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cuidado capilar decifrado

Mergulhe no mundo dos cuidados capilares com 'Haircare Decoded'. Sabemos que navegar pela vasta gama de produtos e tratamentos capilares pode ser esmagador. É por isso que estamos comprometidos em trazer soluções eficazes e acessíveis para cada necessidade capilar. Com formulações limpas e altamente eficientes, a linha JUST aborda preocupações comuns com o cabelo. Desde ingredientes fortalecedores a tratamentos revitalizantes, temos tudo o que você precisa! Mas como determinar o seu tipo de cabelo? Quais produtos se adequarão melhor às suas necessidades capilares e proporcionarão os resultados desejados? Tudo começa com Hair Biology, e convidamos você a embarcar nesta jornada para decifrar todos os seus segredos.

Estrutura do cabelo

O cabelo está presente em quase todas as superfícies da pele humana. É um fio de queratina fino com grande resistência e elasticidade. Cada cabelo consiste em uma raiz embutida na derme e um fio de cabelo que se projeta para fora da superfície da pele. A raiz é cercada por uma capa tubular feita de células epiteliais chamada folículo piloso. A base da raiz e do folículo piloso é ligeiramente maior do que o resto da raiz; essa estrutura em forma de cebola é chamada de bulbo capilar.
O bulbo capilar recebe oxigênio e nutrientes através dos vasos sanguíneos que fornecem as células em crescimento ativo no folículo piloso ao redor do bulbo capilar, conhecido como matriz capilar.

Estas células são a única fonte de novos cabelos. O eixo do cabelo em si surge da região do bulbo da raiz e é produzido por queratinócitos de matriz que se multiplicam rapidamente. O eixo é composto inteiramente de células mortas compostas principalmente de queratina. Essas células permanecem unidas por uma substância intercelular semelhante a cimento.
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Anatomia do cabelo

Se fizer um corte transversal de um fio de cabelo, encontrará três componentes principais, de fora para dentro: a cutícula, o córtex e a medula.
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Cutícula

Cortex

Medulla

The outermost structure is the cuticle. It is composed of multiple layers of keratinized, flattened cells, which overlap in a roof-tile. It is translucent, allowing light to penetrate the cortex pigments. It is composed primarily of keratin. The cuticle regulates the water content of the hair fiber, and is responsible for the luster and the texture of hair. The cuticle is the target for hair conditioning products. Shiny and soft hair reflects a healthy cuticle, while dry, brittle hair is the result of damaged cuticle cells.
O córtex está localizado abaixo da cutícula e contribui para as propriedades mecânicas da fibra capilar, incluindo força, elasticidade e ondulação. O córtex é composto por células alongadas ricas em filamentos de queratina, bem como uma matriz amorfa de proteínas de enxofre.
É a presença de melanina no córtex que dá cor ao cabelo. Com o envelhecimento, a quantidade de pigmento produzido diminui e essa é a razão para o cabelo grisalho. Além disso, as mudanças envolvidas na coloração oxidativa do cabelo, ondulação permanente e alisamento, e estilização térmica ocorrem todas no córtex. O córtex, semelhante à cutícula, tem uma grande importância cosmética, pois suas propriedades ópticas afetam fortemente a cor e o brilho da fibra capilar.
A medula (o "núcleo") é composta por células achatadas e queratinizadas. É vista como uma estrutura de queratina. 

Ciclo de crescimento do cabelo e perda de cabelo

O crescimento do cabelo é um processo único e complexo que envolve ciclos contínuos de crescimento e regeneração (fase anágena), transição (fase catagénica) e descanso (fase telogénica). A atividade cíclica continua ao longo da vida, mas as fases do ciclo mudam com a idade.
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Fase Anágena

Durante a fase anágena, novos cabelos são produzidos na parte inferior do folículo piloso. Normalmente, a maioria dos cabelos do couro cabeludo (aproximadamente 85–90%) está na sua fase anágena a qualquer momento. No couro cabeludo, a fase anágena pode durar de 2 a 6 anos, mas em alguns casos, pode ser mais longa. Quanto mais longa a fase anágena, mais tempo o cabelo pode crescer. A diferença no comprimento do cabelo dos indivíduos pode estar relacionada à variação na duração da fase anágena. O cabelo do couro cabeludo cresce a uma taxa normal de cerca de 1 mm a cada 3 dias. O cabelo nos braços, pernas, cílios e sobrancelhas tem uma fase anágena muito mais curta e uma taxa de crescimento mais lenta, o que explica por que é muito mais curto do que o cabelo do couro cabeludo.

Fase Catagénica

A fase catagénica é uma breve fase de transição entre as fases de crescimento e de repouso, que marca o fim da fase de crescimento. No couro cabeludo, a fase catagénica geralmente dura entre 2 a 3 semanas.3 Durante esta fase, a divisão celular para, o tubo do folículo encolhe e se desliga da papila dérmica, e a base do folículo move-se para cima em direção à superfície da pele. A produção de melanina para nesta fase, levando a uma extremidade inferior não pigmentada no cabelo.

Fase telógena

The telogen phase is the final phase and lasts until the fully grown hair is shed. The hair either shed during the telogen phase or remains in place until the next anagen phase, when the new hair growing in pushes it out. On the scalp, the telogen phase usually lasts for approximately 2–3 months. As soon as the telogen phase ends, the hair returns to the first phase and the entire cycle begins again. New hair appears from the same follicle. Removal of telogen hairs is easy and painless, these are the hair follicles that come out during shampooing or combing the hair.

How you know whether you are losing the telogen or anagen hair?

The shape and color of the bulb are different for telogen and anagen hairs. Telogen bulbs are club shaped, and unlike anagen hair, their base is devoid of pigment. It can be clearly seen with a magnifying glass. Other factors influencing hair growth are systemic factors, such as hormones, including androgens, estrogens, and thyroid hormones; growth factors and cytokines; as well as external factors linked to the environment, such as toxins, and deficiencies of nutrients, vitamins, and energy.

Chemical composition of hair

Hair fibers are primarily composed of various types of keratin. The keratin fibers consist of long molecular chains intertwined and firmly attached through various bonds. Bonds found in hair fibers are generally classified as strong bonds and weak bonds.

Strong bonds

Disulfide Bonds:
Hair keratin is made up of amino acids, where cysteine is one of the most important among them. Cysteine molecules with their sulfur atoms are able to form a very strong bond known as the disulfide bond. They contribute much to the shape, stability, and texture of the hair. When two cysteine molecules are bound together through a disulfide bond, a molecule called cystine is formed. Disulfide bonds are called strong bonds, because they cannot be broken up by heat or water, only chemically. These bonds remain intact when the hair is wet, allowing the hair to resume its original shape.

Weak bonds

Hydrogen Bonds (H-bonds):
H-bonds are relatively weak and can be easily broken by water and heat. They are primarily responsible for changing the hair’s overall shape. Although individual H-bonds are weak, they are present in the highest number of all types of bonds; therefore, they significantly contribute to the strength of hair fibers.

Salt Bonds:
Also known as ionic bonds, are sensitive to pH; therefore, they are easily broken by strong alkaline or acidic solutions. Although these are weak bonds, together they account for a significant part of the strength of hair fibers.

Van der Waals Forces:
These forces are weak attractive forces between neutral molecules in close contact. They can also be easily broken by water and heat.
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Hair types

Based on Color

Natural color is the result of melanin present in the cortex. There are two types of melanin: eumelanin, which provides dark brown and black color to hair, and pheomelanin, which provides red to blond tones. Naturalhair color ranges from black, brown, and blond to red with subtle hues in each category. The diversity of hair pigmentation results mostly from the quantity and ratio of eumelanin and pheomelanin.

Based on Condition

The hair’s condition refers to the smoothness and softness of the hair by touch, which is in direct relationship with the cuticle’s intactness. This is commonly called porosity, which reflects the hair fibers’ ability to absorb moisture. 
  • Healthy hair with a compact cuticle layer is naturally resistant to moisture.
  • If the cuticle is damaged, hair has a course texture and loses its shine and smoothness. In such cases, the cuticle is raised, meaning that the layers are not tightly packed. This type of hair is referred to as porous or overporous hair if damaged severely. Porous hair can absorb liquids very easily and quickly and tends to develop split ends.

The hair fibers’ condition should be considered before undergoing chemical processes, such as hair coloring since the needs of damaged and healthy hair are different.

Based on Curliness

Refers to the shape of the hair shaft. There are a variety of categories describing the curliness of hair, including straight, wavy, curly, and kinky, among others. The conventional classification of curliness distinguishes three types of hair: African, Caucasian, and Asian. Usually, Asian hair is the thickest, followed by African hair, and then Caucasian hair. An additional feature is the cross-sectional shape of the hair fibers: Caucasian and Asian hairs typically has a similar round shape, with the Asian hair being more cylindrical, while the African hair has a highly elliptical shape. 

Today, we can find hair types that would not fit into these three basic categories. Therefore, there are newer classifications developed that categorize hair into more than three groups, regardless of its ethnical origin.

Based on Greasiness

Based on greasiness, two major hair types are usually differentiated- dry and greasy hair.

Dry hair does not contain enough moisture. It is usually a result of damaged cuticle and cortex. Porous cortex cannot retain water; therefore, hair fibers have dull, unhealthy appearance. Dryness is usually aggravated by excessive shampooing and chemical treatments, such as permanent waving or bleaching. Extremely dry hair needs special care and mild cleansing agents not to worsen the damage.

Greasy hair is usually caused by overactive sebaceous glands, which produce more sebum than normally. Since sebum production is highly influenced by hormones, many consumers experience greasy hair when changes take place in their hormone levels, for example, during puberty. In such cases, the hair may become greasier and need to be washed more often. Greasy hair needs special care because if not cleaned adequately, it can lead to various scalp conditions, such as dandruff.

Hair cleansing

Shampoos are one of the most widely and frequently used personal care products today.

The main benefit of using shampoos is the removal of dirt on the hair. Similarly to dirt on the skin, dirt on the hair consists of sweat, sebum and its breakdown products, dead skin cells, residues of cosmetics and personal care products, dust, and other environmental impurities carried in the air.

Most of these compounds are not soluble in water; therefore, washing the hair with simple water would not be sufficient to remove dirt. Shampoos contain surfactants (similar to skin cleansers), which are able to remove oily particles from the hair.

From the aspect of their chemical nature, shampoos are surfactant-based preparations. Therefore, their cleaning principle is emulsification. Surfactants surround and trap tiny droplets of fat, which in this form can be rinsed off from the hair and scalp. Insoluble particulate soil can be removed by electrostatic repulsion between the soil and the hair fiber assisted by repulsion between the surfactant molecules adsorbed onto the hair fiber and those dissolved in the soil.

Today shampoos are available as liquids, gels, emulsions and powders. Most commonly, shampoos are colloidal dispersions of various surfactants in water. Basic components of a classical shampoo are cleansing agents, thickeners, and water. Usually, various additives are also incorporated in the formulations in order to help the cleansing process, enhance the aesthetic properties, increase foaming, and make the hair shine.

What is the role of surfactants and are they different?

Surfactants aid in cleaning and foaming by reducing the surface tension between two phases. In addition, surfactants can also act as foam boosters and foam stabilizers. Typically, several surfactants are combined to achieve the desired result. For example, shampoos for oily hair contain surfactants with strong sebum removal qualities, unlike those for colored hair that are gentler to the hair. Different surfactants, however, have different characteristics and effects on the hair and scalp. Anionics can make the hair extremely clean, but will leave it with a rough, harsh feeling; while nonionics can increase luster and shine, but they do not foam as well as anionics.

Condicionador de cabelo

Conditioners are applied to the hair after shampooing and are designed to smooth the hair, improve gloss and luster, as well as recondition chemically damaged hair (by permanent waving, hair bleaching, or hot blow-drying), mechanically damaged hair (by excessive brushing), and weathered hair (by sunlight, salty seawater, chlorinated water, or swimming pools).

Conditioners act by reducing static electricity generated after combing dry hair, improving manageability by filling in the gaps around and between the cuticle scales, increasing hair shine by coating hair shafts with a thin layer,decreasing split ends, and improving hair flexibility. Natural sebum is the ideal conditioner. Excessive removal of sebum leads to a harsh and dull appearance of the hair, and it necessitates the use of synthetic sebum-like products.

Conditioners make the hair soft, shiny, and easier to manage. Although the main purpose of using shampoos is to clean the hair, overcleaned hair looks dull and has less shine. Conditioners can be incorporated into shampoos; products containing such ingredients are usually referred to as two-in-one shampoo and conditioner formulations. Conditioners are particularly important in dry hair shampoos and shampoos for colored and bleached hair.

Examples for commonly used ingredients include quats (a type of cationic surfactant); humectants, such as glycerin; proteins; silicones, such as dimethicone)

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Fato interessante

O cabelo torna-se mais carregado negativamente após ser escovado. Estas cargas negativas repelem-se umas às outras e fazem com que o cabelo pareça frisado. 

Hair is one of the most important features when it comes to first impression and is strongly connected to attractiveness and confidence. Styled, well-kept hair gives the external appearance of being well managed, which in turn can contribute to feeling the same way internally. The key motivator for coloring the hair is graying. Graying can have a significant effect on both men and women, including emotional and psychological stress as well as lowered self-esteem.

Additionally, people are rarely satisfied with their natural hair color. A wide variety of hair coloring products offers an option to everyone to alter their hair color, which can also contribute to self-esteem and confidence.

Nowadays there are different types of hair-coloring products based on the presence or absence of the chemical reaction (known as oxidation) involved in the hair coloring process. Non-oxidative products include temporary dyes and semi-permanent dyes, while demi-permanent dyes, permanent dyes, and hair bleaches fall into the category of oxidative products.

Produtos não oxidantes

Os produtos que pertencem a esta categoria não contêm agentes oxidantes, como o nome sugere. Como resultado, os corantes não oxidantes não conseguem produzir tons mais claros do que a tonalidade originalmente apresentada e não podem escurecer significativamente a cor originalmente apresentada.

Tintes temporários

Os corantes temporários ou os enxaguamentos de cor geralmente contêm moléculas que são grandes demais para penetrar no córtex capilar e também têm baixa afinidade pelo cabelo, o que significa que as forças de ligação entre a cutícula do cabelo e as moléculas do corante são baixas. Como resultado, os corantes temporários fornecem uma cobertura fraca na cutícula do cabelo e são facilmente removidos após a primeira lavagem. (enxaguamentos de cor, champôs realçadores de cor, sprays para cabelo, mousses, produtos em gel)
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Semi-permanente

Os tintes semi-permanentes para cabelo geralmente utilizam corantes que são pequenos o suficiente para penetrar na cutícula do cabelo até certo ponto, além de tingi-lo por fora, e, portanto, permanecem no cabelo saudável durante 6–8 lavagens com champô.

O pH dos corantes semi-permanentes é ligeiramente alcalino (7.0–9.0), fazendo com que a córtex inche e se eleve. Isso permite um certo grau de penetração do corante nas camadas mais profundas da cutícula. Lavar o cabelo abre a cutícula, permitindo que a cor escape ao longo do tempo devido à solubilidade dos corantes em água. (loções, champôs, géis, cremes e mousses).

Oxidizing Products

Oxidizing hair dyes are two-component systems: one component contains colorless dye and couplers in a highly alkaline formulation. The other component contains hydrogen peroxide (the oxidizing agent, otherwise known as the developer or activator). These products are mixed right before application, which generates a chemical reaction. The alkaline agent swells the hair cuticle and thus helps the penetration of the relatively small dye intermediates into the cortex. In addition, it also destabilizes hydrogen peroxide to liberate oxygen. The oxygen released destroys the hair’s natural melanin (i.e., lightens hair) and also oxidizes the dye intermediates and allows them to react with the couplers within the hair shaft to form a colored molecule. The final color molecule is too large to be removed by shampooing, which makes the color resistant to shampooing. (permanent, demi-permanent dyes, bleachers).
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Interesting Fact!

Red shades tend to fade fastest as they have a relatively small molecule size, which can diffuse from the hair and wash away more quickly than other shades.