COMPOUNDS AND METHODS FOR ALTERING BONE GROWTH
The present invention provides compounds, compositions and methods for promoting bone growth. Compounds useful in the methods of the present invention include the following: wherein R 1 and R 2 are each H or C 1-6 alkyl. X is C 1-6 alkylene. R 3 is H, —OR 4 , —OC(O)R 4 , —OC(O)NR 4 R 5 , —OC(O)OR 4 , —OP(O)(OR 4 ) 2 or —OC(O)(CH 2 ) 2 C(O)OH. R 4 and R 5 are each independently H or C 1-20 alkyl. The compounds also include salts, hydrates and isomers of the compounds.
1 . A method of promoting bone growth in a subject in need thereof, comprising administering to the subject a therapeutically effective amount of a compound of Formula I:
wherein
R 1 and R 2 are each independently a member selected from the group consisting of H and C 1-6 alkyl;
X is C 1-6 alkylene;
R 3 is a member selected from the group consisting of H, —OR 4 , —OC(O)R 4 , —OC(O)NR 4 R 5 , —OC(O)OR 4 , —OP(O)(OR 4 ) 2 and —OC(O)(CH 2 ) 2 C(O)OH;
R 4 and R 5 are each independently a member selected from the group consisting of H and C 1-20 alkyl; and
salts, hydrates and isomers thereof, thereby promoting local bone growth in the subject.
2 . The method of claim 1 , wherein the bone growth is promoted at a site of injury or localized condition.
3 . The method of claim 2 , wherein the bone growth is promoted at a site selected from the group consisting of a bone fracture and weakened bone.
4 . The method of claim 2 , wherein the subject requires a spinal fusion, arthrodesis or an orthopedic or periodontal synthetic bone graft or implant.
5 . The method of claim 2 , further comprising the step of administering to said subject an osteoconductive matrix.
6 . The method of claim 5 , wherein said osteoconductive matrix comprises an osteoinductive agent selected from the group consisting of bone allograft, bone autograft, demineralized bone and periodontal ligament cells.
7 . The method of claim 5 , wherein said osteoconductive matrix comprises a calcium salt, calcium sulfate, calcium phosphate, a calcium phosphate cement, hydroxyapatite, coralline based hydroyxapatite (HA), dicalcium phosphate, tricalcium phosphate (TCP), calcium carbonate, collagen, plaster of Paris, phosphosphoryn, a borosilicate, a biocompatible ceramic, a calcium phosphate ceramic and polytetrafluoroethylene.
8 . The method of claim 1 , wherein the bone growth is systemic.
9 . The method of claim 8 , wherein the subject suffers from a low bone mass phenotype disease.
10 . The method of claim 9 , wherein the low bone mass phenotype disease is selected from the group consisting of osteoporosis, osteopenia, and osteoporosis-pseudoglioma syndrome (OPPG).
11 . The method of claim 1 , wherein the compound is administered in combination with an antiresorptive drug.
12 . The method of claim 11 , wherein the antiresorptive drug is selected from the group consisting of denosumab, a RankL inhibitor, a bisphosphonate, a selective estrogen receptor modulator (SERM), calcitonin, a calcitonin analog, Vitamin D and a Vitamin D analog.
13 . The method of claim 11 , wherein the bone growth is systemic.
14 . The method of claim 11 , wherein the bone growth is promoted by a local application of the compound and the antiresorptive drug.
15 . A method of treating renal damage, comprising administering to a subject in need thereof, a therapeutically effective amount of a compound of Formula I:
wherein
R 1 and R 2 are each independently a member selected from the group consisting of H and C 1-6 alkyl;
X is C 1-6 alkylene;
R 3 is a member selected from the group consisting of H, —OR 4 , —OC(O)R 4 , —OC(O)NR 4 R 5 , —OC(O)OR 4 , —OP(O)(OR 4 ) 2 and —OC(O)(CH 2 ) 2 C(O)OH;
R 4 and R 5 are each independently a member selected from the group consisting of H and C 1-20 alkyl; and
salts, hydrates and isomers thereof, thereby treating renal damage.
16 . An orthopedic or periodontal medical device comprising a structural support, wherein an implantable portion of said structural support is adapted to be permanently implanted within a subject, wherein said implantable portion is attached to a bone, said structural support bearing at least a partial external coating comprising a compound of Formula I:
wherein
R 1 and R 2 are each independently a member selected from the group consisting of H and C 1-6 alkyl;
X is C 1-6 alkylene;
R 3 is a member selected from the group consisting of H,—OR 4 , —OC(O)R 4 , —OC(O)NR 4 R 5 , —OC(O)OR 4 , —OP(O)(OR 4 ) 2 and —OC(O)(CH 2 ) 2 C(O)OH;
R 4 and R 5 are each independently a member selected from the group consisting of H and C 1-20 alkyl; and
salts, hydrates and isomers thereof.
17 . A pharmaceutical composition comprising a pharmaceutically acceptable excipient and a compound of Formula I:
wherein
R 1 and R 2 are each independently a member selected from the group consisting of H and C 1-6 alkyl;
X is C 1-6 alkylene;
R 3 is a member selected from the group consisting of H, —OR 4 , —OC(O)R 4 , —OC(O)NR 4 R 5 , —OC(O)OR 4 , —OP(O)(OR 4 ) 2 and —OC(O)(CH 2 ) 2 C(O)OH;
R 4 and R 5 are each independently a member selected from the group consisting of H and C 1-20 alkyl; and
salts, hydrates and isomers thereof.
18 . The composition of claim 17 , wherein
R 1 and R 2 are each H; and
R 3 is a member selected from the group consisting of —OH, —OMe, —OC(O)Me, —OC(O)NH 2 , —OC(O)NHMe, —OC(O)NMe 2 , —OC(O)OMe, —OP(O)(OH), —OP(O)(OMe)(OH), —OP(O)(OMe) 2 and —OC(O)(CH 2 ) 2 C(O)OH.
19 . The composition of claim 17 , wherein X is —CH 2 CH 2 —.
20 . The composition of claim 19 , wherein R 3 is OR 4 .
21 . The composition of claim 20 , wherein R 3 is OH.
22 . The composition of claim 21 , wherein the compound has the formula: