Chitosan-microencapsulated rhEGF in promoting wound healing

Author:

Tsai Hsin-Chung12,Sheng Christine3,Chang Le-Shin4,Wen Zhi-Hong5,Ho Ching-Yin6,Chen Chuan-Mu278

Affiliation:

1. Department of Surgery, Taichung Hospital, Ministry of Health and Welfare, Taichung, Taiwan

2. Department of Life Sciences, National Chung Hsing University, Taichung, Taiwan

3. Rutgers Honors College, School of Arts and Science, Department of Cell Biology and Neuroscience, New Brunswick, New Jersey, US

4. Department of Research and Development, Joycom Biochem Co., Ltd. Kaohsiung, Taiwan

5. Department of Marine Biotechnology and Resources, National Sun Yat-Sen University, Kaohsiung, Taiwan

6. Department of Otolaryngology, Cheng-Hsin General Hospital, Taipei, Taiwan

7. Taichung Veterans General Hospital, Taichung, Taiwan

8. iEGG and Animal Biotechnology Center, National Chung Hsing University, Taichung, Taiwan

Abstract

Aims: Chitosan and epidermal growth factor (EGF) have been shown to improve wound healing. This study investigates the healing effects of a spray solution (NewEpi, JoyCom Bio-Chem Co. Ltd., Taiwan) containing recombinant human EGF (rhEGF) delivered via a newly patented technology—chitosan microencapsulated nanoparticles. Methods: On Wistar rats, two full-thickness wounds on the dorsum bilateral of the spine were created. The rats were randomised to the following treatment groups: hydrogel, wet dressing, foam, rhEGF spray and rhEGF spray+foam. Sterile dressings were applied and changed daily. A total of 2μg of rhEGF was administered in two sprays during each dressing change. All animals were euthanised on day 14. Tissue samples were taken from the wound bed, including an area of 2cm surrounding the wound margin for histological evaluations. Results: Wounds treated with the rhEGF spray achieved the greatest size reduction by day 14 compared with other types of conventional dressings. An overall significant difference in levels of collagen synthesis existed between groups (p<0.01). Pair-wise comparisons showed that the rhEGF spray treatment significantly promoted higher levels of mature Type I collagen than any other conventional dressings (p<0.01), whereas non-rhEGF treatments resulted in higher levels of Type III collagen. The regenerated tissue in rhEGF spray treatment groups was also in alignment with that of normal skin. Epidermis, dermis and hair follicles were easily observed in wounds treated with the rhEGF spray. Conclusion: The major challenge of topical application of rhEGF was overcome by using a new drug delivery technology: chitosan–rhEGF nanoparticles. The positive healing effects observed in this study suggest the therapeutic potentials of this novel rhEGF topical spray solution.

Publisher

Mark Allen Group

Subject

Nursing (miscellaneous),Fundamentals and skills

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