Multi-armed catechol compound blends
View Patent ↗The invention describes families of compounds that utilize multihydroxyl phenyl groups to provide adhesive properties. Selection of the multihydroxy phenyl group along with linkers or linking groups and the linkages between the linkers or linking groups with polyalkylene oxides, provides materials that can be engineered to afford controllable curing time, biodegradation and/or swelling.
1. A compound comprising formula (I):
wherein
each DHPD a , DHPD l , DHPD p , independently, can be the same or different;
each L b , L k , and L o is;
each L d , L i and L m represent a bond between an O and PA;
each PA c , PA j and PA n , independently, can be the same or different;
e is a value from 1 to about 3;
f is a value from 1 to about 10;
g is a value from 1 to about 3;
h is a value from 1 to about 10, wherein f+h is a value from 6 to about 20;
each of R 1 , R 2 and R 3 , independently, is a branched or unbranched alkyl group having at least 1 carbon atom;
each PA, independently, is a poly(alkylene oxide) polyether having a molecular weight between about 1,500 and about 5,000 daltons; and
each DHPD, independently, is a dopamine, 3,4-dihydroxyphenylalanine, 3,4-dihydroxyphenyl ethanol or 3,4-dihydroxyhydrocinnamic acid residue.
2. The compound of claim 1 , wherein each PA c , PA j , and PA n is a polyethylene glycol polyether.
3. The compound of claim 1 , wherein each L b , L k , and L o are amide linkages and L d , L i and L m represent ether bonds
4. The compound of claim 1 , wherein e and g each have a value of 1 and f is 4 or 6.
5. The compound of claim 1 , wherein h is 1.
6. The compound of claim 1 , wherein each DHPD a , DHPD l , DHPD p is a 3,4-dihydroxyhydrocinnamic acid residue;
each L d , L i and L m represent ether bonds;
each PA c , PA j , and PA n are polyethylene glycol polyether derivatives comprising a hydroxyl terminal residue, each having a molecular weight of between about 1,500 and about 5,000 daltons;
e is 1;
f is 1;
g is 1; and
h is 6.
7. A compound comprising formula (I):
wherein
each DHPD a , DHPD l , DHPD p is a dihydroxyhydrocinnamic acid residue;
each L b , L k , and L o form amide linkages between a 3,4-dihydroxyhydrocinnamic acid residue and the primary amines of a lysine residue and an ester linkage between a carboxylic acid of said lysine residue and a terminal portion of a polyethylene glycol polyether;
each L b , L k , and L o , independently, can be the same or different;
each of L d , L i , and L m represent ether bonds;
each PA c , PA j , and PA n are polyethylene glycol polyether derivatives comprising a hydroxyl terminal residue, each having a molecular weight of between about 1,500 and about 3,500 daltons;
each PA c , PA j , and PA n , independently, can be the same or different;
wherein e, f and g each have a value of 1; and
h is 6.
8. The compound of claim 7 , wherein each L b , L k , and L o is
9. A compound comprising formula (I):
wherein
each DHPD a , DHPD l , DHPD p is a dihydroxyhydrocinnamic acid residue;
each, L b , L k , and L o , form an ester linkage between a 3,4-dihydroxyhydrocinnamic acid residue and a 3-amino-1,2-propandiol hydroxyl residues and a urethane linkage between an amine of a 3-amino-1,2-propandiol residue and a terminal portion of a polyethylene glycol polyether;
each L b , L k , and L o , independently, can be the same or different;
each of L d , L i , and L m represent ether bonds;
each PA c , PA j , and PA n are polyethylene glycol polyether derivatives comprising a hydroxyl terminal residue, each having a molecular weight of between about 1,500 and about 3,500 daltons;
each PA c , PA j , and PA n , independently, can be the same or different;
wherein e, f and g each have a value of 1; and
h is 6.
10. The compound of claim 9 , wherein each L b , L k , and L o is
11. A compound comprising formula (I):
wherein
each DHPD a , DHPD l , DHPD p is a dopamine residue;
each L b , L k , and L o form a urethane linkage between an amine on a dopamine residue and a terminal portion of a polyethylene glycol polyether;
each L b , L k , and L o , independently, can be the same or different;
each L d , L i , and L m represent ether bonds;
each PA c , PA j , and PA n are polyethylene glycol polyether derivatives comprising a hydroxyl terminal residue, each having a molecular weight of between about 1,500 and about 3,500 daltons;
each PA c , PA j , and PA n , independently, can be the same or different;
wherein e, f and g each have a value of 1; and
h is 6.
12. The compound of claim 11 , wherein each L b , L k , and L o is