Nova Patents
EP1474085A2

In situ bonds

Abstract

This record has no abstract on file.

Term

Term ended

Projected expiry passed 5 December 2022, 3.8 years ago.

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39 claims: 7 independent, 32 dependent

  1. 1
    Claims of equivalent WO 03049637 A2 I Claim:1. A biocompatible tissue-bonding adhesive composition comprising: a polyol of functionality N, wherein said polyol being terminated with at least one polyisocyanate in solution with at least (N-l)% of said solution comprising free polyisocyanate.
  2. 15
    A biocompatible adhesive composition comprising of at least two branched polyols of functionality 1.5-8, said polyols being terminated with at least one polyisocyanate in solution with at least 1% of said solution comprising free polyisocyanate.
  3. 31
    A method for covalent bonding of tissue, which comprises:applying to said tissue a 1-part surgical adhesive consisting essentially of at least one NCO-terminated branched polymer, derived from at least one organic polyisocyanate and at least 1% unreacted polyisocyanate wherein the polymerization proceeds by the following time-ordered steps: 1) free polyisocyanate bonds to tissue, 2) said free polyisocyanate converts to a polyamine and links said NCO- terminated branched polymer to said tissue bonded polyisocyanate;3) said free polyisocyanate converts to polyamine and links said branched polymer to other said same polymers.
  4. 33
    A method for covalent bonding of tissue, which comprises:applying to said tissue a 1-part surgical adhesive consisting essentially of a NCO-terminated branched polymer, derived from an organic polyisocyanate A and at least 1% unreacted polyisocyanate B wherein polyisocyanate B is more reactive with amine groups than polyisocyanate A and wherein the polymerization proceeds by the following time-ordered steps: 1) polyisocyanate B bonds to tissue, 2) said free polyisocyanate B converts to a polyamine and links said polyisocyanate A-terminated branched polymer to said tissue bonded polyisocyanate B, 3) said free polyisocyanate B converts to polyamine and links said branched polymer to other said same polymers.
  5. 35
    A method for covalent bonding of tissue, which comprises:applying thereto a 1-part surgical adhesive consisting essentially of a NCO- terminated branched polymer, derived from an aromatic polyisocyanate A and at least 1 % unreacted polyisocyanate A and a NCO-terminated branched polymer, derived from an aliphatic polyisocyanate B, wherein the polymerization proceeds by the following time-ordered steps: 1 ) polyisocyanate A bonds to tissue, 2) said free polyisocyanate A converts to a polyamine and links said polyisocyanate A-terminated branched polymer to said tissue bonded polyisocyanate A, 3) said free polyisocyanate A converts to polyamine and links said polyisocyanate A terminated branched polymers to other said polyisocyanate A terminated branched polymers, 4) said free polyisocyanate A converts to polyamine and links to polyisocyanate B terminated branched polymers.
  6. 38
    A method for covalent bonding of tissue, which comprises:applying thereto a 1-part surgical adhesive consisting of two NCO-terminated branched polypropylene/poly-ethylene oxide copolymers, wherein copolymer A is at most 10%) polypropylene oxide and copolymer B is between 10% and 30% polypropylene oxide, derived from an organic polyisocyanate and at least 1 % unreacted polyisocyanate wherein the polymerization proceeds by the following time- ordered steps: 1) free polyisocyanate bonds to tissue, 2) said free polyisocyanate converts to a polyamine and links both polypropylene/polyethylene oxide copolymers to said tissue bonded polyisocyanate, 3) said free polyisocyanate converts to polyamine and links said branched polypro-pylene/polyethylene oxide copolymers to other said same polymers, and 4) polymerized copolymer A swells within the formed polymer matrix and causes degradation of the formed matrix.
  7. 39
    A method for covalent bonding of tissue, which comprises:applying thereto a 1-part surgical adhesive consisting of two NCO-terminated branched polypropylene/poly-ethylene oxide copolymers, wherein copolymer A is at most 10% polypropylene oxide and copolymer B is between 10% and 30% polypropylene oxide, wherein copolymer A is substantially more viscous than copolymer B, derived from an organic polyisocyanate and at least 1% unreacted polyisocyanate wherein the polymerization proceeds by the following time-ordered steps: 1) free polyisocyanate bonds to tissue, 2) said free polyisocyanate converts to a polyamine and links copolymer B preferentially to said tissue bonded polyisocyanate, 3) said free polyisocyanate converts to polyamine and links said branched polypropylene/polyethylene oxide copolymers to other said same polymers, 4) polymerized copolymer A swells within the formed polymer matrix and causes degradation of the formed matrix, and 5) polymerized copolymer B does not swell at the tissue/matrix interface and does not cause tissue bond degradation.