42 citations
,
February 2017 in “Scientific Reports” In this study, researchers differentiated induced pluripotent stem cells into cells with dermal papilla-like properties, demonstrating their potential role in hair follicle bioengineering and drug testing for hair growth.
14 citations
,
May 2017 in “European journal of dermatology/EJD. European journal of dermatology” This review summarizes existing research on the potential use of stem cells for treating dermatological disorders, reporting no new clinical findings but highlighting ongoing trials and developments.
May 2021 in “F1000Research” This study describes a case series where combining PRP and stromal vascular fraction cells for androgenic alopecia led to denser hair growth and improved hair quality in three patients.
34 citations
,
June 2008 in “In vitro cellular & developmental biology. Animal” This study established a new cell line from human hair follicle stem cells that maintains stem cell properties and differentiation capabilities, providing a useful in vitro model for stem cell research.
80 citations
,
September 2007 in “Cell Cycle” This study found that nestin-expressing cells in the hair follicle bulge exhibit multipotent stem cell-like properties and can generate neural cells both in vitro and in vivo.
28 citations
,
January 2013 in “Stem cells” This study found that the CD44(+) ALDH(+) population of neonatal human keratinocytes exhibited enhanced stem cell properties, including significantly increased long-term epidermal regeneration and multipotency, compared to unfractionated cells.
1 citations
,
November 2025 in “Stem Cell Research & Therapy” This study developed immortalized human hair follicle-derived mesenchymal-like stromal cells (iHF-MSCs) as a consistent source of therapeutic secretome, reporting their superior immunomodulatory and regenerative performance, potentially advancing cell-free therapies for inflammation and tissue repair.
835 citations
,
October 2008 in “Nature Genetics” Lgr5 is a marker for active, long-lasting stem cells in mouse hair follicles.
38 citations
,
January 2006 in “Journal of Cellular Biochemistry” This study reported the successful isolation of epithelial stem cells from mouse embryonic skin using a simple culture method, with the cells showing the potential to differentiate into multiple cell types.
13 citations
,
September 2014 in “Birth defects research” This review discusses human epidermal neural crest stem cells (hEPI-NCSC) as candidates for cell-based therapies and drug discovery but reports no new experimental results.
November 2023 in “Journal of cosmetic dermatology” This review article evaluates the effectiveness of autologous fat transplantation in regenerative medicine and rejuvenation, highlighting its biocompatibility and non-immunogenic properties as a facial filler, and notes the variable outcomes based on adipose tissue size.
July 2017 in “Cancer Research” This study identified a radio-resistant population of Krt15+ stem cells in the mouse small intestine that can initiate tumors, suggesting potential targets for colon cancer therapy.
January 2021 in “Elsevier eBooks” This review discusses the potential of human induced pluripotent stem cells for regenerating hair follicles and developing cell-based therapies for hair loss, but it reports no new clinical results.
555 citations
,
July 2001 in “Genes & Development” This study found that Tcf3 and Lef1 differently regulate cell differentiation in multipotent skin stem cells, with Tcf3 promoting follicle-like features and Lef1, when modified, promoting sebocyte differentiation.
116 citations
,
August 2010 in “Nature” Scientists turned rat thymus cells into stem cells that can help repair skin and hair.
59 citations
,
February 2012 in “Journal of Dermatological Science” This review discusses the multiple layers of environmental controls on hair stem cell homeostasis and suggests that targeting these layers could offer safer regenerative medicine therapies without directly using stem cells.
58 citations
,
November 2012 in “PLoS ONE” This study found that dermal fibroblast cultures, especially those with higher alpha-smooth muscle actin expression, can be used to produce skin-derived precursor cells, unlike human hair follicle dermal papilla cultures.
10 citations
,
January 2014 in “BioMed research international” In this study, dermal papilla cells from rat vibrissae showed potential for treating CNS injuries by secreting neurotrophic factors and promoting neuronal differentiation more effectively than bone marrow mesenchymal stem cells.
5 citations
,
January 2012 in “Journal of Tissue Science & Engineering” In this study, collagen I decellularized scaffolds enhanced the growth and melanotic properties of hair follicle melanocytes, suggesting their potential as effective carriers for transplantation in vitiligo treatment.
73 citations
,
August 2011 in “Stem Cell Research” This study found that human hair follicle-derived mesenchymal stem cells can differentiate into myogenic, osteogenic, adipogenic, and chondrogenic lineages, although this potential decreases over time and varies by lineage.
26 citations
,
March 2018 in “Dermatology and Therapy” This study found that conditioned media from epidermal progenitor cells improved skin aging signs in a clinical trial and protected fibroblasts from oxidative stress in vitro.
November 2021 in “Research Square (Research Square)” This study observed that MRI treatment increased expression of stemness-related genes and colony formation in umbilical cord-derived mesenchymal stem cells without affecting viability or apoptosis, suggesting enhanced quality for therapeutic use.
65 citations
,
November 2012 in “Tissue Engineering Part B-reviews” This review discusses the biology of hair follicle stem cells and highlights their potential for applications in regenerative medicine, drug, and gene delivery, but reports no new clinical results.
330 citations
,
December 2009 in “Cell stem cell” This study suggests that skin-derived precursors from Sox2(+) hair follicle dermal cells have the potential to function as dermal stem cells, supporting hair morphogenesis, dermal maintenance, and wound-healing.
101 citations
,
December 2010 in “The journal of investigative dermatology/Journal of investigative dermatology” This study reports the successful differentiation of mouse induced pluripotent stem cells into keratinocytes that can regenerate skin and its structures in an in vivo environment.
61 citations
,
September 2008 in “Stem Cells” This study found that DNA strand segregation in multipotent hair follicle stem cells occurs randomly during development and tissue homeostasis, challenging the immortal strand hypothesis.
17 citations
,
December 2013 in “PLoS ONE” This study found that the postnatal thymus contains a population of mesenchymal stem cells that may help maintain functional thymic microenvironments.
9 citations
,
July 2018 in “European journal of dermatology/EJD. European journal of dermatology” This study provides evidence that long-term deregulation of the circadian rhythm in humans affects the regenerative properties of skin and hair precursor cells by altering clock pathway protein expression.
December 2023 in “Communications biology” This study found that inhibiting the HEDGEHOG-GLI1 pathway could reduce keloid size and gene expression, suggesting it as a potential therapeutic target for keloid pathogenesis.
June 2021 in “bioRxiv (Cold Spring Harbor Laboratory)” This study discovered that the gene Tfap2b identifies a melanocyte stem cell population in zebrafish, essential for regenerating melanocytes with multi-fate potential into adult pigment cells.