DEMINERALIZED BONE FIBERS AND PREPARATION THEREOF
The present invention provides demineralized bone fibers exhibiting optimal handling properties (e.g., high moldability and low elastic modulus) and biological activities (e.g., osteoinductivity) as well as non-demineralized bone fibers useful for preparing the demineralized bone fibers. A well-controlled demineralization process for preparing the demineralized bone of fibers is also provided. Products comprising the demineralized bone fibers and uses thereof are further provided.
1 . A method for preparing a demineralized bone graft, wherein the demineralized bone graft has a residual calcium content of less than 6 wt % based on the dry weight of the demineralized bone graft, comprising subjecting a non-demineralized bone graft to a single incubation in an acid solution for no more than 300 seconds, wherein the acid solution has a pH of 0-4.
2 . The method of claim 1 , wherein the non-demineralized bone graft comprises bone fibers, bone particles, bone sheets, bone cubes, bone shafts, or a combination thereof.
3 . The method of claim 1 , wherein the non-demineralized bone graft comprises non-demineralized bone fibers, and wherein the demineralized bone graft comprises demineralized bone fibers.
4 . The method of claim 3 , wherein the demineralized bone fibers are osteoinductive.
5 . The method of claim 3 , wherein the non-demineralized bone fibers have an average shortest dimension of less than 200 μm.
6 . The method of claim 3 , wherein the demineralized bone fibers have an elastic modulus of less than 100.00 kPa.
7 . The method of claim 3 , further comprising adding an effective amount of a buffer to the acid solution after the single incubation.
8 . The method of claim 7 , wherein the pH of the resulting solution is adjusted to 2.5-7 within 90 seconds after the addition of the buffer.
9 . A composition comprising the demineralized bone fibers produced by the method of claim 3 .
10 . A composition comprising demineralized bone fibers having a residual calcium content of less than 6 wt % based on the dry weight of the demineralized bone fibers, wherein the demineralized bone fibers are osteoinductive, and wherein the demineralized bone fibers have an elastic modulus of less than 100.00 kPa.
11 . An implant comprising the composition of claim 9 .
12 . A package comprising the composition of claim 9 .
13 . A method for promoting osteoinductivity, osteoconductivity, chondroinductivity, chondroconductivity, or fibrochondral differentiation in entheses, comprising incubating cells with an effective amount of the composition of claim 9 .
14 . A method for promoting cell attachment, proliferation, maintaining a differentiation state or preventing de-differentiation of cells, comprising incubating cells with an effective amount of the composition of claim 9 .
15 . A method for promoting osteogenesis, chondrogenesis, or fibrocartilage tissue genesis in cells, comprising incubating the cells with an effective amount of the composition of claim 9 .
16 . A method for treating a tissue or organ defect in a subject, comprising applying to the site of the defect an effective amount of the composition of claim 9 .
17 . A composition comprising demineralized bone fibers having a residual calcium content of between 0.5-6 wt % based on the dry weight of the demineralized bone fibers, wherein the demineralized bone fibers are osteoinductive.
18 . The composition of claim 17 , wherein the demineralized bone fibers have an average shortest dimension of less than 200 μm.
19 . The composition of claim 17 , wherein the demineralized bone fibers have a specific surface area of at least 100 cm 2 /g.
20 . The composition of claim 17 , wherein the demineralized bone fibers have an elastic modulus of less than 100 kPa.