A Synergistic Approach to Remodeling of Photodamaegd Skin: Exploring Laser-Assisted Biostimulator Delivery
NCT: NCT07680426 · NOT_YET_RECRUITING
Brief Summary
Photodamaged skin increases the risk of skin cancer, highlighting the need for preventive treatments. Laser-assisted drug delivery (LADD) using ablative fractional lasers (AFL) enhances topical drug delivery and has proven safe and effective. Integrating non-invasive optical imaging techniques with transcriptomic gene expression profiling enables evaluation of the response of different skin layers to such interventions. It is hypothesized that AFL-assisted delivery of biostimulators exerts synergistic regenerative effects on photodamaged skin, resulting in superior clinical, molecular, and morphological improvements, as well as enhanced epidermal and dermal remodeling, compared with either monotherapy alone. The study aims to provide an in-depth understanding of the individual and combined effects of AFL and biostimulators on the regeneration of photodamaged skin through clinical assessments, non-invasive imaging, and transcriptomic analysis.
Frequently Asked Questions
What is A Synergistic Approach to Remodeling of Photodamaegd Skin: Exploring Laser-Assisted Biostimulator Delivery?
A Synergistic Approach to Remodeling of Photodamaegd Skin: Exploring Laser-Assisted Biostimulator Delivery is a clinical trial registered under NCT07680426. Current status: NOT_YET_RECRUITING.
What is the status of NCT07680426?
The current status of NCT07680426 (A Synergistic Approach to Remodeling of Photodamaegd Skin: Exploring Laser-Assisted Biostimulator Delivery) is: NOT_YET_RECRUITING.
When did A Synergistic Approach to Remodeling of Photodamaegd Skin: Exploring Laser-Assisted Biostimulator Delivery start?
A Synergistic Approach to Remodeling of Photodamaegd Skin: Exploring Laser-Assisted Biostimulator Delivery started on 2026-09-01.
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Official Source
View on ClinicalTrials.gov →Data sourced from ClinicalTrials.gov API. For the most current status, refer to the official record.