Peripheral chemoreceptors (of the
carotid and
aortic bodies) are so named because they are
sensory extensions of the
peripheral nervous system
The peripheral nervous system (PNS) is one of two components that make up the nervous system of Bilateria, bilateral animals, with the other part being the central nervous system (CNS). The PNS consists of nerves and ganglia, which lie outside t ...
into
blood vessels
Blood vessels are the tubular structures of a circulatory system that transport blood throughout many animals’ bodies. Blood vessels transport blood cells, nutrients, and oxygen to most of the tissues of a body. They also take waste an ...
where they detect changes in chemical concentrations.
As
transducers
A transducer is a device that converts energy from one form to another. Usually a transducer converts a signal in one form of energy to a signal in another.
Transducers are often employed at the boundaries of automation, measurement, and contro ...
of patterns of variability in the surrounding environment, carotid and aortic bodies count as chemosensors in a similar way as
taste buds
Taste buds are clusters of taste receptor cells, which are also known as gustatory cells. The taste receptors are located around the small structures known as papillae found on the upper surface of the tongue, soft palate, upper esophagus, th ...
and
photoreceptors. However, because carotid and aortic bodies detect variation within the body's internal organs, they are considered
interoceptors.
Taste buds
Taste buds are clusters of taste receptor cells, which are also known as gustatory cells. The taste receptors are located around the small structures known as papillae found on the upper surface of the tongue, soft palate, upper esophagus, th ...
,
olfactory bulbs
The olfactory bulb (Latin: ''bulbus olfactorius'') is a grey matter, neural structure of the vertebrate forebrain involved in olfaction, the sense of odor, smell. It sends olfactory information to be further processed in the amygdala, the orbitof ...
, photoreceptors, and other receptors associated with the five traditional
sensory modalities, by contrast, are exteroceptors in that they respond to stimuli outside the body.
The body also contains
proprioceptors, which respond to the amount of stretch within the
organ
Organ and organs may refer to:
Biology
* Organ (biology), a group of tissues organized to serve a common function
* Organ system, a collection of organs that function together to carry out specific functions within the body.
Musical instruments
...
, usually
muscle
Muscle is a soft tissue, one of the four basic types of animal tissue. There are three types of muscle tissue in vertebrates: skeletal muscle, cardiac muscle, and smooth muscle. Muscle tissue gives skeletal muscles the ability to muscle contra ...
, that they occupy.
As for their particular function, peripheral chemoreceptors help maintain
homeostasis
In biology, homeostasis (British English, British also homoeostasis; ) is the state of steady internal physics, physical and chemistry, chemical conditions maintained by organism, living systems. This is the condition of optimal functioning fo ...
in the cardiorespiratory system by monitoring concentrations of blood borne chemicals.
These
polymodal sensors respond to variations in a number of blood properties, including low oxygen (
hypoxia), high carbon dioxide (
hypercapnia
Hypercapnia (from the Greek ''hyper'', "above" or "too much" and ''kapnos'', "smoke"), also known as hypercarbia and CO2 retention, is a condition of abnormally elevated carbon dioxide (CO2) levels in the blood. Carbon dioxide is a gaseous pro ...
), and low glucose (
hypoglycemia
Hypoglycemia (American English), also spelled hypoglycaemia or hypoglycæmia (British English), sometimes called low blood sugar, is a fall in blood sugar to levels below normal, typically below 70 mg/dL (3.9 mmol/L). Whipple's tria ...
).
Hypoxia and
hypercapnia
Hypercapnia (from the Greek ''hyper'', "above" or "too much" and ''kapnos'', "smoke"), also known as hypercarbia and CO2 retention, is a condition of abnormally elevated carbon dioxide (CO2) levels in the blood. Carbon dioxide is a gaseous pro ...
are the most heavily studied and understood conditions detected by the peripheral chemoreceptors.
Glucose
Glucose is a sugar with the Chemical formula#Molecular formula, molecular formula , which is often abbreviated as Glc. It is overall the most abundant monosaccharide, a subcategory of carbohydrates. It is mainly made by plants and most algae d ...
is discussed in a later section.
Afferent nerves carry signals back from the carotid and aortic bodies to the
brainstem
The brainstem (or brain stem) is the posterior stalk-like part of the brain that connects the cerebrum with the spinal cord. In the human brain the brainstem is composed of the midbrain, the pons, and the medulla oblongata. The midbrain is conti ...
, which responds accordingly (e.g. increasing
ventilation
Ventilation may refer to:
* Ventilation (physiology), the movement of air between the environment and the lungs via inhalation and exhalation
** Mechanical ventilation, in medicine, using artificial methods to assist breathing
*** Respirator, a ma ...
).
Structure
Both
carotid bodies and
aortic bodies increase sensory discharge during hypoxia.
Carotid bodies are considered the primary peripheral chemoreceptor and have been shown to contribute more to a
hypoxic response. However, in the chronic absence of the carotid body, the aortic body is able to perform a similar respiratory regulatory role, suggesting that it possesses efficacious mechanisms of
signal transduction
Signal transduction is the process by which a chemical or physical signal is transmitted through a cell as a biochemical cascade, series of molecular events. Proteins responsible for detecting stimuli are generally termed receptor (biology), rece ...
as well.
The differing locations of the two bodies ideally position them to take advantage of different information; the carotid bodies, located on one of the main
arteries
An artery () is a blood vessel in humans and most other animals that takes oxygenated blood away from the heart in the systemic circulation to one or more parts of the body. Exceptions that carry deoxygenated blood are the pulmonary arteries in ...
of the
neck
The neck is the part of the body in many vertebrates that connects the head to the torso. It supports the weight of the head and protects the nerves that transmit sensory and motor information between the brain and the rest of the body. Addition ...
, monitor
partial pressure
In a mixture of gases, each constituent gas has a partial pressure which is the notional pressure of that constituent gas as if it alone occupied the entire volume of the original mixture at the same temperature. The total pressure of an ideal g ...
within arterial vessels while aortic body, located on the
aortic arch, monitors oxygen concentration closer to the
heart
The heart is a muscular Organ (biology), organ found in humans and other animals. This organ pumps blood through the blood vessels. The heart and blood vessels together make the circulatory system. The pumped blood carries oxygen and nutrie ...
.
Each of these bodies is composed of a similar collection of cells, and it is the post-transduction
signal processing
Signal processing is an electrical engineering subfield that focuses on analyzing, modifying and synthesizing ''signals'', such as audio signal processing, sound, image processing, images, Scalar potential, potential fields, Seismic tomograph ...
that differentiates their responses. However, little is known about the specifics of either of these signaling mechanisms.
Microanatomy
Carotid and aortic bodies are clusters of cells located on the
common carotid artery
In anatomy, the left and right common carotid arteries (carotids) () are artery, arteries that supply the head and neck with oxygenated blood; they divide in the neck to form the external carotid artery, external and internal carotid artery, inte ...
and the
aortic arch, respectively.
Each of these peripheral chemoreceptors is composed of type I
glomus cells and glia-like type II cells.
The type-I cells
transduce the signals from the bloodstream and are
innervated by
afferent nerve fibers leading back to (in the carotid body) the
carotid sinus nerve and then on to the
glossopharyngeal nerve
The glossopharyngeal nerve (), also known as the ninth cranial nerve, cranial nerve IX, or simply CN IX, is a cranial nerve that exits the brainstem from the sides of the upper Medulla oblongata, medulla, just anterior (closer to the nose) to t ...
and medulla of the
brainstem
The brainstem (or brain stem) is the posterior stalk-like part of the brain that connects the cerebrum with the spinal cord. In the human brain the brainstem is composed of the midbrain, the pons, and the medulla oblongata. The midbrain is conti ...
. The aortic body, by contrast, is connected to the medulla via the
vagus nerve
The vagus nerve, also known as the tenth cranial nerve (CN X), plays a crucial role in the autonomic nervous system, which is responsible for regulating involuntary functions within the human body. This nerve carries both sensory and motor fibe ...
.
They also receive input from
efferent nerve fibers leading back to the same set of nerves. The entire cluster of cells is infiltrated with
capillaries
A capillary is a small blood vessel, from 5 to 10 micrometres in diameter, and is part of the microcirculation system. Capillaries are microvessels and the smallest blood vessels in the body. They are composed of only the tunica intima (the in ...
to provide access to the bloodstream; the high capillary density makes this one of the areas of the body with the greatest blood flow.
Type I cells are densely packed with
vesicles containing various neurotransmitters, including
dopamine
Dopamine (DA, a contraction of 3,4-dihydroxyphenethylamine) is a neuromodulatory molecule that plays several important roles in cells. It is an organic chemical of the catecholamine and phenethylamine families. It is an amine synthesized ...
,
ATP,
serotonin
Serotonin (), also known as 5-hydroxytryptamine (5-HT), is a monoamine neurotransmitter with a wide range of functions in both the central nervous system (CNS) and also peripheral tissues. It is involved in mood, cognition, reward, learning, ...
,
catecholamine
A catecholamine (; abbreviated CA), most typically a 3,4-dihydroxyphenethylamine, is a monoamine neurotransmitter, an organic compound that has a catechol (benzene with two hydroxyl side groups next to each other) and a side-chain amine.
Cate ...
, released during
transduction.
Type I cells are often connected via
gap junctions
Gap junctions are Membrane channel, membrane channels between adjacent cells that allow the direct exchange of cytoplasmic substances, such small molecules, substrates, and metabolites.
Gap junctions were first described as ''close appositions' ...
, which might allow for quick communication between cells when transducing signals.
Type II cells occur in a ratio of about 1 to 4 with type I cells. Their long bodies usually occur in close association with type I cells, though they do not entirely encase type I cells.
They lack the vesicles of type I cells used in
neurotransmitter
A neurotransmitter is a signaling molecule secreted by a neuron to affect another cell across a Chemical synapse, synapse. The cell receiving the signal, or target cell, may be another neuron, but could also be a gland or muscle cell.
Neurotra ...
communication,
but studies indicate they function as chemoreceptor
stem cells
In multicellular organisms, stem cells are undifferentiated or partially differentiated cells that can change into various types of cells and proliferate indefinitely to produce more of the same stem cell. They are the earliest type of cell ...
and can respond to prolonged exposure to hypoxia by proliferating into type I cells themselves.
They may also bolster rapid communication among type I cells by amplifying release of one of the primary
neurotransmitters
A neurotransmitter is a signaling molecule secreted by a neuron to affect another cell across a synapse. The cell receiving the signal, or target cell, may be another neuron, but could also be a gland or muscle cell.
Neurotransmitters are rele ...
in chemoreceptive signaling, ATP.
Development
Sensitivity and
physiology
Physiology (; ) is the science, scientific study of function (biology), functions and mechanism (biology), mechanisms in a life, living system. As a branches of science, subdiscipline of biology, physiology focuses on how organisms, organ syst ...
of the peripheral chemoreceptors changes throughout the lifespan.
Infancy
Respiration in
neonates
In common terminology, a baby is the very young offspring of adult human beings, while infant (from the Latin word ''infans'', meaning 'baby' or 'child') is a formal or specialised synonym. The terms may also be used to refer to Juvenile (orga ...
is irregular, prone to
periodic breathing and
apnea
Apnea (also spelled apnoea in British English) is the temporary cessation of breathing. During apnea, there is no movement of the muscles of inhalation, and the volume of the lungs initially remains unchanged. Depending on how blocked the ...
.
In utero and at birth, the carotid body's response to hypoxia is not fully developed; it takes a few days to a few weeks to increase its sensitivity to that of an adult carotid body. During this period of development, it is proposed that
neonates
In common terminology, a baby is the very young offspring of adult human beings, while infant (from the Latin word ''infans'', meaning 'baby' or 'child') is a formal or specialised synonym. The terms may also be used to refer to Juvenile (orga ...
heavily rely on other oxygen-sensing chemoreceptors, such as the aortic body or
central chemoreceptors
A central chemoreceptor is a chemoreceptor sensitive to the pH of its environment. Central chemoreceptors are located on the ventrolateral medulla oblongata, medullary surface in vicinity of the exit of CN IX and CN X in the central nervous syste ...
.
However, non-carotid body chemoreceptors are sometimes not enough to ensure appropriate ventilatory response;
SIDS deaths occur most frequently during the days or weeks in which the carotid body is still developing, and it is suggested that lack of appropriate carotid body activity is implicated in this condition. SIDS victims often are reported to have displayed some of the characteristic troubles in carotid body development, including
periodic breathing, much
sleep apnea
Sleep apnea (sleep apnoea or sleep apnœa in British English) is a sleep-related breathing disorder in which repetitive Apnea, pauses in breathing, periods of shallow breathing, or collapse of the upper airway during sleep results in poor vent ...
, impaired
arousal
Arousal is the physiology, physiological and psychology, psychological state of being awoken or of Five senses, sense organs stimulated to a point of perception. It involves activation of the ascending reticular activating system (ARAS) in the hu ...
during sleep, and low sensitivity to hypoxia. The carotid bodies of SIDS victims also often display physiological abnormalities, such as hypo- and
hypertrophy
Hypertrophy is the increase in the volume of an organ or tissue due to the enlargement of its component cells. It is distinguished from hyperplasia, in which the cells remain approximately the same size but increase in number. Although hypertro ...
. Many of the findings on to carotid body's relation to SIDS report that carotid body development is impaired by environmental factors that were already known to increase the risk of SIDS, such as
premature birth
Preterm birth, also known as premature birth, is the birth of a baby at fewer than 37 weeks gestational age, as opposed to full-term delivery at approximately 40 weeks. Extreme preterm is less than 28 weeks, very early preterm birth is betwee ...
and exposure to smoke, substances of abuse,
hyperoxia, and hypoxia, so it may seem initially as if carotid body studies are only extending what we know about SIDS into another domain. However, understanding the mechanisms that impair carotid body development could help elucidate how certain aspects of
neonatal
In common terminology, a baby is the very young offspring of adult human beings, while infant (from the Latin word ''infans'', meaning 'baby' or 'child') is a formal or specialised synonym. The terms may also be used to refer to Juvenile (orga ...
, particularly
premature
Premature may refer to:
* ''Premature'' (2014 film), an American comedy film
* ''Premature'' (2019 film), an American romantic drama film
* '' PREMature'', a 2015 British television drama miniseries
See also
* Premature aging, of an organism
* ...
, care might be improved. For example,
oxygen therapy
Oxygen therapy, also referred to as supplemental oxygen, is the use of oxygen as medical treatment. Supplemental oxygen can also refer to the use of oxygen enriched air at altitude. Acute indications for therapy include hypoxemia (low blood o ...
may be an example of a technique that exposes premature infants to such high oxygen levels that it prevents them from acquiring appropriate sensitivity to normal oxygen levels.
Pregnancy
Increased base rate of
ventilation
Ventilation may refer to:
* Ventilation (physiology), the movement of air between the environment and the lungs via inhalation and exhalation
** Mechanical ventilation, in medicine, using artificial methods to assist breathing
*** Respirator, a ma ...
and
sensitivity to both
hypoxia and
hypercapnia
Hypercapnia (from the Greek ''hyper'', "above" or "too much" and ''kapnos'', "smoke"), also known as hypercarbia and CO2 retention, is a condition of abnormally elevated carbon dioxide (CO2) levels in the blood. Carbon dioxide is a gaseous pro ...
occur in pregnant women after
gestation
Gestation is the period of development during the carrying of an embryo, and later fetus, inside viviparous animals (the embryo develops within the parent). It is typical for mammals, but also occurs for some non-mammals. Mammals during pregn ...
week 20, and studies suggest this is due at least in part to changes in peripheral chemoreceptor sensitivity. Similar changes in sensitivity have been found in women administered levels of
hormones
A hormone (from the Greek participle , "setting in motion") is a class of signaling molecules in multicellular organisms that are sent to distant organs or tissues by complex biological processes to regulate physiology and behavior. Hormones a ...
that mimic the stage of the pregnancy in which these effects being to appear, suggesting that carotid and aortic body sensitivity is modulated by
neuroendocrine
Neuroendocrine cells are cells that receive neuronal input (through neurotransmitters released by nerve cells or neurosecretory cells) and, as a consequence of this input, release messenger molecules ( hormones) into the blood. In this way they b ...
processes.
However, findings tying peripheral chemoreceptors to pregnancy-induced variations in breathing could just be correlational, so further studies are needed to identify the cause behind this relation.
Physiology
Signal transduction
Peripheral chemoreceptors were identified as necessary to
breathing
Breathing (spiration or ventilation) is the rhythmical process of moving air into ( inhalation) and out of ( exhalation) the lungs to facilitate gas exchange with the internal environment, mostly to flush out carbon dioxide and bring in oxy ...
regulation much sooner than their mechanisms for acquiring information from the bloodstream were beginning to be understood.
Both carotid and aortic bodies are composed of type I and type II cells and are believed to
transduce signals from blood chemicals in the same way, though post-transduction signal communication may differ.
Chemosensory transduction in these
receptor
Receptor may refer to:
* Sensory receptor, in physiology, any neurite structure that, on receiving environmental stimuli, produces an informative nerve impulse
*Receptor (biochemistry), in biochemistry, a protein molecule that receives and respond ...
s is still an active area of research, and not all studies agree, but there is growing support for a transduction mechanism dependent upon
mitochondrial
A mitochondrion () is an organelle found in the cells of most eukaryotes, such as animals, plants and fungi. Mitochondria have a double membrane structure and use aerobic respiration to generate adenosine triphosphate (ATP), which is used ...
consumption of oxygen affecting the
AMPK enzyme.
Transferring the signal to the medulla requires that
neurotransmitter
A neurotransmitter is a signaling molecule secreted by a neuron to affect another cell across a Chemical synapse, synapse. The cell receiving the signal, or target cell, may be another neuron, but could also be a gland or muscle cell.
Neurotra ...
be released from the vesicles in the type I cells, and as with many other neural cells, this is triggered by an influx of
calcium
Calcium is a chemical element; it has symbol Ca and atomic number 20. As an alkaline earth metal, calcium is a reactive metal that forms a dark oxide-nitride layer when exposed to air. Its physical and chemical properties are most similar to it ...
into the cell after membrane
depolarization
In biology, depolarization or hypopolarization is a change within a cell (biology), cell, during which the cell undergoes a shift in electric charge distribution, resulting in less negative charge inside the cell compared to the outside. Depolar ...
.
The process of identifying
signal transduction
Signal transduction is the process by which a chemical or physical signal is transmitted through a cell as a biochemical cascade, series of molecular events. Proteins responsible for detecting stimuli are generally termed receptor (biology), rece ...
in
interoceptors such as the peripheral chemoreceptors requires moving backward from membrane depolarization to discover the previous steps, often internal to the cell, that transduces blood chemicals to a neural signal. Up to this point, most research agrees that membrane depolarization is caused by
inhibition of
potassium channels
Potassium channels are the most widely distributed type of ion channel found in virtually all organisms. They form potassium-selective pores that span cell membranes. Potassium channels are found in most cell types and control a wide variety of ...
that otherwise maintain the
resting potential
The relatively static membrane potential of quiescent cells is called the resting membrane potential (or resting voltage), as opposed to the specific dynamic electrochemical phenomena called action potential and graded membrane potential. The re ...
.
As to the step before potassium channel inhibition, many mechanisms are proposed, none of which receive unanimous support from the research community.
Multiple types of potassium channels respond to
hypoxia, with significant differences between different species, and a number of different types for each species.
Expression of potassium channels also changes throughout the lifetime.
Some studies propose that heme-oxygenase 2 is the
transducer
A transducer is a device that Energy transformation, converts energy from one form to another. Usually a transducer converts a signal in one form of energy to a signal in another.
Transducers are often employed at the boundaries of automation, M ...
; however, since its deletion in mice does not affect chemoreceptor oxygen sensitivity, this hypothesis is open to question. Another enzyme, AMP-activated protein kinase (AMPK), provides a mechanism that could apply not only to all types of potassium channels but also other oxygen-sensing
tissues in the body, such as
pulmonary vasculature and
neonatal
In common terminology, a baby is the very young offspring of adult human beings, while infant (from the Latin word ''infans'', meaning 'baby' or 'child') is a formal or specialised synonym. The terms may also be used to refer to Juvenile (orga ...
chromaffin cells
Chromaffin cells, also called pheochromocytes (or phaeochromocytes), are neuroendocrine cells found mostly in the medulla of the adrenal glands in mammals. These cells serve a variety of functions such as serving as a response to stress, monito ...
. AMPK is an
enzyme
An enzyme () is a protein that acts as a biological catalyst by accelerating chemical reactions. The molecules upon which enzymes may act are called substrate (chemistry), substrates, and the enzyme converts the substrates into different mol ...
activated by an increase in the
AMP:
ATP ratio resulting from increasing
cellular respiration
Cellular respiration is the process of oxidizing biological fuels using an inorganic electron acceptor, such as oxygen, to drive production of adenosine triphosphate (ATP), which stores chemical energy in a biologically accessible form. Cell ...
. Once activated, the
enzyme
An enzyme () is a protein that acts as a biological catalyst by accelerating chemical reactions. The molecules upon which enzymes may act are called substrate (chemistry), substrates, and the enzyme converts the substrates into different mol ...
promotes production of ATP and suppresses reactions that consume it. AMPK activation is also a more appealing candidate because it can activate both of the two most common types of potassium channels. Another study identified that AMPK opens and closes potassium channels via
phosphorylation
In biochemistry, phosphorylation is described as the "transfer of a phosphate group" from a donor to an acceptor. A common phosphorylating agent (phosphate donor) is ATP and a common family of acceptor are alcohols:
:
This equation can be writ ...
, further underlining the link between the two. The role of AMPK in oxygen sensing in type-1 cells has however also recently been called into question.
This enzyme's function positions type I cells to uniquely take advantage of their mitochondria. However, AMPK is an enzyme found in many more types of cells than chemoreceptors because it helps regulate
metabolism
Metabolism (, from ''metabolē'', "change") is the set of life-sustaining chemical reactions in organisms. The three main functions of metabolism are: the conversion of the energy in food to energy available to run cellular processes; the co ...
. The difference may actually lie in the cell's metabolism, rather than the AMPK enzyme; peripheral chemoreceptors display very high background rates of oxygen consumption, supported by its dense network of
capillaries
A capillary is a small blood vessel, from 5 to 10 micrometres in diameter, and is part of the microcirculation system. Capillaries are microvessels and the smallest blood vessels in the body. They are composed of only the tunica intima (the in ...
. Since its base rate of cellular respiration is so high, its AMPK would be more sensitive to reductions in blood borne oxygen, thus allowing it to respond to small variations in oxygen content before other cells begin to feel the effects of its absence.
In this way, transduction in peripheral chemoreceptor cells is relatively unique. It does not require any specialized proteins that change shape in the presence of
light
Light, visible light, or visible radiation is electromagnetic radiation that can be visual perception, perceived by the human eye. Visible light spans the visible spectrum and is usually defined as having wavelengths in the range of 400– ...
or a specific receptor site for a particular tastant. Its necessary components include merely the mitochondria and an enzyme used to regulate its activity common to all aerobic cells, a suite of
potassium
Potassium is a chemical element; it has Symbol (chemistry), symbol K (from Neo-Latin ) and atomic number19. It is a silvery white metal that is soft enough to easily cut with a knife. Potassium metal reacts rapidly with atmospheric oxygen to ...
and
calcium channels and neurotransmitters common to many types of nerve cells, and a well-endowed version of the vasculature supporting all aerobic cells.
Further research should identify why type I cells exhibit such a high metabolic rate compared to other cell types, as this may be the truly unique feature of the receptor. And thus, a receptor for an
aerobic organism's most basic energy source is composed of collection of cell structures common throughout the body.
Response to hypoxia
Peripheral chemoreceptors are put under stress in a number of situations involving low access to oxygen, including exercise and exposure to high altitude.
Under sustained hypoxic stress, regardless of the cause, peripheral chemoreceptors show a great deal of
plasticity; they will both swell the size of chemosensing cells and increase their number.
Though researchers were previously unsure how carotid and aortic bodies came to increase their numbers so rapidly, recent findings point to the type II cells, which were previously thought to have only a supportive role and are now believed to retain properties of
stem cells
In multicellular organisms, stem cells are undifferentiated or partially differentiated cells that can change into various types of cells and proliferate indefinitely to produce more of the same stem cell. They are the earliest type of cell ...
and can
differentiate into type I transducer cells.
Several studies suggest peripheral chemoreceptors play a role in
ventilation
Ventilation may refer to:
* Ventilation (physiology), the movement of air between the environment and the lungs via inhalation and exhalation
** Mechanical ventilation, in medicine, using artificial methods to assist breathing
*** Respirator, a ma ...
during exercise. However, there is disagreement about whether they perform an
excitatory
In neuroscience, an excitatory postsynaptic potential (EPSP) is a postsynaptic potential that makes the postsynaptic neuron more likely to fire an action potential. This temporary depolarization of postsynaptic membrane potential, caused by the ...
or
inhibitory
An inhibitory postsynaptic potential (IPSP) is a kind of synaptic potential that makes a Chemical synapse, postsynaptic neuron less likely to generate an action potential.Purves et al. Neuroscience. 4th ed. Sunderland (MA): Sinauer Associates, Inc ...
role. Several studies point to increased circulation of
catecholamine
A catecholamine (; abbreviated CA), most typically a 3,4-dihydroxyphenethylamine, is a monoamine neurotransmitter, an organic compound that has a catechol (benzene with two hydroxyl side groups next to each other) and a side-chain amine.
Cate ...
or potassium during exercise as a potential effector on peripheral chemoreceptors; however, the specifics of this effect are not yet understood. All suggestions of peripheral chemoreceptor involvement conclude that they are not solely accountable for this response, emphasizing that these receptors are only one in a suite of oxygen-sensing cells that can respond in times of stress. Collecting information on carotid and aortic body activity in live, exercising humans is fraught with difficulty and often only indicates indirect evidence, so it is hard to draw expansive conclusions until more evidence has been amassed, and hopefully with more advanced techniques.
In addition to ventilatory effects, peripheral chemoreceptors may influence
neuroendocrine
Neuroendocrine cells are cells that receive neuronal input (through neurotransmitters released by nerve cells or neurosecretory cells) and, as a consequence of this input, release messenger molecules ( hormones) into the blood. In this way they b ...
responses to exercise that can influence activities other than ventilation.
Circulation of the
glucose
Glucose is a sugar with the Chemical formula#Molecular formula, molecular formula , which is often abbreviated as Glc. It is overall the most abundant monosaccharide, a subcategory of carbohydrates. It is mainly made by plants and most algae d ...
-promoting
hormone
A hormone (from the Ancient Greek, Greek participle , "setting in motion") is a class of cell signaling, signaling molecules in multicellular organisms that are sent to distant organs or tissues by complex biological processes to regulate physio ...
,
glucagon
Glucagon is a peptide hormone, produced by alpha cells of the pancreas. It raises the concentration of glucose and fatty acids in the bloodstream and is considered to be the main catabolic hormone of the body. It is also used as a Glucagon (medic ...
and a neurotransmitter,
norepinephrine
Norepinephrine (NE), also called noradrenaline (NA) or noradrenalin, is an organic compound, organic chemical in the catecholamine family that functions in the brain and human body, body as a hormone, neurotransmitter and neuromodulator. The ...
, is increased in carotid- and aortic-body-enervated dogs, suggesting that peripheral chemoreceptors respond to low glucose levels in and may respond to other neuroendocrine signals in addition to what is traditionally considered to be their sole role of ventilatory regulation.
Role of central chemoreceptors
Peripheral chemoreceptors work in concert with
central chemoreceptors
A central chemoreceptor is a chemoreceptor sensitive to the pH of its environment. Central chemoreceptors are located on the ventrolateral medulla oblongata, medullary surface in vicinity of the exit of CN IX and CN X in the central nervous syste ...
, which also monitor blood but do it in the
cerebrospinal fluid
Cerebrospinal fluid (CSF) is a clear, colorless Extracellular fluid#Transcellular fluid, transcellular body fluid found within the meninges, meningeal tissue that surrounds the vertebrate brain and spinal cord, and in the ventricular system, ven ...
surrounding the
brain
The brain is an organ (biology), organ that serves as the center of the nervous system in all vertebrate and most invertebrate animals. It consists of nervous tissue and is typically located in the head (cephalization), usually near organs for ...
. A high concentration of central chemoreceptors is found in the
ventral
Standard anatomical terms of location are used to describe unambiguously the anatomy of humans and other animals. The terms, typically derived from Latin or Greek roots, describe something in its standard anatomical position. This position prov ...
medulla, the
brainstem
The brainstem (or brain stem) is the posterior stalk-like part of the brain that connects the cerebrum with the spinal cord. In the human brain the brainstem is composed of the midbrain, the pons, and the medulla oblongata. The midbrain is conti ...
area that receives input from peripheral chemoreceptors. Taken together, these blood oxygen monitors contribute nerve signals to the
vasomotor center of the medulla which can modulate several processes, including breathing,
airway resistance,
blood pressure
Blood pressure (BP) is the pressure of Circulatory system, circulating blood against the walls of blood vessels. Most of this pressure results from the heart pumping blood through the circulatory system. When used without qualification, the term ...
, and
arousal
Arousal is the physiology, physiological and psychology, psychological state of being awoken or of Five senses, sense organs stimulated to a point of perception. It involves activation of the ascending reticular activating system (ARAS) in the hu ...
.
At an evolutionary level, this stabilization of oxygen levels, which also results in a more constant
carbon dioxide
Carbon dioxide is a chemical compound with the chemical formula . It is made up of molecules that each have one carbon atom covalent bond, covalently double bonded to two oxygen atoms. It is found in a gas state at room temperature and at norma ...
concentration and
pH, was important to manage oxygen flow in air-vs.-water breathing,
sleep
Sleep is a state of reduced mental and physical activity in which consciousness is altered and certain Sensory nervous system, sensory activity is inhibited. During sleep, there is a marked decrease in muscle activity and interactions with th ...
, and to maintain an ideal
pH for
protein structure
Protein structure is the three-dimensional arrangement of atoms in an amino acid-chain molecule. Proteins are polymers specifically polypeptides formed from sequences of amino acids, which are the monomers of the polymer. A single amino acid ...
, since fluctuations in pH can
denature a cell's enzymes.
See also
*
Central chemoreceptors
A central chemoreceptor is a chemoreceptor sensitive to the pH of its environment. Central chemoreceptors are located on the ventrolateral medulla oblongata, medullary surface in vicinity of the exit of CN IX and CN X in the central nervous syste ...
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Chemoreceptors
A chemoreceptor, also known as chemosensor, is a specialized sensory receptor which transduces a chemical substance ( endogenous or induced) to generate a biological signal. This signal may be in the form of an action potential, if the chemorece ...
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Control of respiration
The control of ventilation is the physiology, physiological mechanisms involved in the control of breathing, which is the movement of air into and out of the lungs. Ventilation facilitates respiration. Respiration refers to the utilization of oxyge ...
References
External links
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Overview at cvphysiology.com*
{{Respiratory physiology
Sensory receptors
Respiratory physiology