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[[File:Hormone_Transport.png|Hormone Transport|thumb]]
[[File:1802_Examples_of_Amine_Peptide_Protein_and_Steroid_Hormone_Structure.jpg|Examples of Amine, Peptide, Protein, and Steroid Hormone Structure|thumb]]
[[File:Steroid_and_Lipid_Hormones.svg|Steroid and Lipid Hormones|thumb]]
[[Image:Epinephrine structure.svg|right|thumb|180px|The chemical structure of the hormone [[Epinephrine]] (adrenaline)]]
[[Image:Epinephrine structure.svg|right|thumb|180px|The chemical structure of the hormone [[Epinephrine]] (adrenaline)]]
'''Hormones''' represent the chemical messengers of the [[endocrine system]], playing an integral role in the body's internal regulation in conjunction with the [[nervous system]].<ref name="Neave">{{cite book | author = Neave N. | title = Hormones and behaviour: a psychological approach | year =2008 | publisher = Cambridge Univ. Press | location = Cambridge | isbn = 978-0521692014 | laysummary = http://muse.jhu.edu/journals/pbm/summary/v053/53.1.gibson.html | laysource = Project Muse }}</ref> Found in every multicellular organism, hormones interact with specific cells that possess the corresponding receptors for each hormone.<ref>Nussey S. & Whitehead S. 2001. ''Endocrinology: an integrated approach''. Oxford: Bios Scientific Publ. {{ISBN|978-1-85996-252-7}} [https://www.ncbi.nlm.nih.gov/books/NBK22/]</ref>
'''Hormones''' are chemical messengers that regulate various biological processes in the body. They play a critical role in maintaining [[homeostasis]], coordinating growth and development, regulating metabolism, and enabling communication between different systems of the body. Hormones are produced by specialized cells and released into the bloodstream, where they travel to target cells equipped with specific receptors.
[[File:Hormones.svg|Diagram of Hormonal Pathways|thumb]]
== Function and Production ==
Hormones are synthesized and secreted by [[endocrine glands]], which release their products directly into the bloodstream. In contrast, [[exocrine glands]] secrete substances through ducts to the outside of the body or into the digestive system.


== Hormonal Function and Production ==
The first hormone, [[secretin]], was discovered in 1902, marking the beginning of endocrinology as a scientific field. The term 'hormone' was introduced in 1905 to describe these chemical messengers that regulate physiological activities.


Cells capable of hormone production exist throughout the body, with specialized cells congregating in [[gland]]s, dedicated to hormone synthesis and release. Hormones can originate from different types of glands - "endocrine" glands, which secrete hormones directly into the bloodstream, and "exocrine" glands, which release their products externally through ducts, as seen in sweat and salivary glands.
== Major Roles of Hormones ==
Hormones influence almost every aspect of human physiology, including:
* Metabolism – Regulation of energy production and usage.
* Growth and Development – Controlling cellular proliferation, differentiation, and maturation.
* Homeostasis – Maintaining internal stability of temperature, hydration, and blood sugar.
* Reproductive Functions – Regulating [[puberty]], [[menstruation]], and [[pregnancy]].
* Behavioral Responses – Affecting mood, stress responses, and cognitive function.


The concept of hormones was established in 1902 with the discovery of [[secretin]]. The term 'hormone', however, was not introduced until 1905.<ref name="pmid_15308687">{{Citation |last=Hirst |first=BH |year=2004 |title=Secretin and the exposition of hormonal control |journal=J Physiol |volume=560 |pages=339 |pmid=15308687}}</ref>
== Types of Hormones ==
Hormones can be classified into four major types based on their chemical structure:


== Hormonal Activities ==
=== 1. [[Steroid Hormones]] ===
Steroid hormones are derived from [[cholesterol]] and are lipid-soluble, allowing them to cross cell membranes easily. They act on target cells by binding to intracellular receptors.
* Examples:
* [[Cortisol]] – Regulates stress responses.
* [[Testosterone]] – Influences male secondary sexual characteristics.
* [[Estrogen]] – Regulates female reproductive functions.


Hormones enact a broad spectrum of activities, from regulating [[metabolism]] and instigating cell growth and death, to triggering sexual development, as evidenced by the roles of [[estrogen]] and [[progesterone]] in female puberty. They also assist in maintaining homeostasis, a stable internal state, managing factors like temperature, hydration, and blood sugar levels. A hormone released from one gland may even stimulate other glands to produce different hormones.
=== 2. [[Eicosanoids]] ===
Eicosanoids are hormone-like molecules derived from [[fatty acids]]. They primarily act as local hormones, affecting nearby cells and tissues.
* Examples:
* [[Prostaglandins]] – Involved in inflammation and blood clotting.
* [[Leukotrienes]] – Play a role in immune responses.


== Categories of Hormones ==
=== 3. [[Amino Acid-Derived Hormones]] ===
These hormones are synthesized from amino acids and are usually water-soluble.
* Examples:
* [[Thyroxine (T4)]] – Regulates metabolism.
* [[Melatonin]] – Controls sleep-wake cycles.
* [[Epinephrine]] – Initiates fight-or-flight response.


Hormones in vertebrates generally fall into four categories, based on their chemical composition:
=== 4. [[Peptide and Protein Hormones]] ===
These hormones are composed of chains of amino acids and vary in size from small peptides to large proteins.
* Examples:
* [[Insulin]] – Regulates blood sugar levels.
* [[Growth Hormone]] – Stimulates body growth and development.
* [[Oxytocin]] – Promotes social bonding and childbirth contractions.


* [[Steroid hormones]]: Derived from [[cholesterol]], they include sex hormones like [[estradiol]] and [[testosterone]], and the stress hormone, [[cortisol]].<ref name=Marieb>{{cite book | last = Marieb | first = Elaine | title = Anatomy & physiology | publisher = Pearson Education | location = Glenview, IL | year = 2014 | isbn = 978-0321861580 }}</ref>
== Hormonal Regulation ==
* [[Eicosanoids]]: These are lipid-based hormones, synthesized from fats. Eicosanoids predominantly function as local hormones, transmitting messages in close proximity to their production site.
Hormone levels are tightly controlled by feedback mechanisms to maintain balance and proper function.
* [[Amino acid]]-derived hormones: This group includes hormones such as [[melatonin]], which affects the brain, and [[thyroxine]], which has a broad cellular reach. Many neurotransmitters, or hormones passed between nerve cells, belong to this category.
 
* [[Peptides]], [[polypeptide]]s, and [[proteins]]: These hormones range from small peptides like [[thyrotropin-releasing hormone|TRH]] and [[vasopressin]], to larger proteins, like [[insulin]] and [[growth hormone]]. Complex protein hormones with carbohydrate side-chains are known as [[glycoprotein]] hormones, with [[luteinizing hormone]], [[follicle-stimulating hormone]], and [[thyroid-stimulating hormone]] serving as examples.
=== Negative Feedback Mechanism ===
Most hormones are regulated through negative feedback loops, ensuring stable levels within the body. When a hormone reaches its desired effect, the endocrine system reduces its production.
[[File:Negative_Feedback_Gif.gif|thumb|250px|center|Negative Feedback Regulation]]
 
* Example: When blood sugar levels rise, the pancreas secretes [[insulin]] to lower glucose levels. Once the blood sugar is normalized, insulin secretion decreases.


== Hormonal Regulation ==
=== Positive Feedback Mechanism ===
In some cases, hormone release amplifies a response until a specific outcome is achieved.
* Example: During childbirth, the hormone [[oxytocin]] is released to intensify contractions. This continues until delivery occurs.


Hormonal regulation, the control of hormone production and release, is an essential aspect of biology.
== Effects of Hormonal Imbalance ==
Disruptions in hormone production can lead to a range of disorders:
* [[Diabetes Mellitus]] – Resulting from insulin deficiency or resistance.
* [[Hypothyroidism]] – Due to low thyroid hormone levels, leading to fatigue and weight gain.
* [[Hyperthyroidism]] – Overproduction of thyroid hormones, causing rapid metabolism and anxiety.
* [[Cushing's Syndrome]] – Excess cortisol production, leading to weight gain and high blood pressure.
* [[Addison's Disease]] – Insufficient cortisol and aldosterone levels, leading to fatigue and weakness.


=== Negative Feedback ===
== Endocrine Glands and Hormones ==
The body's endocrine system comprises several glands that produce and release hormones.


Most hormonal regulation operates via a [[negative feedback]] system. In this setup, a hormone induces an effect, which is then detected by the hormone-producing cells. Upon recognizing the impact of the hormone, these cells halt its production. This regulatory feedback loop ensures that hormone levels in the body remain balanced and effectively maintain homeostasis.
{| class="wikitable"
|+ Major Endocrine Glands and Their Hormones
|-
! Gland !! Location !! Major Hormones !! Functions
|-
| [[Hypothalamus]] || Brain || TRH, CRH, GnRH || Regulates pituitary hormone release
|-
| [[Pituitary gland]] || Brain || GH, LH, FSH, ACTH || Master gland, controls other glands
|-
| [[Thyroid gland]] || Neck || T3, T4, Calcitonin || Regulates metabolism
|-
| [[Parathyroid glands]] || Neck || PTH || Regulates calcium levels
|-
| [[Adrenal glands]] || Above kidneys || Cortisol, Adrenaline || Stress response, metabolism
|-
| [[Pancreas]] || Abdomen || Insulin, Glucagon || Regulates blood sugar
|-
| [[Ovaries]] || Pelvis (females) || Estrogen, Progesterone || Regulates female reproduction
|-
| [[Testes]] || Scrotum (males) || Testosterone || Regulates male reproduction
|}


== Hormonal Impact on Health ==
== Hormones in Medicine ==
Hormones are widely used in medicine to treat various conditions. Common medical applications include:
* Insulin therapy – For diabetes management.
* Thyroid hormone replacement – For hypothyroidism.
* Corticosteroids – To reduce inflammation in autoimmune disorders.
* Hormone Replacement Therapy (HRT) – Used to manage menopause symptoms.


Alterations in hormone levels can lead to various health conditions. Overproduction or underproduction of specific hormones can disrupt the body's normal function and lead to disorders such as diabetes, thyroid diseases, growth disorders, and many others. Consequently, understanding the regulation and function of hormones is vital for diagnosing and treating these conditions.
== Future of Hormonal Research ==
Advancements in endocrinology continue to improve treatments for hormonal disorders. Current research focuses on:
* Personalized hormone therapies tailored to individual genetic profiles.
* Hormone-based treatments for metabolic diseases and obesity.
* Bioengineered hormones with improved efficacy and fewer side effects.


== See Also ==
== See Also ==
* [[Endocrine system]]
* [[Endocrine system]]
* [[Endocrine gland]]
* [[Hormone therapy]]
* [[Exocrine gland]]
* [[Steroid hormones]]
* [[Steroid hormones]]
* [[Eicosanoids]]
* [[Neurotransmitters]]
* [[Amino acid-derived hormones]]
* [[Hormonal regulation]]
* [[Peptide hormones]]
* [[Homeostasis]]
* [[Glycoprotein hormones]]
 
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{{Endocrine system}}
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{{Physiology}}
{{Medicine}}
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[[Category:Hormones| ]]
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Latest revision as of 20:41, 19 March 2025

Hormone Transport
Examples of Amine, Peptide, Protein, and Steroid Hormone Structure
Steroid and Lipid Hormones
The chemical structure of the hormone Epinephrine (adrenaline)

Hormones are chemical messengers that regulate various biological processes in the body. They play a critical role in maintaining homeostasis, coordinating growth and development, regulating metabolism, and enabling communication between different systems of the body. Hormones are produced by specialized cells and released into the bloodstream, where they travel to target cells equipped with specific receptors.

Diagram of Hormonal Pathways

Function and Production[edit]

Hormones are synthesized and secreted by endocrine glands, which release their products directly into the bloodstream. In contrast, exocrine glands secrete substances through ducts to the outside of the body or into the digestive system.

The first hormone, secretin, was discovered in 1902, marking the beginning of endocrinology as a scientific field. The term 'hormone' was introduced in 1905 to describe these chemical messengers that regulate physiological activities.

Major Roles of Hormones[edit]

Hormones influence almost every aspect of human physiology, including:

  • Metabolism – Regulation of energy production and usage.
  • Growth and Development – Controlling cellular proliferation, differentiation, and maturation.
  • Homeostasis – Maintaining internal stability of temperature, hydration, and blood sugar.
  • Reproductive Functions – Regulating puberty, menstruation, and pregnancy.
  • Behavioral Responses – Affecting mood, stress responses, and cognitive function.

Types of Hormones[edit]

Hormones can be classified into four major types based on their chemical structure:

1. Steroid Hormones[edit]

Steroid hormones are derived from cholesterol and are lipid-soluble, allowing them to cross cell membranes easily. They act on target cells by binding to intracellular receptors.

  • Examples:
  • Cortisol – Regulates stress responses.
  • Testosterone – Influences male secondary sexual characteristics.
  • Estrogen – Regulates female reproductive functions.

2. Eicosanoids[edit]

Eicosanoids are hormone-like molecules derived from fatty acids. They primarily act as local hormones, affecting nearby cells and tissues.

3. Amino Acid-Derived Hormones[edit]

These hormones are synthesized from amino acids and are usually water-soluble.

4. Peptide and Protein Hormones[edit]

These hormones are composed of chains of amino acids and vary in size from small peptides to large proteins.

  • Examples:
  • Insulin – Regulates blood sugar levels.
  • Growth Hormone – Stimulates body growth and development.
  • Oxytocin – Promotes social bonding and childbirth contractions.

Hormonal Regulation[edit]

Hormone levels are tightly controlled by feedback mechanisms to maintain balance and proper function.

Negative Feedback Mechanism[edit]

Most hormones are regulated through negative feedback loops, ensuring stable levels within the body. When a hormone reaches its desired effect, the endocrine system reduces its production.

Negative Feedback Regulation
  • Example: When blood sugar levels rise, the pancreas secretes insulin to lower glucose levels. Once the blood sugar is normalized, insulin secretion decreases.

Positive Feedback Mechanism[edit]

In some cases, hormone release amplifies a response until a specific outcome is achieved.

  • Example: During childbirth, the hormone oxytocin is released to intensify contractions. This continues until delivery occurs.

Effects of Hormonal Imbalance[edit]

Disruptions in hormone production can lead to a range of disorders:

  • Diabetes Mellitus – Resulting from insulin deficiency or resistance.
  • Hypothyroidism – Due to low thyroid hormone levels, leading to fatigue and weight gain.
  • Hyperthyroidism – Overproduction of thyroid hormones, causing rapid metabolism and anxiety.
  • Cushing's Syndrome – Excess cortisol production, leading to weight gain and high blood pressure.
  • Addison's Disease – Insufficient cortisol and aldosterone levels, leading to fatigue and weakness.

Endocrine Glands and Hormones[edit]

The body's endocrine system comprises several glands that produce and release hormones.

Major Endocrine Glands and Their Hormones
Gland Location Major Hormones Functions
Hypothalamus Brain TRH, CRH, GnRH Regulates pituitary hormone release
Pituitary gland Brain GH, LH, FSH, ACTH Master gland, controls other glands
Thyroid gland Neck T3, T4, Calcitonin Regulates metabolism
Parathyroid glands Neck PTH Regulates calcium levels
Adrenal glands Above kidneys Cortisol, Adrenaline Stress response, metabolism
Pancreas Abdomen Insulin, Glucagon Regulates blood sugar
Ovaries Pelvis (females) Estrogen, Progesterone Regulates female reproduction
Testes Scrotum (males) Testosterone Regulates male reproduction

Hormones in Medicine[edit]

Hormones are widely used in medicine to treat various conditions. Common medical applications include:

  • Insulin therapy – For diabetes management.
  • Thyroid hormone replacement – For hypothyroidism.
  • Corticosteroids – To reduce inflammation in autoimmune disorders.
  • Hormone Replacement Therapy (HRT) – Used to manage menopause symptoms.

Future of Hormonal Research[edit]

Advancements in endocrinology continue to improve treatments for hormonal disorders. Current research focuses on:

  • Personalized hormone therapies tailored to individual genetic profiles.
  • Hormone-based treatments for metabolic diseases and obesity.
  • Bioengineered hormones with improved efficacy and fewer side effects.

See Also[edit]