CorMatrix Cardiovascular Inc.

Roswell, GA, United States

CorMatrix Cardiovascular Inc.

Roswell, GA, United States

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Patent
CorMatrix Cardiovascular Inc. | Date: 2016-12-21

Cardiovascular prostheses for treating, reconstructing and replacing damaged or diseased cardiovascular tissue that are formed from acellular extracellular matrix (ECM). The cardiovascular prostheses comprise various compositions, such as ECM based compositions, and structures, such as particulate structures, mesh constructs, encasement structures, coated structures and multi-sheet laminate structures.


Patent
CorMatrix Cardiovascular Inc. | Date: 2016-12-21

Cardiovascular prostheses for treating, reconstructing and replacing damaged or diseased cardiovascular tissue that are formed from acellular extracellular matrix (ECM). The cardiovascular prostheses comprise various compositions, such as ECM based compositions, and structures, such as particulate structures, mesh constructs, encasement structures, coated structures and multi-sheet laminate structures.


Patent
CorMatrix Cardiovascular Inc. | Date: 2017-02-01

A bioresorbable skeletal construct member formed from an osteoinductive composition comprising autogenic bone and an extracellular matrix (ECM) material, the construct member being configured to induce osteoanagenesis and angiogenesis when implanted proximate endogenous bone and tissue.


Patent
CorMatrix Cardiovascular Inc. | Date: 2016-03-30

Disclosed herein are compositions and methods for treating or preventing cardiac arrhythmia in a subject. The invention utilizes an extracellular matrix derived from mammalian sources. The extracellular matrix composition can be further comprised of a collagen scaffold. The composition can also include an anti-arrhythmic agent, a lipid-lowering drug, cells, a protein, or a combination thereof.


Patent
CorMatrix Cardiovascular Inc. | Date: 2016-07-11

A prosthetic valve comprising a conical shaped sheet member comprising an extracellular matrix (ECM) composition, the sheet member having a plurality of open slit regions that are disposed uniformly on linear planes that are parallel to the sheet member longitudinal axis, and a proximal annulus engagement end diameter and length ratio in the range of 5:1 to 2:1.


Patent
CorMatrix Cardiovascular Inc. | Date: 2016-07-11

A prosthetic valve comprising a conical shaped sheet member comprising an extracellular matrix (ECM) composition, the sheet member having a plurality of ribbons projecting the sheet member proximal end, the distal ends of the ribbons being positioned proximate each other, wherein the sheet member comprises a conical shape.


Patent
CorMatrix Cardiovascular Inc. | Date: 2016-07-11

A prosthetic valve comprising a conical shaped sheet member comprising an extracellular matrix (ECM) composition, the sheet member having a plurality of open slit regions that are disposed uniformly on linear planes that are parallel to the sheet member longitudinal axis, a proximal annulus engagement end diameter and length ratio in the range of 5:1 to 2:1 and at least one valve leaflet.


Patent
CorMatrix Cardiovascular Inc. | Date: 2016-07-11

A prosthetic valve comprising a plurality of ribbons comprising an extracellular matrix (ECM) composition, the proximal ends of the plurality of ribbons being positioned circumferentially and proximate each other, the distal ends of the plurality of ribbons also being positioned proximate each other, wherein a conical shaped valve member is formed.


Patent
CorMatrix Cardiovascular Inc. | Date: 2016-07-11

A prosthetic valve comprising a conical shaped sheet member comprising an extracellular matrix (ECM) composition and an internal multi-link support stent structure, the sheet member having a plurality of open slit regions that are disposed uniformly on linear planes that are parallel to the sheet member longitudinal axis, and a proximal annulus engagement end diameter and length ratio in the range of 5:1 to 2:1.


Non-antigenic, bioremodelable tissue prostheses that can be engineered into a variety of shapes and used to repair, augment, reconstruct or replace damaged or diseased biological structures and associated tissue.

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