A61L27/22

Compounds for inducing tissue formation and uses thereof
11578110 · 2023-02-14 · ·

The present disclosure provides peptides, or variants or analogs thereof, with between 8 and 30 amino acids, having growth factor receptor-binding capability, wherein the RMSD value of the structure coordinates of said peptide, variant or analog thereof with respect to PEPREF is 2.45 Å (Angstroms) or less.

Bioengineered vascular network

Provided herein is technology relating to engineered tissues and particularly, but not exclusively, to methods, compositions, and systems for engineering a biosynthetic vascular network.

Biocompatible Material
20230039698 · 2023-02-09 ·

The present invention provides a composition comprising a polymer and a natural or synthetic peptide or protein (NSPP). The composition forms a hydrogel with water. The composition is useful as a filler for cosmetic and therapeutic applications. Embodiments of the invention provide methods of treating certain conditions using the composition or hydrogel, and surgical kits for the simultaneous or sequential administration of the respective components of the composition, enabling the formation of the hydrogel in situ.

Biocompatible Material
20230039698 · 2023-02-09 ·

The present invention provides a composition comprising a polymer and a natural or synthetic peptide or protein (NSPP). The composition forms a hydrogel with water. The composition is useful as a filler for cosmetic and therapeutic applications. Embodiments of the invention provide methods of treating certain conditions using the composition or hydrogel, and surgical kits for the simultaneous or sequential administration of the respective components of the composition, enabling the formation of the hydrogel in situ.

HISTATIN-1 FORMULATION FOR THE TREATMENT, REPAIR OR REGENERATION OF BONE TISSUE IN A SUBJECT

The present invention relates to a formulation or composition for the treatment, repair, formation or regeneration of bone tissue in a subject, comprising Histatin-1 or its derivatives. The present invention also relates to a biomaterial comprising Histatin-1 or its derivatives in a biocompatible material, and a method for the treatment, repair, formation or regeneration of bone tissues in a subject comprising administering to the subject a therapeutically effective amount of Histatin-1 or its derivatives.

HISTATIN-1 FORMULATION FOR THE TREATMENT, REPAIR OR REGENERATION OF BONE TISSUE IN A SUBJECT

The present invention relates to a formulation or composition for the treatment, repair, formation or regeneration of bone tissue in a subject, comprising Histatin-1 or its derivatives. The present invention also relates to a biomaterial comprising Histatin-1 or its derivatives in a biocompatible material, and a method for the treatment, repair, formation or regeneration of bone tissues in a subject comprising administering to the subject a therapeutically effective amount of Histatin-1 or its derivatives.

BONE TISSUE ENGINEERING BY EX VIVO STEM CELLS ONGROWTH INTO THREE-DIMENSIONAL TRABECULAR METAL
20180008747 · 2018-01-11 ·

Adult autologous stem cells cultured on a porous, three-dimensional tissue scaffold-implant for bone regeneration by the use of a hyaluronan and/or dexamethasone to accelerate bone healing alone or in combination with recombinant growth factors or transfected osteogenic genes. The scaffold-implant may be machined into a custom-shaped three-dimensional cell culture system for support of cell growth, reservoir for peptides, recombinant growth factors, cytokines and antineoplastic drugs in the presence of a hyaluronan and/or dexamethasone alone or in combination with growth factors or transfected osteogenic genes, to be assembled ex vivo in a tissue incubator for implantation into bone tissue.

BONE TISSUE ENGINEERING BY EX VIVO STEM CELLS ONGROWTH INTO THREE-DIMENSIONAL TRABECULAR METAL
20180008747 · 2018-01-11 ·

Adult autologous stem cells cultured on a porous, three-dimensional tissue scaffold-implant for bone regeneration by the use of a hyaluronan and/or dexamethasone to accelerate bone healing alone or in combination with recombinant growth factors or transfected osteogenic genes. The scaffold-implant may be machined into a custom-shaped three-dimensional cell culture system for support of cell growth, reservoir for peptides, recombinant growth factors, cytokines and antineoplastic drugs in the presence of a hyaluronan and/or dexamethasone alone or in combination with growth factors or transfected osteogenic genes, to be assembled ex vivo in a tissue incubator for implantation into bone tissue.

STACKED TISSUE ENCAPSULATION DEVICE SYSTEMS WITH OR WITHOUT OXYGEN DELIVERY
20230000612 · 2023-01-05 ·

Systems featuring two or more encapsulation devices stacked together. The encapsulation devices house cells, such as but not limited to islet cells or stem cell derived beta cells or the like. e.g., for regulating blood glucose, or other cells or spheroids that can produce and release a therapeutic agent that is useful in the body, etc. The system may feature oxygen delivery, or in some cases no exogenous oxygen is delivered and vascularization of the device can help provide oxygen and other needed nutrient to the cells. The system of the present invention may be used in conjunction with other therapies such as an artificial pancreas. Stacking the devices with blood vessel formation around and in between them may allow for a decrease in the footprint that would be needed for implantation.

COMPOSITIONS AND METHODS FOR AUGMENTING AUTOLOGOUS FAT GRAFTS

Described herein are compositions and method for autologous adipose tissue grafting. In one embodiment, the composition comprises a recombinant partially ordered polypeptide (Fractomer) or “Fractomer” and adipose tissue from a subject. In one aspect, the Fractomer has the general structure of [(GXGVP).sub.n-α-helix].sub.m, where X can be any amino acid except proline and α-helix is any polyalanine based α-helix having about 5 to 50 Alanine residues. In another aspect, the Fractomer has the structure [(GXGVP).sub.n-GX.sup.1(A).sub.25X.sup.1].sub.m; where X is A or V; X.sup.1 is K or D; n is an integer from 10 to 20; and m is an integer from 4 to 8.