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  References

 

  Skin Anatomy

  Components

  Effects

  Activity

  Oasis

  Acute Wounds

  Burn Injury

  Donor Sites

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  Chronic Wounds

 

 

Biological Activity (Matrix Components) References

 

Hayek B., Collagen synthesis by fibroblasts cultured within a collagen sponge.

Biomaterials 1993: 14; 749-54.

Pilcher B., Collagenase 1 and collagen in epidermal repair.

Arch Dermatol Res 1998: 290; 37-46.

Park S. Biological characterization of EDC-crosslinked collagen hyaluronic acid matrix in dermal tissue reconstruction.  Biomaterials 2003: 24; 1631-41.

Weitzhandler M., Proteoglycan Glyconjugates in wound healing.

C Cohen ed., Saunders Phil. 1992: 195-208.

Posposilov J., Reibelov V., Fibronectin-it’s significance in wound

re-epithelialization.  Acta Chirurgiae Plasticae 1986: 28; 96-102.

Buio M., Toda K., Grinnell F., Activation of human keratincyte migration on type1 collagen and fibronectin.  Journal of Cell Science 1990: 96; 197-205.

Mudera V., Evidence for sequential utilization of fibronectin, vitronectin and collagen during fibroblast mediated collagen contraction.

Wound Repair Regen 2002: 10; 397-408.

Sottile J., Fibronectin polymerization regulates the composition and stability of extracellular matrix fibrils and cell-matrix adhesion.

Mol Biol Cell 2002: 10; 3546-469.

Rothenburger M., Ultrastructure of proteoglycans in tissue engineered cardiovascular structures. Tissue Eng 2002: 8; 1049-56.

Schmidinger G., Effect of tenascin and fibronectin on the migration of human corneal fibroblasts.  J Cataract Refract Surg 2003: 29;  354-60. 

Pieper J., Loading of collagen-heparin sulfate matrices with BFGF promotes angiogenesis and tissue regeneration in rats.

J Biomed Mater Res 2002: 62; 185-94.

Boraldi F., Cell-matrix interactions of in vitro human skin fibroblasts upon addition of hyaluron. Tissue Cell 2003: 35; 37-45.

Kiwaha K., Size control of decorin dermatan sulfate during remodeling of collagen fibrils in healing skin.  J Dermatol Sci 2002: 29; 185-94.

Varga J., Stimulation of normal human fibroblasts collagen production and processing by transforming growth factor beta. Biochem Biophsy Res Comm 1986: 138; 974-80.

Robson M., The future of recombinant growth factors in wound healing.

Am J Surg 1998: 176; 80-82

Lemat A., Therapy with growth factors. Curr Probl Dermatol 1999: 27; 49-56.

Kunimote B., Growth factors in wound healing: the next great innovation.

Ostomy Wound Manage 1999: 8; 56-64.

Marks M., Effect of fibroblasts and basic fibroblast growth factor on facilitation of dermal wound healing by type 1 collagen matrices.

J Biomed Mater Res 1991: 25; 683-96.

Noble P., Hyaluron and its catabolic products in tissue injury and repair.

Matrix Biology 2002: 21; 25-29.

Chen W., Functions of hyaluron in wound repair.

Wound Rep Regen 1999: 7; 79-89.

Bennett S., Growth factors in the treatment of diabetic foot ulcers.

Br J Surg 2003: 90; 133-46.

 

Schessel F., The Management of the podt-operative disrupted abdominal wall. 

Am J Sung 2002: 184; 263-8.

 

Cohen M., Reconstruction of infected median sternotomy wounds.

Arch Surg 1987: 323-7.

 

Ramasastry S., Surgical management of difficult wounds of the groin.

Surg Gynecol Obstet 1989: 169; 418-22.

 

Adedeji O., Porcine dermal collagen graft in abdominal wall reconstruction.

Br J Plast Surg 2002: 55; 80-6.

 

Gabriel S., Complications leading to surgery after breast implantation.

N Engl J Med 1997: 336; 718-9.

 

OASIS (Matrix)

 

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