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1.
J Cell Mol Med ; 28(12): e18486, 2024 Jun.
Article in English | MEDLINE | ID: mdl-38923380

ABSTRACT

Hair follicle development and hair growth are regulated by multiple factors and multiple signalling pathways. The hair follicle, as an important skin appendage, is the basis for hair growth, and it has the functions of safeguarding the body, perceiving the environment and regulating body temperature. Hair growth undergoes a regular hair cycle, including anagen, catagen and telogen. A small amount of physiological shedding of hair occurs under normal conditions, always in a dynamic equilibrium. Hair loss occurs when the skin or hair follicles are stimulated by oxidative stress, inflammation or hormonal disorders that disrupt the homeostasis of the hair follicles. Numerous researches have indicated that oxidative stress is an important factor causing hair loss. Here, we summarize the signalling pathways and intervention mechanisms by which oxidative stress affects hair follicle development and hair growth, discuss existing treatments for hair loss via the antioxidant pathway and provide our own insights. In addition, we collate antioxidant natural products promoting hair growth in recent years and discuss the limitations and perspectives of current hair loss prevention and treatment.


Subject(s)
Antioxidants , Hair Follicle , Oxidative Stress , Signal Transduction , Hair Follicle/growth & development , Hair Follicle/metabolism , Hair Follicle/drug effects , Humans , Antioxidants/metabolism , Antioxidants/pharmacology , Oxidative Stress/drug effects , Signal Transduction/drug effects , Animals , Hair/growth & development , Hair/metabolism , Hair/drug effects , Alopecia/metabolism , Alopecia/drug therapy , Biological Products/pharmacology
2.
Molecules ; 29(12)2024 Jun 17.
Article in English | MEDLINE | ID: mdl-38930941

ABSTRACT

BACKGROUND: Androgenetic alopecia (AGA) causes thinning hair, but poor hair quality in balding areas and damage from UV radiation have been overlooked. Plant extracts like Platycladus orientalis flavonoids (POFs) may improve hair quality in AGA. This study examines POFs' effectiveness in treating AGA-affected hair and repairing UV-induced damage. METHODS: Hair samples were analyzed using scanning electron microscopy (SEM) to examine surface characteristics, electron paramagnetic resonance (EPR) spectroscopy to measure free radicals in the hair, and spectrophotometry to assess changes in hair properties. RESULTS: POFs effectively removed hydroxyl radicals from keratinocytes and had antioxidant properties. They also reduced UV-induced damage to AGA hair by mitigating the production of melanin free radicals. Following POF treatment, the reduction in peroxidized lipid loss in AGA hair was notable at 59.72%, thereby effectively delaying the progression of hair color change. Moreover, protein loss decreased by 191.1 µ/g and tryptophan loss by 15.03%, ultimately enhancing hair's tensile strength. CONCLUSION: compared to healthy hair, hair damaged by AGA shows more pronounced signs of damage when exposed to UV radiation. POFs help protect balding hair by reducing oxidative damage and slowing down melanin degradation.


Subject(s)
Alopecia , Antioxidants , Flavonoids , Hair , Plant Extracts , Ultraviolet Rays , Alopecia/drug therapy , Ultraviolet Rays/adverse effects , Humans , Antioxidants/pharmacology , Antioxidants/chemistry , Hair/drug effects , Hair/radiation effects , Hair/chemistry , Flavonoids/pharmacology , Flavonoids/chemistry , Flavonoids/analysis , Plant Extracts/pharmacology , Plant Extracts/chemistry , Melanins/metabolism , Keratinocytes/drug effects
3.
Arch Dermatol Res ; 316(6): 318, 2024 Jun 01.
Article in English | MEDLINE | ID: mdl-38822862

ABSTRACT

BACKGROUND: One common problem in various patient groups is excessive hair loss on the head. One such group is people struggling with hypothyroidism. The market for preparations for hair growth and hair loss prevention includes betulin. PURPOSE: This pilot study investigated its effect on hair loss in hypothyroid patients. STUDY DESIGN: The study included a group of hypothyroid patients and a control group of people without hypothyroidism. Participants were randomly divided into a group taking placebo and betulin. METHODS: Results were investigated using photographic assessment of hair, trichoscopy and subjective evaluation of participants. CONCLUSION: The study did not conclusively prove that betulin would contribute to the inhibition of hair loss or regrowth.


Subject(s)
Hair , Hypothyroidism , Triterpenes , Humans , Pilot Projects , Triterpenes/administration & dosage , Triterpenes/pharmacology , Female , Adult , Hypothyroidism/drug therapy , Hair/growth & development , Hair/drug effects , Middle Aged , Male , Alopecia/drug therapy , Plant Oils/administration & dosage , Treatment Outcome , Betulinic Acid
4.
PLoS One ; 19(6): e0304605, 2024.
Article in English | MEDLINE | ID: mdl-38861499

ABSTRACT

Canine Alopecia X is a non-inflammatory hair loss disorder of unknown etiology that predominantly affects German Spitz dogs. Treatment modalities include hormone and/or melatonin supplementation and low trauma microneedling. Melatonin influences hair growth and pigmentation in several species and presents a low risk of adverse effects when used in dogs with Alopecia X. Photobiomodulation (PBM) is frequently used in human androgenetic alopecia and alopecia areata; despite this, PBM remains unexplored in canine Alopecia X. To address this knowledge gap, sixty dogs of both sexes will be randomly assigned to three groups: (i) melatonin only group (3 mg/Kg, n = 20); (ii) PBM only group (diode laser, wavelength 660nm, 100mw power, with 3 J/point, 2 sessions/week for 3 months, n = 20); (ii) PBM + melatonin group (n = 20). The objective is to determine the potential of PBM alone or in conjunction with melatonin supplementation in promoting hair regrowth (hair density and diameter) by means of dermatoscopy and planimetry over a period of 90 days.


Subject(s)
Alopecia , Low-Level Light Therapy , Melatonin , Animals , Melatonin/therapeutic use , Melatonin/pharmacology , Dogs , Low-Level Light Therapy/methods , Alopecia/drug therapy , Alopecia/radiotherapy , Alopecia/veterinary , Male , Female , Double-Blind Method , Dog Diseases/radiotherapy , Hair/growth & development , Hair/drug effects
6.
Int J Mol Sci ; 25(12)2024 Jun 13.
Article in English | MEDLINE | ID: mdl-38928239

ABSTRACT

Aging (senescence) is an unavoidable biological process that results in visible manifestations in all cutaneous tissues, including scalp skin and hair follicles. Previously, we evaluated the molecular function of adenosine in promoting alopecia treatment in vitro. To elucidate the differences in the molecular mechanisms between minoxidil (MNX) and adenosine, gene expression changes in dermal papilla cells were examined. The androgen receptor (AR) pathway was identified as a candidate target of adenosine for hair growth, and the anti-androgenic activity of adenosine was examined in vitro. In addition, ex vivo examination of human hair follicle organ cultures revealed that adenosine potently elongated the anagen stage. According to the severity of alopecia, the ratio of the two peaks (terminal hair area/vellus hair area) decreased continuously. We further investigated the adenosine hair growth promoting effect in vivo to examine the hair thickness growth effects of topical 5% MNX and the adenosine complex (0.75% adenosine, 1% penthenol, and 2% niacinamide; APN) in vivo. After 4 months of administration, both the MNX and APN group showed significant increases in hair density (MNX + 5.01% (p < 0.01), APN + 6.20% (p < 0.001)) and thickness (MNX + 5.14% (p < 0.001), APN + 10.32% (p < 0.001)). The inhibition of AR signaling via adenosine could have contributed to hair thickness growth. We suggest that the anti-androgenic effect of adenosine, along with the evaluation of hair thickness distribution, could help us to understand hair physiology and to investigate new approaches for drug development.


Subject(s)
Adenosine , Alopecia , Hair Follicle , Hair , Minoxidil , Receptors, Androgen , Signal Transduction , Alopecia/drug therapy , Alopecia/metabolism , Alopecia/pathology , Humans , Male , Receptors, Androgen/metabolism , Adenosine/metabolism , Adenosine/pharmacology , Hair Follicle/drug effects , Hair Follicle/metabolism , Hair Follicle/growth & development , Signal Transduction/drug effects , Minoxidil/pharmacology , Female , Animals , Hair/growth & development , Hair/drug effects , Hair/metabolism
7.
Arch Dermatol Res ; 316(6): 290, 2024 May 29.
Article in English | MEDLINE | ID: mdl-38809465

ABSTRACT

Enz_MoriL is a naturally occurring substance extracted from the leaves of Morus alba L. through enzymatic conversion. Historically, M. alba L. has been recognized for its potential to promote hair regrowth. However, the precise mechanism by which Enz_MoriL affects human hair follicle dermal papilla cells (hDPCs) remains unclear. The aim of this study was to investigate the molecular basis of Enz_MoriL's effect on hair growth in hDPCs. Interferon-gamma (IFN-γ) was used to examine the effects of Enz_MoriL on hDPCs during the anagen and catagen phases, as well as under conditions mimicking alopecia areata (AA). Enz_MoriL demonstrated the ability to promote cell proliferation in both anagen and catagen stages. It increased the levels of active ß-catenin in the catagen stage induced by IFN-γ, leading to its nuclear translocation. This effect was achieved by increasing the phosphorylation of GSK3ß and decreasing the expression of DKK-1. This stimulation induced proliferation in hDPCs and upregulated the expression of the Wnt family members 3a, 5a, and 7a at the transcript level. Additionally, Enz_MoriL suppressed JAK1 and STAT3 phosphorylation, contrasting with IFN-γ, which induced them in the catagen stage. In conclusion, Enz_MoriL directly induced signals for anagen re-entry into hDPCs by affecting the Wnt/ß-catenin pathway and enhancing the production of growth factors. Furthermore, Enz_MoriL attenuated and reversed the interferon-induced AA-like environment by blocking the JAK-STAT pathway in hDPCs.


Subject(s)
Alopecia Areata , Cell Proliferation , Hair Follicle , Interferon-gamma , Wnt Signaling Pathway , beta Catenin , Humans , Hair Follicle/drug effects , Hair Follicle/cytology , Hair Follicle/metabolism , Cell Proliferation/drug effects , Wnt Signaling Pathway/drug effects , Interferon-gamma/metabolism , beta Catenin/metabolism , Alopecia Areata/metabolism , Alopecia Areata/drug therapy , Alopecia Areata/pathology , Cells, Cultured , Glycogen Synthase Kinase 3 beta/metabolism , Intercellular Signaling Peptides and Proteins/metabolism , Janus Kinases/metabolism , Dermis/cytology , Dermis/drug effects , Phosphorylation/drug effects , STAT3 Transcription Factor/metabolism , Hair/drug effects , Hair/growth & development , Wnt-5a Protein/metabolism , Janus Kinase 1/metabolism , Signal Transduction/drug effects , STAT Transcription Factors/metabolism
9.
Nano Lett ; 24(20): 6174-6182, 2024 May 22.
Article in English | MEDLINE | ID: mdl-38739468

ABSTRACT

Accumulated reactive oxygen species (ROS) and their resultant vascular dysfunction in androgenic alopecia (AGA) hinder hair follicle survival and cause permanent hair loss. However, safe and effective strategies to rescue hair follicle viability to enhance AGA therapeutic efficiency remain challenging. Herein, we fabricated a quercetin-encapsulated (Que) and polydopamine-integrated (PDA@QLipo) nanosystem that can reshape the perifollicular microenvironment to initial hair follicle regeneration for AGA treatment. Both the ROS scavenging and angiogenesis promotion abilities of PDA@QLipo were demonstrated. In vivo assays revealed that PDA@QLipo administrated with roller-microneedles successfully rejuvenated the "poor" perifollicular microenvironment, thereby promoting cell proliferation, accelerating hair follicle renewal, and facilitating hair follicle recovery. Moreover, PDA@QLipo achieved a higher hair regeneration coverage of 92.5% in the AGA mouse model than minoxidil (87.8%), even when dosed less frequently. The nanosystem creates a regenerative microenvironment by scavenging ROS and augmenting neovascularity for hair regrowth, presenting a promising approach for AGA clinical treatment.


Subject(s)
Alopecia , Hair Follicle , Indoles , Polymers , Quercetin , Reactive Oxygen Species , Alopecia/drug therapy , Alopecia/pathology , Quercetin/pharmacology , Quercetin/administration & dosage , Quercetin/chemistry , Animals , Indoles/chemistry , Indoles/pharmacology , Hair Follicle/drug effects , Hair Follicle/growth & development , Polymers/chemistry , Mice , Reactive Oxygen Species/metabolism , Regeneration/drug effects , Humans , Hair/drug effects , Hair/growth & development , Cell Proliferation/drug effects , Cellular Microenvironment/drug effects , Disease Models, Animal , Male
10.
Genes (Basel) ; 15(5)2024 05 15.
Article in English | MEDLINE | ID: mdl-38790256

ABSTRACT

Much research has been conducted to determine how hair regeneration is regulated, as this could provide therapeutic, cosmetic, and even psychological interventions for hair loss. The current study focused on the hair growth effect and effective utilization of fatty oil obtained from Bryde's whales through a high-throughput DNA microarray approach in conjunction with immunohistochemical observations. The research also examined the mechanisms and factors involved in hair growth. In an experiment using female C57BL/6J mice, the vehicle control group (VC: propylene glycol: ethanol: water), the positive control group (MXD: 3% minoxidil), and the experimental group (WO: 20% whale oil) were topically applied to the dorsal skin of the mouse. The results showed that 3% MXD and 20% WO were more effective than VC in promoting hair growth, especially 20% WO. Furthermore, in hematoxylin and eosin-stained dorsal skin tissue, an increase in the number of hair follicles and subcutaneous tissue thickness was observed with 20% WO. Whole-genome transcriptome analysis also confirmed increases for 20% WO in filaggrin (Flg), a gene related to skin barrier function; fibroblast growth factor 21 (Fgf21), which is involved in hair follicle development; and cysteine-rich secretory protein 1 (Crisp1), a candidate gene for alopecia areata. Furthermore, the results of KEGG pathway analysis indicated that 20% WO may have lower stress and inflammatory responses than 3% MXD. Therefore, WO is expected to be a safe hair growth agent.


Subject(s)
Hair , Oils , Animals , Female , Mice , Computational Biology/methods , Filaggrin Proteins , Gene Expression Profiling/methods , Hair/growth & development , Hair/drug effects , Hair/metabolism , Hair Follicle/metabolism , Hair Follicle/drug effects , Hair Follicle/growth & development , Mice, Inbred C57BL , Minoxidil/administration & dosage , Oligonucleotide Array Sequence Analysis/methods , Skin/metabolism , Skin/drug effects , Whales , Oils/administration & dosage
11.
Eur J Med Res ; 29(1): 270, 2024 May 04.
Article in English | MEDLINE | ID: mdl-38704575

ABSTRACT

BACKGROUND: This study aims to investigate the effects of a conditioned medium (CM) from human umbilical cord mesenchymal stem cells (HuMSCs) cultivated in gelatin sponge (GS-HuMSCs-CM) on hair growth in a mouse model. METHODS: CM was collected from the HuMSCs cultivated in a monolayer or in a gelatin sponge. Vascular endothelial growth factor (VEGF), insulin-like growth factor-1 (IGF-1), keratinocyte growth factor (KGF), and hepatocyte growth factor (HGF) levels in CMs were measured by enzyme-linked immunosorbent assays (ELISAs). A hair loss model by a C57 BL/6J mouse was prepared. The effects of GS-HuMSCs-CM and HuMSCs on hair regrowth in mice were investigated by intradermal injection in the depilated back skin with normal saline (NS) as the control. The time for hair regrowth and full covering in depilated areas was observed, and the hair growth was evaluated histologically and by grossly measuring hair length and diameter. RESULTS: Compared with monolayer cultured cells, the three-dimensional (3D) culture of HuMSCs in gelatin sponge drastically increased VEGF, IGF-1, KGF, and HGF production. GS-HuMSCs-CM and HuMSCs injection both promoted hair regeneration in mice, while GS-HuMSCs-CM presented more enhanced effects in hair length, hair diameter, and growth rate. GS-HuMSCs-CM significantly promoted angiogenesis in injected skin areas, which might also contribute to faster hair regrowth. CONCLUSION: GS-HuMSCs-CM exerted significant effects on inducing hair growth and promoted skin angiogenesis in C57BL/6J mice.


Subject(s)
Hair , Insulin-Like Growth Factor I , Mesenchymal Stem Cells , Umbilical Cord , Animals , Mesenchymal Stem Cells/cytology , Mesenchymal Stem Cells/drug effects , Mesenchymal Stem Cells/metabolism , Humans , Culture Media, Conditioned/pharmacology , Mice , Umbilical Cord/cytology , Hair/growth & development , Hair/drug effects , Insulin-Like Growth Factor I/metabolism , Vascular Endothelial Growth Factor A/metabolism , Hepatocyte Growth Factor/metabolism , Gelatin/chemistry , Tissue Scaffolds/chemistry , Mice, Inbred C57BL , Cells, Cultured , Fibroblast Growth Factor 7/metabolism
12.
An Acad Bras Cienc ; 96(2): e20230373, 2024.
Article in English | MEDLINE | ID: mdl-38747835

ABSTRACT

Bioactive substances can be found in wine lees, a waste from the winemaking industry. This work developed two formulations, a nanoemulsion with coconut oil (NE-OC) and a nanoemulsion with coconut oil and 0.5% of wine lees extract (NE-OC-Ext), to investigate their effect on untreated, bleached, and bleached-colored hair. The oil-in-water (O/W) nanoemulsions were prepared with coconut oil, TweenTM 80, SpanTM 80, AristoflexTM AVC, Conserve NovaMit MFTM, wine lees extract, and deionized water. The hydration measurements were carried out using a Corneometer® CM 825 with the capacitance method. Scanning electron microscopy (SEM) was used to characterize the effect of formulations on hair fibers. Differential Thermal Analysis (DTA) was to assess the thermal stability and compatibility of wine lees and coconut oil in formulations. Compared to NE-OC, NE-OC-Ext showed a greater hydration effect on bleached-colored hair. DTA showed that NE-OC-Ext presented a smaller number of exothermic degradation events than those of NE-OC, suggesting good interaction and compatibility of the wine lees extract in this formulation. This study highlights the value of wine lees, a residue from the winemaking process, and its possibility of use as raw material for the cosmetic hair industry since it shows a greater moisturizing potential in colored hair.


Subject(s)
Coconut Oil , Emulsions , Wine , Wine/analysis , Coconut Oil/chemistry , Microscopy, Electron, Scanning , Hair/chemistry , Hair/drug effects , Humans , Green Chemistry Technology/methods
13.
Molecules ; 29(10)2024 May 13.
Article in English | MEDLINE | ID: mdl-38792149

ABSTRACT

This narrative review aims to examine the therapeutic potential and mechanism of action of plant extracts in preventing and treating alopecia (baldness). We searched and selected research papers on plant extracts related to hair loss, hair growth, or hair regrowth, and comprehensively compared the therapeutic efficacies, phytochemical components, and modulatory targets of plant extracts. These studies showed that various plant extracts increased the survival and proliferation of dermal papilla cells in vitro, enhanced cell proliferation and hair growth in hair follicles ex vivo, and promoted hair growth or regrowth in animal models in vivo. The hair growth-promoting efficacy of several plant extracts was verified in clinical trials. Some phenolic compounds, terpenes and terpenoids, sulfur-containing compounds, and fatty acids were identified as active compounds contained in plant extracts. The pharmacological effects of plant extracts and their active compounds were associated with the promotion of cell survival, cell proliferation, or cell cycle progression, and the upregulation of several growth factors, such as IGF-1, VEGF, HGF, and KGF (FGF-7), leading to the induction and extension of the anagen phase in the hair cycle. Those effects were also associated with the alleviation of oxidative stress, inflammatory response, cellular senescence, or apoptosis, and the downregulation of male hormones and their receptors, preventing the entry into the telogen phase in the hair cycle. Several active plant extracts and phytochemicals stimulated the signaling pathways mediated by protein kinase B (PKB, also called AKT), extracellular signal-regulated kinases (ERK), Wingless and Int-1 (WNT), or sonic hedgehog (SHH), while suppressing other cell signaling pathways mediated by transforming growth factor (TGF)-ß or bone morphogenetic protein (BMP). Thus, well-selected plant extracts and their active compounds can have beneficial effects on hair health. It is proposed that the discovery of phytochemicals targeting the aforementioned cellular events and cell signaling pathways will facilitate the development of new targeted therapies for alopecia.


Subject(s)
Alopecia , Hair , Phytochemicals , Plant Extracts , Plant Extracts/pharmacology , Plant Extracts/chemistry , Alopecia/drug therapy , Alopecia/prevention & control , Humans , Phytochemicals/pharmacology , Phytochemicals/chemistry , Animals , Hair/drug effects , Hair/growth & development , Hair Follicle/drug effects , Hair Follicle/metabolism , Hair Follicle/growth & development , Cell Proliferation/drug effects
14.
Pak J Pharm Sci ; 37(2): 399-404, 2024 Mar.
Article in English | MEDLINE | ID: mdl-38767107

ABSTRACT

Hair loss (alopecia) continues to be an issue for both sexes. There are multiple ways to reduce the effects of alopecia, one of which is topical minoxidil (MXD). This study aimed to test the effects of minoxidil nanoliposomes (MXD-NLs) on the hair of mice, compared with free MXD and to examine the disinfectant ability of MXD-NLs toward scalp bacteria. To test the study hypothesis, MXD-NLs and free MXD were prepared. Mouse hair was shaved prior to the experiment. MXD-NLs, free MXD and their vehicles were applied for 15 days. In addition, dermal swabs were used to isolate scalp bacteria and test the inhibitory effect of pretreated media with the two formulations and their vehicles. The results revealed that hair growth in the MXD-NLs -treated group (0.65±0.1cm) was higher than that in the free MXD -treated group (0.53±0.2cm). In addition, MXD-NLs treated media reduced the number of scalp bacteria (p=0.0456) compared with free MXD. These results reveal a novel formulation of MXD with faster hair growth properties and a better disinfectant effect than free MXD. This study can help future researchers to expand and develop MXD-NLs.


Subject(s)
Alopecia , Hair , Liposomes , Minoxidil , Scalp , Minoxidil/pharmacology , Animals , Hair/growth & development , Hair/drug effects , Hair/microbiology , Scalp/drug effects , Mice , Alopecia/drug therapy , Alopecia/microbiology , Nanoparticles , Disinfectants/pharmacology , Male , Female
15.
Arch Dermatol Res ; 316(5): 190, 2024 May 22.
Article in English | MEDLINE | ID: mdl-38775976

ABSTRACT

Hair is a biofilament with unique multi-dimensional values. In human, in addition to physiologic impacts, hair loss and hair related disorders can affect characteristic features, emotions, and social behaviors. Despite significant advancement, there is a dire need to explore alternative novel therapies with higher efficacy, less side effects and lower cost to promote hair growth to treat hair deficiency. Glucocorticoid-induced leucine zipper (GILZ) is a protein rapidly induced by glucocorticoids. Studies from our group and many others have suggested that a synthetic form of GILZ, TAT-GILZ, a fusion peptide of trans-activator of transcription and GILZ, can function as a potent regulator of inflammatory responses, re-establishing and maintaining the homeostasis. In this study, we investigate whether TAT-GILZ could promote and contribute to hair growth. For our pre-clinical model, we used 9-12 week-old male BALB/c and nude (athymic, nu/J) mice. We applied TAT-GILZ and/or TAT (vehicle) intradermally to depilated/hairless mice. Direct observation, histological examination, and Immunofluorescence imaging were used to assess the effects and compare different treatments. In addition, we tested two current treatment for hair loss/growth, finasteride and minoxidil, for optimal evaluation of TAT-GILZ in a comparative fashion. Our results showed, for the first time, that synthetic TAT-GILZ peptide accelerated hair growth on depilated dorsal skin of BALB/c and induced hair on the skin of athymic mice where hair growth was not expected. In addition, TAT-GILZ was able to enhance hair follicle stem cells and re-established the homeostasis by increasing counter inflammatory signals including higher regulatory T cells and glucocorticoid receptors. In conclusion, our novel findings suggest that reprofiling synthetic TAT-GILZ peptide could promote hair growth by increasing hair follicle stem cells and re-establishing homeostasis.


Subject(s)
Alopecia , Hair Follicle , Hair , Transcription Factors , Animals , Male , Mice , Hair/growth & development , Hair/drug effects , Hair Follicle/drug effects , Hair Follicle/growth & development , Humans , Alopecia/drug therapy , Transcription Factors/genetics , Transcription Factors/metabolism , Mice, Inbred BALB C , Recombinant Fusion Proteins/pharmacology , Recombinant Fusion Proteins/administration & dosage , Mice, Nude , Mice, Hairless , Disease Models, Animal , Glucocorticoids/pharmacology
16.
JAMA Dermatol ; 160(6): 600-605, 2024 Jun 01.
Article in English | MEDLINE | ID: mdl-38598226

ABSTRACT

Importance: There has been increased interest in low-dose oral minoxidil for androgenetic alopecia (AGA) treatment. However, the efficacy of oral minoxidil for male AGA is yet to be evaluated in comparative therapeutic trials. Objective: To compare the efficacy, safety, and tolerability of daily oral minoxidil, 5 mg, vs twice-daily topical minoxidil, 5%, for 24 weeks in the treatment of male AGA. Design, Setting, and Participants: This double-blind, placebo-controlled randomized clinical trial was conducted at a single specialized clinic in Brazil. Eligible men with AGA aged 18 to 55 years classified using the Norwood-Hamilton scale as 3V, 4V, or 5V were included and randomized. Data were collected from January to December 2021, and data were analyzed from September 2022 to February 2023. Interventions: Participants were randomized 1:1 into 2 groups: oral minoxidil, 5 mg, daily and topical placebo solution; or 1 mL of topical minoxidil, 5%, twice daily and oral placebo for 24 weeks. Main Outcomes and Measures: The primary outcome was change in terminal hair density on the frontal and vertex regions of the scalp. The secondary outcomes were change in total hair density and photographic evaluation. Results: Among 90 enrolled participants, 68 completed the study; of these, the mean (SD) age was 36.6 (7.8) years. A total of 33 participants were enrolled in the oral minoxidil group and 35 in the topical treatment group. Both groups were homogenous in terms of demographic data and AGA severity. For the frontal area, the mean change from baseline to week 24 between groups was 3.1 hairs per cm2 (95% CI, -18.2 to 21.5; P = .27) for terminal hair density and 2.6 hairs per cm2 (95% CI, -10.3 to 15.8; P = .32) for total hair density. For the vertex area, the mean change from baseline to week 24 was 23.4 hairs per cm2 (95% CI, -0.3 to 43.0; P = .09) for terminal density and 5.5 hairs per cm2 (95% CI, -12.5 to 23.5; P = .32) for total hair density. According to the photographic analysis, oral minoxidil was superior to topical minoxidil on the vertex (24%; 95% CI, 0 to 48; P = .04) but not on the frontal scalp (12%; 95% CI, -12 to 36; P = .24). The most common adverse effects in the oral minoxidil group were hypertrichosis (22 of 45 [49%]) and headache (6 of 45 [14%]). Conclusions and Relevance: In this study, oral minoxidil, 5 mg, once per day for 24 weeks did not demonstrate superiority over topical minoxidil, 5%, twice per day in men with AGA. Trial Registration: Brazilian Registry of Clinical Trials Identifier: RBR-252w9r.


Subject(s)
Alopecia , Minoxidil , Humans , Minoxidil/administration & dosage , Minoxidil/adverse effects , Male , Alopecia/drug therapy , Adult , Double-Blind Method , Administration, Oral , Middle Aged , Treatment Outcome , Young Adult , Administration, Topical , Adolescent , Hair/drug effects , Brazil , Scalp
17.
J Ethnopharmacol ; 330: 118227, 2024 Aug 10.
Article in English | MEDLINE | ID: mdl-38685364

ABSTRACT

ETHNOPHARMACOLOGICAL RELEVANCE: Androgenic alopecia (AGA) is the most prevalent form of hair loss in clinical practice and affects the physical and psychological well-being of adolescents. Paeonia lactiflora Pallas (PL), which is widely used in traditional Chinese medicine, enhances blood function and promotes hair growth, and ellagic acid (EA), a polyphenol in PL extract, shows strong antioxidant, anti-aging, and anti-inflammatory properties and also plays a role in the treatment of various skin conditions. However, its role and mechanism of action in AGA remain unclear. AIM OF THE STUDY: To determine whether EA can rescue slow hair regeneration by regulating dihydrotestosterone (DHT)-induced ferroptosis in AGA mice and clarify the effect of EA on DHT-induced ferroptosis in dermal papilla cells (DPCs). MATERIALS AND METHODS: Male C57BL/6 mice were used to establish a DHT-induced AGA mouse model, whereas DPCs were used to establish a DHT-induced cellular model. Thereafter, we investigated the therapeutic mechanism of action of EA via immunofluorescence, western blot analysis, immunohistochemistry, electron microscopy, and molecular docking. RESULTS: EA stimulated hair regeneration in mice and reversed DHT-induced increases in iron content, lipid peroxidation, and DHT-induced mitochondrial dysfunction by activating the Wnt/ß-catenin signaling pathway. Further, ß-catenin knockdown suppressed the inhibitory effect of EA on DHT-induced ferroptosis in DPCs. CONCLUSION: EA inhibits DHT-induced ferroptosis and promotes hair regrowth in mice by activating the Wnt/ß-catenin signaling pathway. Thus, it has potential for use as a treatment option for AGA.


Subject(s)
Alopecia , Dihydrotestosterone , Ellagic Acid , Hair , Regeneration , Wnt Signaling Pathway , Animals , Male , Mice , Alopecia/drug therapy , Alopecia/chemically induced , beta Catenin/metabolism , Dihydrotestosterone/pharmacology , Ellagic Acid/pharmacology , Ferroptosis/drug effects , Hair/drug effects , Hair/growth & development , Mice, Inbred C57BL , Regeneration/drug effects , Wnt Signaling Pathway/drug effects
19.
Cell Signal ; 119: 111167, 2024 Jul.
Article in English | MEDLINE | ID: mdl-38604341

ABSTRACT

Autophagy is essential for eliminating aging and organelle damage that maintaining cellular homeostasis. However, the dysfunction of autophagy has been proven in hair loss such as AGA. Despite the crucial role of TRPML channels in regulating autophagy, their specific function in hair growth remains unclarified. To investigate the biological functions and associated molecular mechanisms of TRPMLs in hair growth, Animal experiments were conducted to confirm the function of TRLMLs activation in promoting hair growth. Subsequently, we analyzed molecular mechanisms in human dermal papilla cells (hDPCs) activated by TRPMLs through transcriptome sequencing analysis. MLSA1(a TRPML agonist) promoted hair regeneration and accelerated hair cycle transition in mice. The activation of TRPMLs upregulated calcium signaling inducing hDPCs to secrete hair growth promoting factors and decrease hair growth inhibiting factors. In addition, activation of TRPMLs triggered autophagy and reduced the generation of ROS, thereby delaying the senescence of hDPCs. All these findings suggested that TRPMLs activation could promote hair growth by regulating hDPCs secretion of hair growth-related factors. Moreover, it may play a prominent role in preventing hDPCs from ROS damage induced by H2O2 or DHT. Targeting TRPMLs may represent a promising therapeutic strategy for treating hair loss.


Subject(s)
Autophagy , Hair , Animals , Mice , Humans , Autophagy/drug effects , Hair/growth & development , Hair/drug effects , Hair Follicle/drug effects , Hair Follicle/cytology , Reactive Oxygen Species/metabolism , Mice, Inbred C57BL , Dermis/cytology , Dermis/drug effects , Transient Receptor Potential Channels/metabolism , Calcium Signaling/drug effects
20.
Biomed Pharmacother ; 174: 116503, 2024 May.
Article in English | MEDLINE | ID: mdl-38565060

ABSTRACT

Androgenetic alopecia (AGA) is a prevalent disease in worldwide, local application or oral are often used to treat AGA, however, effective treatments for AGA are currently limited. In this work, we observed the promoting the initial anagen phase effect of pilose antler extract (PAE) on hair regeneration in AGA mice. We found that PAE accelerated hair growth and increased the degree of skin blackness by non-invasive in vivo methods including camera, optical coherence tomography and dermoscopy. Meanwhile, HE staining of sagittal and coronal skin sections revealed that PAE augmented the quantity and length of hair follicles, while also enhancing skin thickness and hair papilla diameter. Furthermore, PAE facilitated the shift of the growth cycle from the telogen to the anagen phase and expedited the proliferation of hair follicle stem cells and matrix cells in mice with AGA. This acceleration enabled the hair follicles to enter the growth phase at an earlier stage. PAE upregulated the expression of the sonic hedgehog (SHH), smoothened receptor, glioma-associated hemolog1 (GLI1), and downregulated the expression of bone morphogenetic protein 4 (BMP4), recombinant mothers against decapentaplegic homolog (Smad) 1 and 5 phosphorylation. This evidence suggests that PAE fosters hair growth and facilitates the transition of the growth cycle from the telogen to the anagen phase in AGA mice. This effect is achieved by enhancing the proliferation of follicle stem cells and matrix cells through the activation of the SHH/GLI pathway and suppression of the BMP/Smad pathway.


Subject(s)
Alopecia , Antlers , Bone Morphogenetic Protein 4 , Hair Follicle , Hair , Animals , Antlers/chemistry , Alopecia/drug therapy , Alopecia/pathology , Hair Follicle/drug effects , Hair Follicle/metabolism , Mice , Male , Bone Morphogenetic Protein 4/metabolism , Hair/drug effects , Hair/growth & development , Hedgehog Proteins/metabolism , Zinc Finger Protein GLI1/metabolism , Zinc Finger Protein GLI1/genetics , Cell Proliferation/drug effects , Signal Transduction/drug effects , Tissue Extracts/pharmacology , Mice, Inbred C57BL , Disease Models, Animal , Regeneration/drug effects , Deer , Smad5 Protein/metabolism
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