Neuroendocrine signaling in the skin with a special focus on the epidermal neuropeptides
Нейроэндокринная сигнализация в коже с особым вниманием к эпидермальным нейропептидам
2022-11-01
SCID: 54.1/ekfuv77y
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cutaneous inflammatory and pigmentary disordersepidermal neuropeptideskeratinocyte differentiationneuroendocrine signaling in skinskin immune-neuroendocrine communication
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Abstract (AI)
The skin, which is comprised of the epidermis, dermis, and subcutaneous tissue, is the largest organ in the human body and it plays a crucial role in the regulation of the body's homeostasis. These functions are regulated by local neuroendocrine and immune systems with a plethora of signaling molecules produced by resident and immune cells. In addition, neurotransmitters, endocrine factors, neuropeptides, and cytokines released from nerve endings play a central role in the skin's responses to stress. These molecules act on the corresponding receptors in an intra-, juxta-, para-, or autocrine fashion. The epidermis as the outer most component of skin forms a barrier directly protecting against environmental stressors. This protection is assured by an intrinsic keratinocyte differentiation program, pigmentary system, and local nervous, immune, endocrine, and microbiome elements. These constituents communicate cross-functionally among themselves and with corresponding systems in the dermis and hypodermis to secure the basic epidermal functions to maintain local (skin) and global (systemic) homeostasis. The neurohormonal mediators and cytokines used in these communications regulate physiological skin functions separately or in concert. Disturbances in the functions in these systems lead to cutaneous pathology that includes inflammatory (i.e., psoriasis, allergic, or atopic dermatitis, etc.) and keratinocytic hyperproliferative disorders (i.e., seborrheic and solar keratoses), dysfunction of adnexal structure (i.e., hair follicles, eccrine, and sebaceous glands), hypersensitivity reactions, pigmentary disorders (vitiligo, melasma, and hypo- or hyperpigmentary responses), premature aging, and malignancies (melanoma and nonmelanoma skin cancers). These cellular, molecular, and neural components preserve skin integrity and protect against skin pathologies and can act as "messengers of the skin" to the central organs, all to preserve organismal survival.
Key Findings
1
Cellular, molecular, and neural skin components can transmit signals to central organs, acting as 'messengers of the skin' to support organismal survival.
2
Disruption of neuroendocrine-immune signaling in skin contributes to various pathologies, including inflammatory diseases (psoriasis, allergic/atopic dermatitis), hyperproliferative disorders, adnexal dysfunction, pigmentary disorders, premature aging, and skin cancers.
3
Epidermal protection relies on keratinocyte differentiation, the pigmentary system, and integrated local nervous, immune, endocrine, and microbiome elements communicating with dermis and hypodermis.
4
Neurotransmitters, endocrine factors, neuropeptides, and cytokines from nerve endings centrally mediate skin stress responses via intra-, juxta-, para-, and autocrine signaling.
5
Skin homeostasis is regulated by local neuroendocrine and immune systems that produce diverse signaling molecules from resident and immune cells.
Research Object
Epidermis (the outermost layer of the skin)
Research Subject
Neuroendocrine signaling mediated by epidermal neuropeptides and related neurotransmitters, endocrine factors, and cytokines regulating epidermal functions and skin homeostasis
Publication Details
Publication Date
2022-11-01
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