SCLnow® Organ Reconstruction Products
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  • iSCLife®777-SCLnow®Organ Remanufactured

    ISCLife® 777-Organ Reconstruction

    iSCL stem cell® have multidirectional differentiation potentials. They can differentiate into many types of cells.Mesenchyme and stem cells can be used as raw materials.Stem cells are induced to differentiate into specialized cells in vitro. Theoretically, they can be reconstructed into various functional organs by 3D printing technology for transplantation of organ tissues or direct repair of necrotic organ tissues.
  • ISCLife® 777-Organ Reconstruction of stem cell membrane

    ISCLife® 777-Organ Reconstruction of stem cell membrane

    iSCL stem cell® have multidirectional differentiation potentials. They can differentiate into many types of cells.Mesenchyme and stem cells can be used as raw materials.Stem cells are induced to differentiate into specialized cells in vitro. Theoretically, they can be reconstructed into various functional organs by 3D printing technology for transplantation of organ tissues or direct repair of necrotic organ tissues.
  • ISCLife® 777- Organ reconstruction of hepatic progenitor cells

    ISCLife® 777- Organ reconstruction of hepatic progenitor cells

    iSCL stem cell® have multidirectional differentiation potentials. They can differentiate into many types of cells.Mesenchyme and stem cells can be used as raw materials.Stem cells are induced to differentiate into specialized cells in vitro. Theoretically, they can be reconstructed into various functional organs by 3D printing technology for transplantation of organ tissues or direct repair of necrotic organ tissues.
  • ISCLife® 777- Organ reconstruction of nerve cells

    ISCLife® 777- Organ reconstruction of nerve cells

    SCLnow® umbilical cord pluripotent stem cells have multidirectional differentiation potential. They can differentiate into many types of cells.Mesenchyme and stem cells can be used as raw materials.Stem cells are induced to differentiate into specialized cells in vitro. Theoretically, they can be reconstructed into various functional organs by 3D printing technology for transplantation of organ tissues or direct repair of necrotic organ tissues.