41 citations
,
October 2024 in “Nature Communications” In this study, researchers developed a wearable red and blue LED patch and a sprayable fibrin gel to treat infected wounds at home, demonstrating effective infection control and enhanced wound healing in diabetic mice and minipigs.
January 2026 in “American Journal of Medical and Clinical Research & Reviews” The study discusses using red light therapy for hair regrowth, noting red light alone may aid non-inflammatory hair loss, while infrared-red light combination is necessary for conditions like alopecia areata.
24 citations
,
March 2015 in “Dermatologic Surgery” This review discusses the modest efficacy of home-use laser and light devices for conditions like hair removal and acne, noting limited evidence and a lack of robust trials.
11 citations
,
April 2021 in “Journal of Clinical Medicine” This study found that long-term use of a home-use LED device for neck skin rejuvenation significantly improved wrinkle appearance and skin biophysical parameters without affecting thyroid function or morphology after 16 weeks of daily use.
2 citations
,
May 2010 in “Actas Dermo-Sifiliográficas” This article reviews home-use laser and intense pulsed light systems for hair removal and growth, noting limited efficacy and safety data and emphasizing the need for long-term studies.
January 2026 in “Forum Dermatologicum” This review concluded that LED-based photobiomodulation is generally safe and effective for certain dermatologic conditions, though consumer devices often show less efficacy compared to professional systems.
November 2025 in “Indian Journal of Dermatology” This research guide explores the diverse types, functions, benefits, and considerations of home-based dermatology devices, emphasizing their convenience, cost-effectiveness, and privacy benefits, while also warning of potential risks like improper use and limited effectiveness compared to professional treatments.
9 citations
,
May 2021 in “Archives of Dermatological Research” This study concluded that while home-based intense pulsed light, laser diodes, radiofrequency, and light-emitting diode devices are recommended for certain skin conditions, ultraviolet B phototherapy for psoriasis showed mixed evidence compared to clinic treatments.
4 citations
,
January 2011 in “Current problems in dermatology” This article reviews the growing trend of at-home laser and light devices for treating conditions like acne, hair removal, and psoriasis, emphasizing their popularity and the need for cautious use but reports no new clinical results.
1 citations
,
March 2024 in “Brain Imaging and Stimulation” This study reported that a 3D-printed LED photobiomodulation device is technically and financially feasible, but requires further experimental and clinical testing before being used in human healthcare.
5 citations
,
October 2023 in “International Wound Journal” In this study, a novel portable LED device significantly accelerated wound healing in rats, with faster wound closure, increased collagen deposition, and more microvessels at a higher radiation intensity, suggesting its potential for innovative wound management.
April 2023 in “Journal of Investigative Dermatology” In this study, several photobiomodulation devices showed statistically significant improvement in hair growth for patients with androgenetic alopecia, with varying efficacy between devices and genders.
January 2014 in “프로그램북(구 초록집)” This review discusses various light and laser treatments for hair loss, highlighting potential benefits but emphasizes the need for more scientific evidence before recommendations can be made.
1 citations
,
March 2006 in “Dermatologic Surgery” This study found that using polarized magnification during hair transplant procedures may ease recipient site creation and reduce transection of existing hair follicles, potentially maximizing hair density.
This study found that in-person photobiomodulation treatments improved hair growth in men and some women with androgenetic alopecia, except for the laser band and combination laser/LED helmet in women.
31 citations
,
June 2018 in “Dermatologic Surgery” In this randomized, double-blind trial, researchers observed that low-level laser therapy led to significantly greater hair regrowth on treated areas compared to a sham treatment in patients with androgenetic alopecia over 24 weeks, suggesting it as a potentially effective and safe option.
December 2025 in “Aesthetic Plastic Surgery” This study reported that the new near-infrared LED device showed significant improvements in skin rejuvenation and a slight increase in hair growth, with further research recommended for broader validation.
April 2018 in “The journal of investigative dermatology/Journal of investigative dermatology” This study found that using a commercially available IPL home-use device led to significant hair reduction and demonstrated long-term efficacy in maintaining hair reduction one year after treatment.
10 citations
,
November 2019 in “Journal of Dermatological Treatment” This study revealed that photobiomodulation significantly improved hair density in androgenetic alopecia patients, with laser treatments being more effective than combined laser/LED treatments, while device style did not significantly affect outcomes.
The researchers developed a new follicular unit extraction system with adjustable needle lengths and precise rotation speed, which they report as being superior to existing systems for non-incisional hair transplants.
6 citations
,
September 2022 in “Journal of Clinical Medicine” This study reported that micro-needling with Low-Level LED Therapy and Growth Factors may improve hair density in mild-to-moderate hair loss and telogen effluvium related to COVID-19, based on preliminary observations.
19 citations
,
September 2011 in “Seminars in Cutaneous Medicine and Surgery” This review discusses home-use laser and light skin devices for various dermatological purposes and reports no new clinical findings; the authors highlight the need for dermatologists to evaluate these devices' clinical value.
81 citations
,
August 2014 in “Lasers in Surgery and Medicine” This study found that low-level laser therapy significantly increased hair growth in women with androgenic alopecia, achieving a 37% greater increase in hair counts compared to placebo.
5 citations
,
September 2005 in “Dermatologic Surgery” This study reports that using LED polarized magnification in hair transplant recipient sites can reduce eye strain and improve ease of site creation, but offers no graft placement advantage over traditional methods.
131 citations
,
May 2015 in “Experimental Dermatology” This review explores the development and cosmeceutical applications of microneedles for skin treatment, without reporting new clinical results, emphasizing safety and public perception as key factors for commercialization.
23 citations
,
June 2021 in “Lasers in Medical Science” In this study, blue light therapy at a specific wavelength increased hair density and shaft width in 90% of patients with androgenetic alopecia after 10 weeks.
12 citations
,
April 2020 in “Facial Plastic Surgery Clinics of North America” This study reviews advancements in hair restoration surgery, noting that follicular unit excision significantly improves outcomes by enabling graft harvesting without scarring and reporting a graft transection rate under 4% when conducted with advanced equipment.
This study found that home use of low-level light therapy reduced inflammation and symptoms like itching and burning in women with frontal fibrosing alopecia over six months.
7 citations
,
December 2017 in “Open Access Macedonian Journal of Medical Sciences” This abstract outlines the historical development and medical validation of artificial hair implants, particularly the approval and improvement of the Biofibre® implant technique in Europe and Australia, and highlights its advantages as the latest advancement in hair restoration treatments.
1 citations
,
February 2026 in “ACS Omega” This review highlights the potential of self-powered nanogenerators in revolutionizing biomedical devices by using biomechanical or environmental energy, focusing on applications like regenerative hair growth, drug release patches, and electronic skin while evaluating challenges such as energy efficiency and biocompatibility.