1 citations
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April 2022 in “Regenerative Therapy” This study suggests that the GDNF signaling pathway may enhance skin regeneration, as observed in axolotls and Spiny mice, indicating potential for similar processes in humans.
February 2026 in “Plastic and Aesthetic Research” This narrative review examines advancements in regenerative aesthetic medicine, focusing on injectable modalities like PRP, polynucleotides, and exosomes, but highlights the need for more robust evidence and standardization in clinical applications.
February 2026 in “International Journal of Molecular Sciences” In this review, researchers discuss how mitochondria-targeted biophysical priming of autologous biologics, through methods like photobiomodulation and ultrasound, can potentially enhance skin rejuvenation and wound repair by modulating mitochondrial function in skin cells.
In this research presented at the BEYOND Biohacking Conference 2026, a regenerative skincare serum using plant-derived Consortia Factors® showed significant age spot lightening and improvements in skin smoothness, firmness, and radiance over eight weeks in a study with 35 women.
July 2026 in “Journal of Nanobiotechnology” This study describes a multifunctional hydrogel system designed to treat androgenetic alopecia by integrating nanozymes for reactive oxygen species clearance and melanin nano photothermal agents to enhance hair follicle health, suggesting potential for multi-target precision therapy and improved hair growth.
February 2026 in “Biochemical and Biophysical Research Communications” This study identifies a specific cell population, PDGFRα+/Sca1+/CD34+ mesenchymal cells, which play a crucial role in regenerating hair follicles by promoting the downgrowth phase of the hair cycle, offering insights into organ morphogenesis and stem cell niches essential for adult hair regeneration.
14 citations
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January 2016 in “Biochemical and Biophysical Research Communications” In this study, researchers found that ginsenoside Re from Panax ginseng increased hair shaft length and duration in mice, comparable to minoxidil, by modulating TGF-β signaling pathways.
10 citations
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August 2020 in “Journal of Bioscience and Bioengineering” This study reports that using activated platelet-rich plasma releasate in the preparation of bioengineered hair follicle germs enhanced follicular gene expression and significantly improved hair regeneration in vitro.
April 2023 in “Journal of Investigative Dermatology” RNase L suppresses regeneration in mammals.
5 citations
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January 2025 in “Aesthetic Surgery Journal Open Forum” In this mouse study, researchers reported that sequential monopolar-bipolar radiofrequency irradiation significantly improved skin quality by increasing collagen density, elastin fiber expression, and fibroblast differentiation more than monopolar RF treatment alone.
November 2023 in “npj regenerative medicine” This study found that engineered reconstituted skin can form morphogenetic units that promote tissue patterning and hair regeneration, with certain signaling pathways restoring this ability in adult and fetal cells.
January 2017 in “Springer eBooks” This review discusses recent advancements in hair follicle regeneration technologies, including the authors' own development of functional hair regeneration through bioengineered follicle germ transplantation, but reports no new clinical results.
38 citations
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June 2016 in “Nanomedicine: Nanotechnology, Biology and Medicine” In this study, the RADA-PRG hydrogel enhanced SKP proliferation, survival, and gene expression, effectively supporting hair follicle regeneration in mice.
11 citations
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November 2020 in “Advanced Functional Materials” This study found that a prevascularized collagen fiber space improved hair generation compared to intracutaneous transplantation by providing a better microenvironment for transplanted cells.
June 2026 in “Journal of Cosmetic Dermatology” CGF-PF may improve hair loss treatment by targeting hair follicle stem cells more effectively.
March 2026 in “Zenodo (CERN European Organization for Nuclear Research)” This document outlines a defensive publication on restoring gap-junction-mediated morphogenetic field connectivity to address disorders of tissue function, with no new clinical results reported.
January 2026 in “Archives of Internal Medicine Research” This review examines how regenerative therapies targeting shared biological pathways can promote healing in musculoskeletal disorders and hair follicle dysfunction, highlighting modalities like platelet-rich plasma and laser therapy while addressing challenges in standardization and measurement.
28 citations
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October 2013 in “Cornea” This review discusses the strategies and progress in developing bioengineered organ replacement therapies but reports no new clinical results, highlighting the potential for future regenerative solutions.
6 citations
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December 2022 in “Cold Spring Harbor Perspectives in Biology” This review examines diverse regenerative strategies in animals and highlights how biochemical, immunological, and mechanical signals can work together for successful skin regeneration in adult mammals, but it reports no new experimental results.
September 2016 in “Journal of Dermatological Science” This study found that extracellular factors from a specific developmental stage can promote hair follicle neogenesis in adult skin by facilitating interactions between fibroblasts and keratinocytes.
December 2025 in “Preprints.org” This study examined dermal papilla cells from hair follicles, finding that gene expression changes linked to wound healing and stem cell activity align with hair follicle regression, which could inform strategies for hair growth and skin rejuvenation.
June 2022 in “Zenodo (CERN European Organization for Nuclear Research)” In a case report, this study documented successful healing of a patient with alopecia totalis using the Remember/Regeneration Therapy Method, a holistic approach combining various complementary treatments, and noted the potential for consistent outcomes in managing alopecia and other autoimmune diseases.
November 2004 in “Hair transplant forum international” This article discusses approaches to minimize mechanical damage during hair restoration surgery to improve micrograft viability and outcomes, but it reports no new results.
16 citations
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March 2021 in “EvoDevo” This study found that zebrafish and sticklebacks, despite differences in their tooth regeneration structures, share a similar genetic program during tooth regeneration, suggesting a conserved "successional dental epithelium" in vertebrates.
4 citations
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April 2024 in “Cellular and Molecular Biology” In this study, injectable platelet-rich fibrin (i-PRF) was found to enhance the proliferative, migratory, and hair-inducing abilities of dermal papilla cells more effectively than platelet-rich plasma through the TGF-β/Smad pathway.
14 citations
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April 2015 in “Stem Cell Research & Therapy” This study found that dermal stem cells from granulation tissue promoted wound healing and reduced fibrosis in a combined radiation and skin wound mouse model.
October 2012 in “Faculty Opinions – Post-Publication Peer Review of the Biomedical Literature” Scientists used a special imaging technique to observe that hair follicle regeneration involves cell division and structural changes, mostly in the lower part of the follicle, and that the dermal papilla at the base is crucial for regrowth.
January 2026 in “Journal of Dermatological Science” This study suggests that DcR3 can reprogram macrophages towards a reparative state, enhancing wound healing and hair follicle regeneration, making it a potential target for treating chronic wounds and alopecia.
9 citations
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March 2012 in “Experimental dermatology” This meeting report discusses the first symposium on natural gene therapy for skin, preceding the 41st annual meeting of the European Society for Dermatological Research, and reports no new experimental findings.
This research observed that removing RNase L in mice enhances regenerative capacity through increased IL-36 and wound-induced hair neogenesis, highlighting RNase L as a gene that represses regeneration by moderating immune responses during viral infections.