Evaluation of the effectiveness of nano-hydroxyapatite particles in wound healing in an animal study

Author:

Lalehzar Sahar sadat1ORCID,Meamar Rokhsareh2ORCID,Talebi Ardeshir3ORCID,Fesharaki Mehrafarin2

Affiliation:

1. Medical doctor, Department of Orthopedic Surgery, Kashani University Hospital, School of Medicine, Isfahan University of Medical Sciences, Isfahan, Iran

2. Assistant professor, Isfahan Clinical Toxicology Research Center, Isfahan University of Medical Sciences, Isfahan, Iran

3. Associate Professor of Pathology Department of Pathology, School of Medicine Water and Electrolytes Research Center Imam Hossein Children’s Hospital Isfahan University of Medical Sciences

Abstract

Abstract Background The main activity of the skin is to create a protective barrier against damage. Loss of the skin due to injury or disease and failure to regenerate the affected area may result in disability, infection, or even death. We conducted the animal study to Evaluation of the effectiveness of nano-hydroxyapatite particles in wound healing. Method This animal study performed in Isfahan university of medical science animal lab. Experiments were performed on 30 Wistar in 5 groups. Biopsies 5×5mm were obtain of abdominal, and were transferred to the cell culture laboratory into the phosphate buffer saline (PBS). The cell proliferation was determined using the colorimetric MTS assay. The type and approach of this animal study is to create a deep skin wound and try to treat the wound with drug (nano_ hydroxyapatite 10%, nano_hydroxyapatite40%, combination of Nickle ion with nanohydroxyapatite 10%, and 40%) intervention on an animal model of rat. Macroscopic evaluation and pathological examination were done. For pathological and histological examination of the wound, sampling was done on the seventh and fourteenth days after ulcer induction. All continuous and categorical data are presented as mean ± standard deviation (SD) and frequency (percentage), respectively. Paired sample T-test and repeated measure analysis of variance (ANOVA), Chi-squared test was used. Results During this study, MTS assay was carried out to evaluate the proliferation of mice fibroblast on the gelatin without hydroxyapatite, and with 10, 40% hydroxyapatite after1, 2 and 3 days of culture. significant enhancement of cell proliferation was observed in nano HA 10, 40% and nano HA 10% with nickel in comparison when the cells seeded on gelatin and HA 10%. The best result was shown in 24 hours after seeding the cells in gelatin in comparison with 48, and 72 hours. Indeed, after 48 and 72 hours, the cell proliferation on gelatin decreased. In evaluation of Wound area with image j soft ward, the wound area between day 3,7 and 14 of treatment after wound induction there were no significant difference between groups. In microscopic study and analysis for evaluation and comparing wound length with the Michrome camera and Mosaic soft ward, there were no significant relation in time (p1 = 0.77). There is a difference is close to significant between the groups(p2 = 0.065). There was no significant difference between time and group(p3 = 0.323). In day 14 the wound length between groups had significant difference(p4 = 0.049). Conclusion In conclusion, hydroxyapatites and its combination with Nickle ion have significant effect on wound healing and cell proliferation.

Publisher

Research Square Platform LLC

Reference53 articles.

1. Cutaneous wound healing;Singer AJ;New England journal of medicine,1999

2. Wound healing and skin regeneration;Takeo M;Cold Spring Harbor perspectives in medicine,2015

3. Risk adjustment of the postoperative morbidity rate for the comparative assessment of the quality of surgical care: results of the National Veterans Affairs surgical risk study1;Daley J;Journal of the American College of Surgeons,1997

4. Clark RA. The molecular and cellular biology of wound repair: Springer Science & Business Media; 2013.

5. Aloe vera: a medicinal plant used in skin wound healing;Liang J;Tissue Engineering Part B: Reviews,2021

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