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During the process of epithelial differentiation, cells become cornified as keratin protein is incorporated into longer keratin intermediate filaments. Eventually the nucleus and cytoplasmic organelles disappear, metabolism ceases and cells undergo a programmed death as they become fully keratinized.
Keratinization is part of the physical barrier formation (cornification), in which the keratinocytes produce more and more keratin and undergo terminal differentiation. The fully cornified keratinocytes that form the outermost layer are constantly shed off and replaced by new cells.
Keratinization begins in the stratum spinosum, [5] although the actual keratinocytes begin in the stratum basale. [4] They have large pale-staining nuclei as they are active in synthesizing fibrillar proteins, known as cytokeratin, which build up within the cells aggregating together forming tonofibrils. The tonofibrils go on to form the ...
Keratohyalin is a protein structure found in cytoplasmic granules of the keratinocytes in the stratum granulosum of the epidermis.Keratohyalin granules (KHG) mainly consist of keratin, profilaggrin, [1] loricrin [2] and trichohyalin proteins which contribute to cornification or keratinization, the process of the formation of epidermal cornified cell envelope.
During hair growth, as follicle bulb cells swiftly transform into cortical or cuticle hair keratinocytes, approximately 50-100 keratin genes become activated at the transcriptional level. [8] However, this intricate process can be simplified into a few highly preserved gene families.
During sloughing, it is this layer that is removed. [1] As cells progress through the various layers to reach the stratum corneum, they undergo a process called cornification which transforms keratinocytes to corneocytes, effectively killing them. The resulting cell is flat, has no nucleus, and is surrounded by a cellular envelope. [2]
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In reptiles, the stratum corneum is permanent, and is replaced only during times of rapid growth, in a process called ecdysis or moulting. This is conferred by the presence of beta-keratin, which provides a much more rigid skin layer. In the human forearm, about 1300 cells per cm 2 per hour are shed. [10]