The Wound Healing Effect of Nanoclay, Collagen, and Tadalafil in Diabetic Rats: An In Vivo Study

Author:

Ordeghan Allahyar Noori1,Khayatan Danial2ORCID,Saki Mohammad Reza1,Alam Mostafa3,Abbasi Kamyar4,Shirvani Hossein1,Yazdanian Mohsen56ORCID,Soufdoost Reza Sayyad7,Raad Haidar Taimouri56,Karami Ali56,Tebyaniyan Hamid8ORCID

Affiliation:

1. Exercise Physiology Research Center, Life Style Institute, Baqiyatallah University of Medical Sciences, Tehran, Iran

2. Faculty of Pharmacy, Tehran Medical Sciences, Islamic Azad University, Tehran, Iran

3. Department of Oral and Maxillofacial Surgery, School of Dentistry, Shahid Beheshti University of Medical Sciences, Tehran, Iran

4. Department of Prosthodontics, School of Dentistry, Shahid Beheshti University of Medical Sciences, Tehran, Iran

5. Research Center for Prevention of Oral and Dental Diseases, Baqiyatallah University of Medical Sciences, Tehran, Iran

6. School of Dentistry, Baqiyatallah University of Medical Sciences, Tehran, Iran

7. Imam Khomeini Clinic of Dentistry, Tehran, Iran

8. Islamic Azad University, Science and Research Branch, Tehran, Iran

Abstract

The diabetic wound is the most challenging one to manage, which is associated with microvascular and macrovascular dysfunction, and novel strategies such as using hydrogels demonstrate their promising prospect in treatment and management approaches of the diabetic wound. This study aimed to investigate the effect of collagen/nanoclay/tadalafil hydrogel on wound healing in diabetic rats under HIIT exercise. Hydrogel was synthesized, and then biocompatibility and antibacterial tests were performed. The therapeutic effect of collagen/nanoclay/tadalafil hydrogel was assessed after induction of diabetes in the rat model, and wound healing was evaluated with macroscopic and microscopic tests. The result of the MTT test showed no significant cytotoxicity of collagen/nanoclay/tadalafil hydrogel. Furthermore, the inhibitory effect of hydrogel was detected on E. coli and S. aureus. The macroscopic results demonstrated that the wound contraction was considerable in the hydrogel/HIIT exercise and hydrogel groups compared with the HIIT exercise and control groups during 21 days. The microscopic results showed that the presence of fibroblasts, the amount of collagen, the epidermis density, and the formation of hair follicles were increased in the hydrogel/HIIT exercise group compared with other groups in the diabetic rate model. It can be concluded that collagen/nanoclay/tadalafil hydrogel with HIIT exercise could accelerate diabetic wound healing and can be an appropriate candidate for skin regeneration in medical applications.

Publisher

Hindawi Limited

Subject

General Engineering,General Materials Science

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