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1.
PLoS One ; 19(5): e0304356, 2024.
Article in English | MEDLINE | ID: mdl-38781258

ABSTRACT

INTRODUCTION: Functional near-infrared spectroscopy (fNIRS) is a promising tool for studying brain activity, offering advantages such as portability and affordability. However, challenges in data collection persist due to factors like participant physiology, environmental light, and gross-motor movements, with limited literature on their impact on fNIRS signal quality. This study addresses four potentially influential factors-hair color, hair cleanliness, environmental light, and gross-motor movements-on fNIRS signal quality. Our aim is to raise awareness and offer insights for future fNIRS research. METHODS: Six participants (4 Females, 2 Males) took part in four different experiments investigating the effects of hair color, hair cleanliness, environmental light, and gross-motor movements on fNIRS signal quality. Participants in Experiment 1, categorized by hair color, completed a finger-tapping task in a between-subjects block design. Signal quality was compared between each hair color. Participants in Experiments 2 and 3 completed a finger-tapping task in a within-subjects block design, with signal quality being compared across hair cleanliness (i.e., five consecutive days without washing the hair) and environmental light (i.e., sunlight, artificial light, no light, etc.), respectively. Experiment 4 assessed three gross-motor movements (i.e., walking, turning and nodding the head) in a within-subjects block design. Motor movements were then compared to resting blocks. Signal quality was evaluated using Scalp Coupling Index (SCI) measurements. RESULTS: Lighter hair produced better signals than dark hair, while the impact of environmental light remains uncertain. Hair cleanliness showed no significant effects, but gross motor movements notably reduced signal quality. CONCLUSION: Our results suggest that hair color, environmental light, and gross-motor movements affect fNIRS signal quality while hair cleanliness does not. Nevertheless, future studies with larger sample sizes are warranted to fully understand these effects. To advance future research, comprehensive documentation of participant demographics and lab conditions, along with signal quality analyses, is essential.


Subject(s)
Hair Color , Spectroscopy, Near-Infrared , Humans , Female , Male , Spectroscopy, Near-Infrared/methods , Adult , Hair Color/physiology , Light , Young Adult , Hair/chemistry , Hair/physiology , Movement/physiology , Motion
2.
Theriogenology ; 222: 54-65, 2024 Jul 01.
Article in English | MEDLINE | ID: mdl-38621344

ABSTRACT

Coat colour largely determines the market demand for several cat breeds. The KIT proto-oncogene (KIT) gene is a key gene controlling melanoblast differentiation and melanogenesis. KIT mutations usually cause varied changes in coat colour in mammalian species. In this study, we used a pair of single-guide RNAs (sgRNAs) to delete exon 17 of KIT in somatic cells isolated from two different Chinese Li Hua feline foetuses. Edited cells were used as donor nuclei for somatic cell nuclear transfer (SCNT) to generate cloned embryos presenting an average cleavage rate exceeding 85%, and an average blastocyst formation rate exceeding 9.5%. 131 cloned embryos were transplanted into four surrogates, and all surrogates carried their pregnancies to term, and delivered 4.58% (6/131) alive cloned kittens, with 1.53% (2/131) being KIT-edited heterozygotes (KITD17/+). The KITD17/+ cats presented an obvious darkness reduction in the mackerel tabby coat. Immunohistochemical analysis (IHC) of skin tissues indicated impaired proliferation and differentiation of melanoblasts caused by the lack of exon17 in feline KIT. To our knowledge, this is the first report on coat colour modification of cats through gene editing. The findings could facilitate further understanding of the regulatory role of KIT on feline coat colour and provide a basis for the breeding of cats with commercially desired coat colour.


Subject(s)
Cloning, Organism , Gene Editing , Proto-Oncogene Proteins c-kit , Animals , Cats , Proto-Oncogene Proteins c-kit/genetics , Proto-Oncogene Proteins c-kit/metabolism , Gene Editing/veterinary , Gene Editing/methods , Cloning, Organism/veterinary , Cloning, Organism/methods , Hair Color/genetics , Nuclear Transfer Techniques/veterinary , Female
3.
Genes Cells ; 29(5): 417-422, 2024 May.
Article in English | MEDLINE | ID: mdl-38379251

ABSTRACT

The exact sites of premature hair graying and whether tooth loss causes this condition remain unknown. In this study, we aimed to explore the effect of reduced mastication on premature hair graying. Maxillary first molars were extracted from young mice, and the mice were observed for 3 months, along with non-extraction control group mice. After 3 months, gray hair emerged in the interbrow region of mice in the tooth extraction group but not in the control group. The expression of tyrosinase-related protein-2 (TRP-2) mRNA was lower in the interbrow tissues of young mice without maxillary molars than in those with maxillary molars. Tooth loss leads to interbrow gray hair growth, possibly because of weakened trigeminal nerve input, suggesting that reduced mastication causes premature graying. Thus, prompt prosthetic treatment after molar loss is highly recommended.


Subject(s)
Molar , Animals , Mice , Molar/metabolism , Hair Color/genetics , Maxilla/metabolism , Maxilla/growth & development , Tooth Loss , Male , Mice, Inbred C57BL
5.
Geroscience ; 46(3): 3105-3122, 2024 Jun.
Article in English | MEDLINE | ID: mdl-38182857

ABSTRACT

Hair graying, also known as canities or achromotrichia, is a natural phenomenon associated with aging and is influenced by external factors such as stress, environmental toxicants, and radiation exposure. Understanding the mechanisms underlying hair graying is an ideal approach for developing interventions to prevent or reverse age-related changes in regenerative tissues. Hair graying induced by ionizing radiation (γ-rays or X-rays) has emerged as a valuable experimental model to investigate the molecular pathways involved in this process. In this review, we examine the existing evidence on radiation-induced hair graying, with a particular focus on the potential role of radiation-induced cellular senescence. We explore the current understanding of hair graying in aging, delve into the underlying mechanisms, and highlight the unique advantages of using ionizing-irradiation-induced hair graying as a research model. By elucidating the molecular pathways involved, we aim to deepen our understanding of hair graying and potentially identify novel therapeutic targets to address this age-related phenotypic change.


Subject(s)
Cellular Senescence , Hair Color , Mice , Animals , Oxidative Stress , Hair , Models, Theoretical , DNA Damage
6.
Australas J Dermatol ; 65(3): e41-e44, 2024 May.
Article in English | MEDLINE | ID: mdl-38214409

ABSTRACT

Hair heterochromia may be caused by different mechanisms. At clinical work, we found a Chinese boy whose hair colour gradually turned to red. We record the diagnosis and treatment process and follow-up situation, finally find that altered hair colour phenotype is due to MC1R genetic mutations, rather than zinc deficiency. This rarely red hair colour phenotype improve our understanding of hair heterochromia caused by genetic mutations.


Subject(s)
Hair Color , Mutation , Receptor, Melanocortin, Type 1 , Zinc , Humans , Male , Hair Color/genetics , Receptor, Melanocortin, Type 1/genetics , Zinc/deficiency , Pigmentation Disorders/genetics
8.
Sci Rep ; 14(1): 412, 2024 01 03.
Article in English | MEDLINE | ID: mdl-38172617

ABSTRACT

This study delves into the polarization properties of various hair colors using several techniques, including polarization ray tracing, full Stokes, and Mueller matrix imaging. Our analysis involved studying hair in both indoor and outdoor settings under varying lighting conditions. Our results demonstrate a strong correlation between hair color and the degree of linear polarization. Specifically, light-colored hair, such as white and blond, exhibits high albedo and low DoLP. In contrast, dark hair, like black and brown hair, has low albedo and high DoLP. Our research also revealed that a single hair strand displays high diattenuation near specular reflections but high depolarization in areas with diffuse reflections. Additionally, we investigated the wavelength dependency of the polarization properties by comparing the Mueller matrix under illumination at 450 nm and 589 nm. Our investigation demonstrates the impact of hair shade and color on polarization properties and the Umov effect.


Subject(s)
Hair Color , Hair , Humans , Lighting
9.
Anim Genet ; 55(2): 291-295, 2024 Apr.
Article in English | MEDLINE | ID: mdl-38282569

ABSTRACT

The coat color phenotype 'sable' occurs in the English Cocker Spaniel dog breed. It closely resembles other canine color patterns known as domino/grizzle/pied (eA allele) and grizzle/domino (eG allele) determined by variants in the melanocortin 1 receptor gene (MC1R; 'extension' or E locus), a key multi-allele regulator of coat color. We examined genetic variation in MC1R, and found one new non-synonymous variant, c.250G>A (p.(Asp84Asn)), consistently associated with the English Cocker Spaniel 'sable' phenotype. We propose calling this newly identified allele eH and further show that the eA , eH and eG (previously known as EG ) alleles associate with similar phenotypes in dogs impacting genotypes regulated by beta-defensin 103 gene (CBD103; K locus) and agouti signaling protein gene (ASIP; A locus) in the absence of the EM and E alleles. This suggests that all three alleles are putative reduced-function variants of the MC1R gene. We propose the revised and updated E locus dominance hierarchy to be EM > E > eA /eH /eG > e1-3 .


Subject(s)
Hair Color , Receptor, Melanocortin, Type 1 , Dogs , Animals , Hair Color/genetics , Receptor, Melanocortin, Type 1/genetics , Genotype , Phenotype , Alleles
10.
Pigment Cell Melanoma Res ; 37(2): 291-308, 2024 Mar.
Article in English | MEDLINE | ID: mdl-37972124

ABSTRACT

The human red hair color (RHC) trait is caused by increased pheomelanin (red-yellow) and reduced eumelanin (black-brown) pigment in skin and hair due to diminished melanocortin 1 receptor (MC1R) function. In addition, individuals harboring the RHC trait are predisposed to melanoma development. While MC1R variants have been established as causative of RHC and are a well-defined risk factor for melanoma, it remains unclear mechanistically why decreased MC1R signaling alters pigmentation and increases melanoma susceptibility. Here, we use single-cell RNA sequencing (scRNA-seq) of melanocytes isolated from RHC mouse models to define a MC1R-inhibited Gene Signature (MiGS) comprising a large set of previously unidentified genes which may be implicated in melanogenesis and oncogenic transformation. We show that one of the candidate MiGS genes, TBX3, a well-known anti-senescence transcription factor implicated in melanoma progression, binds both E-box and T-box elements to regulate genes associated with melanogenesis and senescence bypass. Our results provide key insights into further mechanisms by which melanocytes with reduced MC1R signaling may regulate pigmentation and offer new candidates of study toward understanding how individuals with the RHC phenotype are predisposed to melanoma.


Subject(s)
Melanoma , Mice , Animals , Humans , Melanoma/metabolism , Receptor, Melanocortin, Type 1/genetics , Receptor, Melanocortin, Type 1/metabolism , Melanocytes/metabolism , Pigmentation/genetics , Gene Expression Regulation , Hair Color
11.
J Invest Dermatol ; 144(3): 601-611, 2024 Mar.
Article in English | MEDLINE | ID: mdl-37739336

ABSTRACT

Premature hair graying occurs owing to the depletion of melanocyte stem cells in the hair follicle, which can be accelerated by stress caused by genetic or environmental factors. However, the connection between stress and melanocyte stem cell loss is not fully understood. MicroRNAs are molecules that control gene expression by regulating mRNA stability and translation and are produced by the enzyme Dicer, which is repressed under stress. In this study, using 2 mouse genetic models and human and mouse cell lines, we found that the inactivation of Dicer in melanocytes leads to misplacement of these cells within the hair follicle, resulting in a lack of melanin transfer to keratinocytes in the growing hair and the exhaustion of the melanocyte stem cell pool. We also show that miR-92b, which regulates ItgaV mRNA and protein levels, plays a role in altering melanocyte migration. Overall, our findings suggest that the Dicer-miR92b-ItgaV pathway serves as a major signaling pathway linking stress to premature hair greying.


Subject(s)
Hair Color , Melanocytes , Mice , Humans , Animals , Hair Color/genetics , Melanocytes/metabolism , Melanins/metabolism , Hair , Hair Follicle
12.
Pigment Cell Melanoma Res ; 37(2): 259-264, 2024 Mar.
Article in English | MEDLINE | ID: mdl-37874775

ABSTRACT

MFSD12 functions as a transmembrane protein required for import of cysteine into melanosomes and lysosomes. The MFSD12 locus has been associated with phenotypic variation in skin color across African, Latin American, and East Asian populations. The frequency of a particular MFSD12 coding variant, rs2240751 (MAF = 0.08), has been reported to correlate with solar radiation and occur at highest frequency in Peruvian (PEL MAF = 0.48) and Han Chinese (CHB MAF = 0.40) populations, suggesting it could be causative for associated phenotypic variation in skin color. We have generated a mouse knock-in allele, Mfsd12Y182H , to model the human missense p.Tyr182His human variant. We demonstrate that the variant transcript is stably expressed and that agouti mice homozygote for the variant allele are viable with an altered coat color. This in vivo data confirms that the MFSD12 p.Tyr182His variant functions as a hypomorphic allele sufficient to alter mammalian pigmentation.


Subject(s)
Membrane Proteins , Skin Pigmentation , Animals , Mice , Agouti Signaling Protein/genetics , Alleles , Hair Color/genetics , Homozygote , Membrane Proteins/genetics , Mutation, Missense/genetics , Skin Pigmentation/genetics
13.
Int J Legal Med ; 138(2): 627-637, 2024 Mar.
Article in English | MEDLINE | ID: mdl-37934208

ABSTRACT

Forensic entomological evidence is employed to estimate minimum postmortem interval (PMImin), location, and identification of fly samples or human remains. Traditional forensic DNA analysis (i.e., STR, mitochondrial DNA) has been used for human identification from the larval gut contents. Forensic DNA phenotyping (FDP), predicting human appearance from DNA-based crime scene evidence, has become an established approach in forensic genetics in the past years. In this study, we aimed to recover human DNA from Lucilia sericata (Meigen 1826) (Diptera: Calliphoridae) gut contents and predict the eye and hair color of individuals using the HIrisPlex system. Lucilia sericata larvae and reference blood samples were collected from 30 human volunteers who were under maggot debridement therapy. The human DNA was extracted from the crop contents and quantified. HIrisPlex multiplex analysis was performed using the SNaPshot minisequencing procedure. The HIrisPlex online tool was used to assess the prediction of the eye and hair color of the larval and reference samples. We successfully genotyped 25 out of 30 larval samples, and the most SNP genotypes (87.13%) matched those of reference samples, though some alleles were dropped out, producing partial profiles. The prediction of the eye colors was accurate in 17 out of 25 larval samples, and only one sample was misclassified. Fourteen out of 25 larval samples were correctly predicted for hair color, and eight were misclassified. This study shows that SNP analysis of L. sericata gut contents can be used to predict eye and hair color of a corpse.


Subject(s)
Diptera , Hair Color , Animals , Humans , Larva/genetics , Diptera/genetics , Genotype , DNA, Mitochondrial/genetics , Eye Color/genetics
14.
Pediatr Dermatol ; 41(2): 197-203, 2024.
Article in English | MEDLINE | ID: mdl-38156748

ABSTRACT

Poliosis is defined as the absence of melanin in hair, and hair graying typically occurs with hair melanin reduction. Poliosis can occur at any age but presents in childhood in certain genetic and acquired conditions, with many families seeking evaluation from a pediatric dermatologist. Poliosis presents as white hair typically restricted to a certain location of the scalp. Children may also present with a reduction of expected hair pigmentation, referred to as pigment dilution, or the development of hair graying. This review aims to provide a streamlined diagnostic approach for pediatric dermatologists when presented with these hair findings. Poliosis should be recognized as a potential diagnostic feature or initial sign in many syndromes and thus can guide clinicians in diagnosing and managing conditions earlier in a patient's care. Since many of the genetic and acquired conditions that present with poliosis or hair pigment dilution have extracutaneous manifestations, early diagnosis is vital in establishing multidisciplinary care.


Subject(s)
Hair Diseases , Hypopigmentation , Pigmentation Disorders , Humans , Child , Melanins , Hair , Pigmentation Disorders/diagnosis , Hair Diseases/diagnosis , Hair Color
15.
J Invest Dermatol ; 144(3): 474-491, 2024 Mar.
Article in English | MEDLINE | ID: mdl-38099887

ABSTRACT

Hair graying holds psychosocial importance and serves as an excellent model for studying human pigmentation and aging in an accessible miniorgan. Current evidence suggests that graying results from an interindividually varying mixture of cumulative oxidative and DNA damage, excessive mTORC1 activity, melanocyte senescence, and inadequate production of pigmentation-promoting factors in the hair matrix. Various regulators modulate this process, including genetic factors (DNA repair defects and IRF4 sequence variation, peripheral clock genes, P-cadherin signaling, neuromediators, HGF, KIT ligand secretion, and autophagic flux. This leads to reduced MITF- and tyrosinase-controlled melanogenesis, defective melanosome transfer to precortical matrix keratinocytes, and eventual depletion of hair follicle (HF) pigmentary unit (HFPU) melanocytes and their local progenitors. Graying becomes irreversible only when bulge melanocyte stem cells are also depleted, occurring later in this process. Distinct pigmentary microenvironments are created as the HF cycles: early anagen is the most conducive phase for melanocytic reintegration and activation, and only during anagen can the phenotype of hair graying and repigmentation manifest, whereas the HFPU disassembles during catagen. The temporary reversibility of graying is highlighted by several drugs and hormones that induce repigmentation, indicating potential target pathways. We advise caution in directly applying mouse model concepts, define major open questions, and discuss future human antigraying strategies.


Subject(s)
Hair Follicle , Melanocytes , Mice , Animals , Humans , Melanocytes/metabolism , Pigmentation/physiology , Aging/physiology , Stem Cells , Hair Color
16.
Acta Psychol (Amst) ; 242: 104120, 2024 Feb.
Article in English | MEDLINE | ID: mdl-38157751

ABSTRACT

This study aims to investigate human hair color perception through two empirical studies in the context of colored hair. The preliminary study was intended to establish a numerical representation of perceptually meaningful brightness levels. It identified that the brightness level was proportional to the power of 0.766 of L*. In the visual assessment, participants (N = 47) categorized 246 hair color samples into eight color hue groups aligned with the Munsell system. Hue judgment was conducted by visually comparing dyed hair tresses with natural black hair. Based on the L*, a*, and b* values of hair tresses and visual assessments thereof, we observed the ranges of hue categories for hair color alongside the brightness levels. Additionally, the differences between the Munsell hue names and the assessment results were compared. Predominantly influenced by the dark brown hair color, the neutral orientation was shifted to the first quadrant of the a*-b* plane. The study contributes to an understanding of human hair color perception and provides insights into color categorization and labeling, especially when the context is confined.


Subject(s)
Hair Color , Judgment , Humans , Color Perception , Color
17.
Parkinsonism Relat Disord ; 119: 105965, 2024 Feb.
Article in English | MEDLINE | ID: mdl-38142631

ABSTRACT

BACKGROUND: A shared biological component between melanoma and Parkinson's disease (PD) has been suggested. Yet, epidemiological evidence is scarce. OBJECTIVE: To examine the association of hair color and family history of melanoma, two strong predictors of melanoma risk, with the occurrence of PD. METHODS: We followed 131,342 women and men for ∼30 years for the development of PD. We calculated the cumulative incidence of PD from ages 40 to 90 according to hair color, and estimated the hazard ratio of PD according to hair color and family history of melanoma. RESULTS: Hair color was not strongly associated with the risk of PD, especially at advanced ages. In contrast, individuals with a family history of melanoma had a 1.4-fold higher risk of PD compared to those without a history. CONCLUSIONS: Our results support the hypothesis of a shared biological component between PD and melanoma. Both pigmentary and non-pigmentary pathways may play a role.


Subject(s)
Melanoma , Parkinson Disease , Male , Humans , Female , Melanoma/epidemiology , Melanoma/genetics , Parkinson Disease/epidemiology , Parkinson Disease/genetics , Parkinson Disease/complications , Hair Color/genetics , Incidence , Risk Factors
18.
Gene ; 893: 147940, 2024 Jan 30.
Article in English | MEDLINE | ID: mdl-37907182

ABSTRACT

Previous observational studies have indicated an association between hair color and the risk of melanoma and keratinocyte skin cancer (KSC); however, different hair colors show inconsistent effects on skin cancers. Here, we conducted a two-sample Mendelian randomization (MR) study to evaluate the causal relationship between natural hair color and skin cancers by using 211 single nucleotide polymorphisms as genetic instruments from a genome-wide meta-analysis of 360,270 individuals of European ancestry. Light hair colors (red, blonde, and light brown) were associated with high levels of cutaneous melanoma (CM) and KSC (CM-inverse variance weighted [IVW] odds ratio [OR]-red: 1.034, 95% confidence interval [CI]: 1.025-1.044, P < 0.001; OR-blonde: 1.008, 95% CI: 1.003-1.014, P = 0.003; OR-light brown: 1.006, 95% CI: 1.002-1.011, P = 0.009; KSC-IVW OR-red: 1.078, 95% CI: 1.053-1.103, P < 0.001; OR-blonde: 1.024, 95% CI: 1.009-1.040, P = 0.002; OR-light brown: 1.018, 95% CI: 1.004-1.033, P = 0.01). However, dark brown hair showed an inverse causal relationship with skin cancers (CM IVW OR: 0.987, 95% CI: 0.984-0.990, P < 0.001; KSC IVW OR: 0.979, 95% CI: 0.970-0.988, P < 0.001). Black hair was associated with a decreased risk of KSC (IVW OR: 0.954, 95% CI: 0.913-0.997, P = 0.036) but showed no causal relationship with CM. The present study provides strong MR evidence of a causal association between hair color and skin cancer. Secondary MR analyses enhances result robustness by replicating findings, exploring gender-specific effects, and providing a more comprehensive understanding of the complex relationship between hair color and skin cancers. More large-scale MR studies or randomized controlled trials are required to further investigate the mechanisms of the association between hair color and skin cancers.


Subject(s)
Melanoma , Skin Neoplasms , Humans , Skin Neoplasms/genetics , Melanoma/genetics , Hair Color/genetics , Mendelian Randomization Analysis , Polymorphism, Single Nucleotide , Genome-Wide Association Study , Melanoma, Cutaneous Malignant
20.
Trop Anim Health Prod ; 55(6): 406, 2023 Nov 20.
Article in English | MEDLINE | ID: mdl-37985478

ABSTRACT

The relevance of the present research is related to the great importance of Karakul sheep breeding in Kazakhstan and the insufficient investigation of morphological features of the skin and hair cover of Karakul lambs in modern literature. The purpose of the research was to explore the specific features of hair pigmentation and histological structure of the skin of Karakul lambs of different colour groups: black, sur, grey, and brown. The work involved the standard methods of assessing the pigment content in the hair of lambs and methods of histological studies. The study utilised statistical methods including the Kolmogorov-Smirnov criterion, one-factor analysis of variance, Fisher's F-criterion, and the Bonferroni method, with data processed through the "PASW Statistics 17" and "Statistica 6.0" software packages. The results of the research demonstrate that the pigment content in the hair of new-born Karakul lambs depends on their colouring. Differences in pigment precipitation between different colour groups of lambs were established: pigment grains in black hairs and suras were larger, in comparison with brown and grey hairs, in which pigment was represented by the smallest grains. At the age of 19 days, no significant changes in the colouring of the lambs examined were found (p > 0.05), whereas on reaching 4 months of age, depigmentation (p < 0.05) was noted in all colour groups, which was slower in black lambs.


Subject(s)
Hair , Sheep, Domestic , Animals , Sheep , Kazakhstan , Hair Color , Pigmentation
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