Enhanced skin regeneration and therapeutic delivery using novel diamond‐augmented zinc oxide

Author:

Zhang Xinge Diana1ORCID,Teng Claudia2,Bai Xuefei2ORCID,Teng Joyce3,Chilukuri Suneel45ORCID,Lewis Amy6ORCID,Gold Michael H.7ORCID

Affiliation:

1. School of Applied Sciences and Engineering Harvard University Cambridge Massachusetts USA

2. B.A.I. Biosciences, Inc. Cambridge Massachusetts USA

3. Department of Dermatology Stanford University School of Medicine Stanford California USA

4. Refresh Dermatology Houston Texas USA

5. Department of Medicine Baylor College of Medicine Houston Texas USA

6. Lewis Dermatology New York New York USA

7. Gold Skin Care Center Nashville Tennessee USA

Abstract

AbstractBackgroundRecent advancements in dermatological therapeutics have highlighted the need for treatments that enhance skin regeneration and healing. Diamond‐Augmented Zinc Oxide (ND‐ZnO) technology combines zinc oxide with diamond particles in a unique core‐shell structure, offering a multifaceted approach to overall skin health.AimsThis study evaluates the efficacy of ND‐ZnO in promoting human dermal fibroblast migration and growth, enhancing total collagen synthesis, and improving transdermal delivery of active ingredients as a daily comprehensive skin regeneration topical therapy.Patients/MethodsIn vitro assays assessed wound healing, collagen production, and skin absorption. Human Dermal Fibroblasts (HDFs) were used in scratch wound assays. Collagen synthesis was quantified using enzyme‐linked immunosorbent assays (ELISA). Permeation tests were performed on reconstructed human epidermal tissues to evaluate niacinamide absorption. Clinical case studies validated ND‐ZnO efficacy in post‐CO laser treatments and Actinic Keratosis removal recovery.ResultsND‐ZnO increased HDF migration by 198% compared to controls. Collagen synthesis assays showed a 71.3% restoration of collagen production in aged HDFs. Skin permeation studies revealed a 203% increase in niacinamide skin absorption with ND‐ZnO. Clinical case studies demonstrated faster and more effective healing post‐ablative CO₂ laser and significant improvements in Actinic Keratosis recovery.ConclusionsND‐ZnO technology enhances wound healing, collagen synthesis, and active ingredient delivery, offering substantial benefits for daily skin regeneration and other dermatological applications. This innovative approach holds promise for advancing dermatological therapeutics, providing comprehensive skin care solutions that address both protective and regenerative needs.

Publisher

Wiley

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