is provided. The system includes a cell sample holder for holding a cell of the cells and a first cell analyzer which includes a magnetic field source for applying a magnetic field to the cell and a sensor for qualifying and/or quantifying an effect of the magnetic field on the cell.
摘要:
The invention relates to methods of isolating and implanting mesenchymal stem cells for tissue repair or formation, without prior culture expansion of the mesenchymal stem cells. In particular, the invention relates to methods of isolating mesenchymal stem cells from bone marrow, for repairing or inducing formation of bone, without prior culture expansion of the mesenchymal stem cells. The invention further relates to an isolated, non-culurally expanded human adult mesenchymal stem cell population.
摘要:
An improved composition for inducing bone growth is provided that is a combination of at least DBM and an oxygen carrier. Injection/implantation of a composition of DBM and an oxygen carrier (e.g. a perfluorocarbon) results in enhancement of bone formation compared to DBM alone.
摘要:
A system for qualifying cells of a cell sample labeled with a magnetic or magnetizable moiety is provided. The system includes a cell sample holder for holding a cell of the cells and a first cell analyzer which includes a magnetic field source for applying a magnetic field to the cell and a sensor for qualifying and/or quantifying an effect of the magnetic field on the cell.
摘要:
The invention relates to methods of isolating and implanting mesenchymal stem cells for tissue repair or formation, without prior culture expansion of the mesenchymal stem cells. In particular, the invention relates to methods of isolating mesenchymal stem cells from bone marrow, for repairing or inducing formation of bone, without prior culture expansion of the mesenchymal stem cells. The invention further relates to an isolated, non-culurally expanded human adult mesenchymal stem cell population.
摘要:
A method of generating bone or connective tissue in a subject in need thereof, the method comprising: (a) implanting a scaffold in a damaged region of the subject, the scaffold comprising a tissue growth promoting agent; and (b) enhancing uptake of the tissue growth promoting agent into cells located on the scaffold, wherein the enhancing is effected by induced poration of the cells thereby generating bone or connective tissue in the subject. Kits for generating bone or connective tissue are also provided.
摘要:
Provided are fibrin or silk matrices comprising an oxygen carrier, and matrices, which comprise an oxygen carrier and mesenchymal stem cells. Also provided are methods of generating and using same for ex vivo or in vivo tissue regeneration and/or repair such as for treating a non-union bone fracture and a condition requiring spinal fusion.