Planta Med 2007; 73(12): 1260-1266
DOI: 10.1055/s-2007-990225
Pharmacology
Original Paper
© Georg Thieme Verlag KG Stuttgart · New York

Stabilization of Growth Factors Relevant to Wound Healing by a Plant Cell Wall Biomaterial

Yawei Ni1 , Debra Turner2 , Kenneth Yates1 , 3 , Ian Tizard2
  • 1DelSite Biotechnologies Inc., Irving, Texas, USA
  • 2Department of Veterinary Pathobiology, Texas A&M University, College Station, Texas, USA
  • 3Present address: Department of Pharmaceutical Sciences, College of Pharmacy, Harding University, Searcy, Arkansas, USA
Further Information

Publication History

Received: December 12, 2006 Revised: August 15, 2007

Accepted: August 20, 2007

Publication Date:
24 September 2007 (online)

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Abstract

Stabilization of growth factors in a wound environment is critical to the wound healing process. Here we report on the stabilization of key growth factors by a unique plant cell wall biomaterial. MicroSheets are clear cell wall fragments isolated from the non-living water storage cells in the pulp or inner gel of Aloe vera L., which has widely been used for wound healing. It was found that MicroSheets bind to a subset of heparin binding growth factors including basic fibroblast growth factor (bFGF) and keratinocyte growth factor (KGF), two key growth factors in the wound healing process. The binding of bFGF and KGF to MicroSheets was inhibited by heparin and also by a pectic substance isolated from the MicroSheets, indicating that the binding was mediated by this pectic component of the MicroSheet. The binding protected the growth factors against protease digestion. Furthermore, the protective effect was also demonstrated with KGF against digestion by wound fluids and by measuring the biological activity. Thus, these results showed that MicroSheets can stabilize certain critical growth factors in wounds and thereby promote the healing process. Incorporation of a material like MicroSheets provides an important functional element in wound dressings, i. e., growth factor stabilization.

References

Dr. Yawei Ni

DelSite Biotechnologies Inc

200 Discovery Drive

College Station

Texas 77845

USA

Phone: +1-972-650-7313

Fax: +1-979-845-7087

Email: yni@Delsitebiotech.com