Bookbot

Sensing the environment

Parametry

  • 132 strony
  • 5 godzin czytania

Więcej o książce

The skin, the body's largest organ, serves as a crucial interface with the external environment, detecting and responding to various stressors, including solar radiation. It functions as a peripheral neuroendocrine-immune organ, closely linked to central regulatory systems, aiding in the maintenance of peripheral homeostasis. Epidermal and dermal cells produce and respond to stress neurotransmitters, neuropeptides, and hormones, stimulated by ultraviolet radiation, biological factors, and other agents. Local biologically active products include cytokines, biogenic amines (such as catecholamines, histamine, serotonin), melatonin, acetylcholine, and various neuropeptides and hormones from the pituitary and hypothalamus. The production of these molecules follows a hierarchical organization along classical neuroendocrine axes, including the hypothalamic-pituitary-adrenal axis and others. Disruptions in these axes or their communication can lead to skin and systemic diseases. Additionally, these neuroendocrine networks help limit the effects of harmful environmental agents, preserving local and global homeostasis. Skin-derived factors can activate cutaneous nerve endings to alert the brain or coordinate responses through direct neurotransmission. Rapid communication between epidermal, dermal, and adnexal compartments is also facilitated by neurotransmission, allowing skin cells to regulate both peripheral and global homeostasis eff

Zakup książki

Sensing the environment, Andrzej T. Slominski

Język
Rok wydania
2012
Oprawa
(miękka)
Jak tylko się pojawi, wyślemy Ci wiadomość e-mail.

Metody płatności

Nikt jeszcze nie ocenił.Oceń

Tytuł
Sensing the environment
Język
angielski
Wydawca
Springer
Rok wydania
2012
Oprawa
miękka
Liczba stron
132
ISBN10
3642196829
ISBN13
9783642196829
Seria
Opis
The skin, the body's largest organ, serves as a crucial interface with the external environment, detecting and responding to various stressors, including solar radiation. It functions as a peripheral neuroendocrine-immune organ, closely linked to central regulatory systems, aiding in the maintenance of peripheral homeostasis. Epidermal and dermal cells produce and respond to stress neurotransmitters, neuropeptides, and hormones, stimulated by ultraviolet radiation, biological factors, and other agents. Local biologically active products include cytokines, biogenic amines (such as catecholamines, histamine, serotonin), melatonin, acetylcholine, and various neuropeptides and hormones from the pituitary and hypothalamus. The production of these molecules follows a hierarchical organization along classical neuroendocrine axes, including the hypothalamic-pituitary-adrenal axis and others. Disruptions in these axes or their communication can lead to skin and systemic diseases. Additionally, these neuroendocrine networks help limit the effects of harmful environmental agents, preserving local and global homeostasis. Skin-derived factors can activate cutaneous nerve endings to alert the brain or coordinate responses through direct neurotransmission. Rapid communication between epidermal, dermal, and adnexal compartments is also facilitated by neurotransmission, allowing skin cells to regulate both peripheral and global homeostasis eff