10 citations
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August 2024 in “Chemical Engineering Journal” This study found that a microenvironment-responsive ATAN-Met hydrogel system improved infective diabetic wound healing by enhancing re-epithelialization, neurovascular and hair follicle regeneration, and exhibited antibacterial and immunoregulatory effects, activated beneficial pathways, and responded to glucose/ROS for drug release.
4 citations
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July 2021 in “Journal of dermatology & dermatologic surgery” This review discusses the use of microneedling with a dermaroller for treating acne scars, hair loss, and wrinkles, and reports no new clinical results.
March 2024 in “International Journal of Drug Delivery Technology” This study reviews the potential of electrospun nanofiber mats as innovative drug delivery systems for wound healing, emphasizing their ability to enhance drug release, improve cell adhesion, and promote tissue regeneration by incorporating antibiotics, growth hormones, or stem cells.
April 2024 in “Nano research” This study on androgenetic alopecia in mice introduced a novel therapy combining microneedle patches and cold atmospheric plasma to enhance minoxidil delivery, leading to improved hair regeneration by boosting vascular growth and reshaping the hair follicle microenvironment.
14 citations
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December 2024 in “Pharmaceutics” This review examines hydrogel microneedles for transdermal drug delivery, discussing their applications and challenges but reports no new clinical results.
April 2026 in “BioNanoScience” A new microneedle system may improve hair loss treatment by delivering ketoconazole directly to hair follicles.
February 2026 in “PubMed” This study reported that polysaccharides from Astragalus roots could promote hair regeneration and optimize drug delivery when combined in innovative microneedles, effectively improving hair growth in mice with androgenetic alopecia.
9 citations
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January 2025 in “Droplet” This review explores recent advancements in precise cell manipulation technologies, detailing the status, principles, benefits, limitations, and future potential of methods like single-cell manipulation and 3D bioprinting for cells and tissue engineering.
1 citations
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May 2024 in “Advanced Functional Materials” This study reports that a multifunctional artificial skin using photothermal-triggered drug delivery improved full-thickness wound healing and skin appendage regeneration by coordinating the release of several therapeutic agents.
September 2026 in “Materials Today Bio” This review discusses recent advances in microneedle technology for androgenetic alopecia treatment, focusing on improved follicular delivery and various therapeutic mechanisms, while highlighting challenges in translating preclinical findings to clinical use.
June 2020 in “The journal of investigative dermatology/Journal of investigative dermatology” This study found that low-level pulsed wave red light stimulated collagen and ATP production in human fibroblasts with significantly shorter treatment time than continuous wave light, suggesting enhanced consumer compliance for skin treatments.
19 citations
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December 2022 in “Regenerative Biomaterials” This study found that gelatin–polycaprolactone/silk fibroin composite membranes with line micropatterns enhanced wound healing in rats by promoting cell alignment, angiogenesis, and increased α-SMA production.
5 citations
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April 2024 in “Science China Materials” January 2010 in “USFEU Scientific Library (Ural State Forest Engineering University)” This study developed a grooved microneedle platform enabling precise transdermal delivery of triamcinolone acetonide for alopecia areata, achieving accurate dosing by controlling groove position and drug concentration.
13 citations
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November 2022 in “Biomaterials Science” This study demonstrated that a device combining hyaluronic acid-based dissolving microneedles and lipid polymer hybrid nanoparticles effectively delivered miR-218 to promote hair growth in a shaved mouse model, outperforming topical smear treatment without safety concerns.
November 2023 in “International Journal of Pharmaceutics” This study found that a new transdermal drug delivery system using globefish skin collagen peptides and dissolving microneedles effectively promoted hair regrowth in mice with androgenetic alopecia by reducing inflammation and enhancing vascularization.
January 2026 in “Nature Communications” This study presented a new wearable textile-based device with near-infrared OLEDs that significantly reduced cell aging markers and improved cell migration in vitro, suggesting it as a promising, non-invasive phototherapy option for hair follicle treatment and hair-loss management.
January 2011 in “Junshi yixue” This study found that high-power millimeter wave exposure can cause skin injury in mice, with the severity of damage correlating to the duration of radiation.
January 2019 in “International Journal of Case Reports and Images” This article discusses a combination of photobiomodulation and microneedling as a four-week treatment for male androgenetic alopecia in a case series, but reports no new clinical results.
February 2026 in “Nano Research” In this study, researchers developed a near-infrared-responsive nanoplatform that synergistically enhances chronic wound healing by accelerating mitochondrial restoration and immune modulation, leading to enhanced wound repair and high-quality healing in diabetic rat models.
August 2023 in “Chinese Journal of Dermatology” This review reports that studies from China and elsewhere indicate microneedling, combined with traditional therapies, enhances treatment outcomes for androgenetic alopecia, offering superior efficacy, a shorter treatment period, and improved safety compared to conventional methods.
In a rodent study, a flexible, self-powered triboelectric nanogenerator wound patch combining electrostimulation and photothermal effects was found to efficiently accelerate wound healing and hair follicle regeneration.
3 citations
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January 2023 in “Materials horizons” This study developed 3D micropatterns with magnesium silicate nanospheres that mimic vessels and hair follicles for potential use in skin regeneration by reconstructing vasculature and promoting hair growth.
April 2024 in “Dermatologic surgery” This source does not report specific results or findings, instead it provides details about the affiliation of the researchers and reference details for the publication.
This study developed a novel, 3D-printed dissolving microneedle system for delivering minoxidil to treat hair loss, which showed pH-triggered drug release and enhanced hair regrowth in an alopecia mouse model, offering a potentially sustainable and safe transdermal therapy option.
January 1974 in “Almogaren” This study developed a microdroplet technology to produce cell microspheres that successfully induced hair follicle regeneration in a mouse model, suggesting potential improvements in hair loss treatments.
May 2025 in “International Journal of Biological Macromolecules” In this study, an innovative microneedle platform loaded with IGF-1 and modified collagen was reported to significantly promote hair regeneration, enhance neovascularization, and reduce inflammation in a mouse model of androgenetic alopecia, outperforming the commonly used minoxidil treatment.
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.
66 citations
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August 2007 in “Applied and environmental microbiology” This study engineered a bioluminescent yeast strain responsive to androgenic chemicals, demonstrating rapid and sensitive detection suitable for high-throughput screening and environmental monitoring.