The human hair: From anatomy to physiology

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Abstract

Hair is a unique character of mammals and has several functions, from protection of the skin to sexual and social communication. In literature, there are various studies about hair that take into consideration different aspects within many fields of science, including biology, dermatology, cosmetics, forensic sciences, and medicine. We carried out a search of studies published in PubMed up to 2013. In this review, we summarized the principal anatomical and physiological aspects of the different types of human hair, and we considered the clinical significance of the different structures and the distribution of the hair in the human body. This review could be the basis for improvement and progression in the field of hair research.

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... Derived from the epidermis, hair comprises two distinct parts: a visible shaft on the skin's surface and a follicle within it ( Figure 1). 20 Among the growth phase, the hair shaft (HS) has three primary concentric areas: the medulla, cortex and cuticle. 21 The hair follicle (HF) has an essential role in hair growth, 20 forming a pilosebaceous unit alongside the sebaceous gland (SG) and arrector pili muscle (APM). ...

... 20 Among the growth phase, the hair shaft (HS) has three primary concentric areas: the medulla, cortex and cuticle. 21 The hair follicle (HF) has an essential role in hair growth, 20 forming a pilosebaceous unit alongside the sebaceous gland (SG) and arrector pili muscle (APM). 22 The HF consists of three segments, which are lower, middle, and upper: the lower segment is the region from the base of the HF to the insertion of APM and could be divided into the bulb and suprabulb regions; the middle segment (isthmus) is short and extends from the insertion of APM to the meatus of the SG duct; the upper segment (infundibulum) spans from the meatus of the SG duct to the follicular orifice. ...

... 21 The suprabulb region lies between the isthmus and the hair bulb (HB), consisting of the HS, inner root sheath (IRS), outer root sheath (ORS), vitreous layer (VR) and fibrous root sheath (FRS). 21 IRS has three layers: Henle's layer, Huxley's layer, and cuticle, the latter layer being adjacent to the cuticle of HS and thus anchors HS to HF. 20 The IRS acts as a divider between the HS and ORS. 20 The ORS shields the IRS while it rises from the matrix cells at the bottom side of the HB to the meatus of the SG duct. ...

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... 4 The content of different types of melanin in the hair is an individual feature. 4,5 Melanin is a natural protection against the negative effects of UV rays. The protective effect of melanin is based on the principle of absorbing UV rays and protecting against free radicals. ...

... These should be left-on products so that it stays on the surface of the hair and protect it from UV rays penetrating the cuticle. 5 Biological changes in hair pigment include its darkening or lightening observed occasionally at a very young age, or graying. 4,6 In the course of particular diseases, there might be also a change in hair color. ...

... The hair becomes less resistant to mechanical damage and becomes brittle. 5 Exposure to UV radiation leads to the oxidation of lipid and protein components of the hair. Although melanin provides some protection against the oxidation process, the hair becomes lighter and lighter, due to the oxidation of the hair dyes. ...

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... Ce processus dynamique de régénération affecte également le système pigmentaire qui donne sa couleur au cheveu. Pour élaborer cette structure complexe, qui est unique chez l'homme, une morphogenèse sophistiquée est nécessaire au cours du développement embryonnaire [1][2][3][4]. L'objectif de ce chapitre est de fournir une compréhension complète de l'anatomie et de la biologie du cheveu, ainsi que des mécanismes qui contrôlent son organogenèse afin de mieux appréhender les mécanismes d'incorporation des xénobiotiques ainsi que les difficultés d'interprétation des concentrations, notamment chez le jeune enfant. ...

... Il est richement vascularisé et innervé [2]. Entouré de plusieurs couches, le follicule est enchâssé dans le canal pilaire [1,2,6,9,10]. ...

... Les cellules de la gaine externe expriment une grande variété de médiateurs, d'hormones et de récepteurs, des cellules de Langerhans, cellules dendritiques impliquées dans la présentation des antigènes aux lymphocytes T, et des cellules de Merkel, riches en neuropeptides dont le rôle n'est pas totalement élucidé. Les différentes cellules sont situées à proximité du renflement et présenteraient des processus de coopération réciproques [2,10,28] ; • la gaine épithéliale interne, elle-même composée de 3 couches : la couche de Henle, assise de cellules cuboïdales riches en granules de trichohyaline, kératinisant précocement, la couche de Huxley, constituée d'une ou deux couches de cellules plus volumineuses, dont la kératinisation débute plus haut que la précédente, et enfin la cuticule de gaine, constituée d'une couche de cellules aplaties hyalinisées dès la région isthmique [1]. Certains auteurs reconnaissent également l'existence d'une couche supplémentaire, dite couche Companion, monocellulaire, qui représente en fait la transition entre la gaine externe et la gaine interne, sur une hauteur allant du bulbe à l'isthme [10,29]. ...

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... Воно покриває голову, тулуб та кінцівки людини за невеликими винятками, як-от губи, долонна поверхня рук, підошовна поверхня стоп та деякі ділянки зовнішніх статевих органів. Волосся має як епідермальне, так і мезенхімальне походження та складається з волосяного стрижня і фолікула [5]. Процес формування волосся під час внутрішньоутробного розвитку має чітку послідовність: спочатку відбувається формування так званого волосяного плакода. ...

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... Hair can be classified into three types [5,6]: lanugo, vellus, and terminal hair. Lanugo hair is a fine and soft hair that covers the fetus during development and typically disappears after birth. ...

... From a functional perspective [5], terminal hair can be further categorized into androgendependent areas (scalp, beard, chest, axillae, and pubic region) and androgen-independent areas (eyebrows and eyelashes). Vellus hair, on the other hand, is not influenced by androgens and is independent of its effects. 2 ...

... At the level of the 3 infundibulum, the hair follicle exhibits a degree of keratinization similar to that of the epidermis, characterized by a distinguishable granular layer and stratum corneum. (Figure 2) [5,8,9,11] The only part of the hair follicle involved in the hair growth cycle is the lower segment. On the scalp, approximately 85 to 100% of hairs are typically found in the anagen phase, which lasts between 2 to 7 years. ...

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... Hair can be classified into three types [5,6]: lanugo, vellus, and terminal hair. Lanugo hair is a fine and soft hair that covers the fetus during development and typically disappears after birth. ...

... At the level of the infundibulum, the hair follicle exhibits a degree of keratinization similar to that of the epidermis, characterized by a distinguishable granular layer and stratum corneum. (Figure 2) [5,8,9,11] The only part of the hair follicle involved in the hair growth cycle is the lower segment. On the scalp, approximately 85 to 100% of hairs are typically found in the anagen phase, which lasts between 2 and 7 years. ...

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... As the name indicates, hairy skin contains hair follicles, while glabrous skin lacks hair. Hairy skin varies further in the geometry of its hair follicles and their density, e.g., the scalp versus the rest of the body [49,7,46]. The glabrous skin is found in the palms of our hands and feet. ...

... Heterogeneous mechanics of skin 7 The sinusoidal interface reduces the average stress jump along the interface Considering the strip-x biaxial loading, the simplified model with the three strips loaded in parallel, illustrated in Fig. 1e, was solved. Figure 3a left shows the results for this analytical model. ...

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... However, there are insufficient studies on the macroscopic appearance of cricetid hair spines and bat claws. Mammalian hairs are broadly variable in shape and structure, and this variation is related to each species, climates, adaptations, their functions in organs, body position, populations, and alleles (Kondo 2000;Meyer et al. 2002;Buffoli et al. 2014). Furthermore, the observed claw-size similarities and differences may be related to the roosting and fossorial habits of bats and rodents because the evolution, together with different lifestyles and habits, has influenced the form and function of claws in mammals (Maiolino et al. 2011). ...

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... This phase is also distinguished by the development of the onion-like shape of the hair follicle [24]. The anagen phase is divided further into two phases; pro-anagen (anagen I -V) and metanagen (anagen VI) [25]. During pro-anagen, hair progenitor cells actively proliferate and initiate the process of differentiation. ...

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... This type of hair usually extends more than 3 mm into the hypodermis. The rest of the body is covered with vellus hairs (short, thin, devoid of pigment, and located more shallowly in the skin compared with terminal hairs) [8]. ...

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... DHT triggers the shrinking of hair follicles, resulting in the finer vellus hair being transformed from thick terminal hair. 5α-reductase (Buffoli et al., 2013;Kučerová R et al., 2006;Thomas J, 2005) (Cole &Hfrzunger, 1984) 4 Syphilitic alopecia The disease syphilis was caused by Treponema pallidum. Individuals suffering from sudden and partial hair loss were diagnosed with syphilitic alopecia. ...

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... An individual with a healthy scalp is thought to have between 50,000 and 65,000 hairs on average. [34] The three stages of the hair development cycle are anagen, catagen, and telogen. It is a complicated process. ...

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... On the outside, hair is thin, flexible tubes of fully keratinized epithelial cells. In terms of macrostructure, hair differs between ethnic groups and between individual people in terms of length, diameter, colour, and cross-sectional shape (Buffoli et al., 2014). ...

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... The human hair follicle (HF) is an appendage of the skin known for its wide range of functions, from external protection and thermoregulation to social interactions [1]. The diversity of its roles is also well presented on the cellular level, where a single follicle is composed of several cell types [2] with very distinct cell-to-cell interactions [3] and multifaceted signaling [4]. ...

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... The growth of human hair occurs everywhere on the body except for the soles of the feet, the inside of the mouth, the lips, the backs of the ears, the palms of the hands, some external genital areas, the navel, scar tissue, and apart from eyelashes, the eyelids. 1 Appearance of hair makes an important impact on total body feature. Color, length and appearance of hair make a significant difference from person to person. 2 Indian herbs are the prosperous source to be used in cosmetic industries. ...

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... In humans, it is a unique and priceless characteristic, especially in females, but its primary purposes to enable homeothermy and protect the skin from mechanical harm; For instance, scalp hair protects the head and neck from the sun, cold, and physical harm, while eyebrows and eyelashes prevent items from entering the eyes. 1 Having healthy hair is a sign of health, youth, and vigor for both men and women. Hair has evolved to fulfill defensive and evolutionary purposes in mammals. ...

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... As the name indicates, hairy skin contains hair follicles, while glabrous skin lacks hair. Hairy skin varies further in the geometry of its hair follicles and their density, e.g., the scalp versus the rest of the body (Whitting et al. 2008;Buffoli et al. 2014;Vogt et al. 2007). The glabrous skin is found in the palms of our hands and feet. ...

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