Chapter 16 - Endocrine System
이 집합의 용어 (58)
Autocrine
receptor on same cell
Paracrine
receptor within same tissue (nearby cells)
Endocrine Glands
hypothalamus
pineal
pituitary (anterior, posterior)
thyroid
parathyroid
thymus
adrenal
pancreas - also exocrine
gonads (ovaries, testes) - also exocrine
Hormones Control:
growth/development - estrogen, GH
reproduction - estrogen
electrolyte balance - ADH
metabolism - insulin, cortisol
activate body defenses - cortisol
2 Hormone Groups:
amino acid-based - H2O soluble, can't cross membrane (non-sex hormones)
steroid hormones - lipid soluble, membrane-bound, can cross membrane
2nd Messenger System - GPCRs
Holding Really Great Activities at cAMP Kinase
Hormone binds to GPCR, transmits signal across membrane
Receptor (GPCR) activates G-protein
G-protein diffuses along membrane, activates enz adenylate cyclase
AC converts ATP to cAMP
cAMP binds to enz prot kinase A
Kinase triggers cell resp
Steroid Hormones
passes thru membrane
binds to receptor protein
receptor-hormone complex enters nucleus
complex binds to specific DNA
triggers cell response
Hypothalamus
maintains homeostasis/controls autonomic function
Infundibulum
connects hypothalamus to pituitary
Pituitary (hypophysis)
communicates with other endocrine glands
anterior - stimulated by hormones from hypothalamus
posterior - made of neurons from hypothalamus
Tropic Hormones
trigger release of other hormones
Hypothalamic-Hypophyseal Portal System
connects hypothalamus/anterior pituitary by capillary system
Anterior Pituitary (adenohypophysis) Hormones
FLAT PeG
FSH, LH - ovaries/testes
ACTH - adrenal cortex
TSH - thyroid
PRL (prolactin) - breasts
GH - liver, bone, cartilage
*first 4 tropic hormones
Posterior Pituitary (neurohypophysis) Hormones
Powerful Anti-Oxidants
ADH (antidiuretic hormone) - kidneys (retain H2O, sodium)
Oxytocin (positive feedback loop) - uterus, breasts
Hypothalamic-Hypophyseal Tract
hormones travel on axons from hypothalamus to posterior pituitary through infundibulum
Thyroid Gland
*largest endocrine gland
growth/metabolism
calcitonin - bone homeostasis (parafollicular)
follicles filled w/colloid (protein-rich gel)
Parathyroid Gland
maintains Ca ions
Isthmus
band connecting R/L lobes of thyroid
Triiodothyroxine - T3
3 iodine atoms
half-life 24 hours
amino-acid based but acts like steroid hormone (lipid soluble)
more activity than T4
Thyroxine - T4
4 iodine atoms (colloid + iodine)
half life 7 days
more T4 than T3 in body, can change into T3
amino-acid based but acts like steroid hormone (lipid soluble)
Thyroid Hormone Categories
regulate metabolic rate/thermoregulation
growth/development
synergism with sympathetic nervous system
Hyperthyroidism
Graves disease
T3/T4 increased
TSH/TRH decreased
weight loss, heat intolerance, elevated BP, goiter, exophthalmus
Hypothyroidism
Hashimoto thyroiditis, Cretinism (child)
destruction thyroid gland by immune sys
iodine deficiency
T3/T4 decreased
TSH/TRH increased
weight gain, cold intolerance, decreased BP, goiter
Adrenal Glands
steroid hormones
catecholamines
adrenal cortex (outer)
adrenal medulla (inner) - neuroendocrine organ, secretes neurohormones
3 Zones Adrenal Cortex
zona glomerulosa - outer/dense (mineralorticoids)
zona fasciculata - middle/stacked (glucocorticoids)
zona reticularis - inner/loose (gonadocorticoids/androgens)
*regulated by hypothalamic-pituitary-adrenocortical (HPA) axis
Mineralocorticoids
fluid, electrolyte homeostasis
*aldosterone
maintain/regulate extracellular Na/K (hold/elim) ions
maintain BP
maintain acid-base homeostasis
inhibited by atrial natriuretic peptide (ANP)
hypernatremia - inc BP, ph blood alkaline
hyperaldosteronism = hypokalemia
Glucocorticosteroids
mediate body response to stress
*cortisol (hydrocortisone)
gluconeogenesis in liver
keep blood sugar constant
release amino acids from muscle tissue
release fatty acids from adipose tissue
anti-inflammatories = corticosteroids
CRH-ACTH-cortisol
Hypercortisolism
Cushing disease
oversecretion of adrenal cortex (tumor)
long-term corticosteroids
90% cases
moon facies, buffalo hump
Adrenal Insufficiency
Addison disease
low cortisol/aldosterone
Androgenic Steroids
sex hormones
most produced by gonads
increased sex drive
Adrenal Medulla
chromaffin cells - derived from nerve tissue
release catecholamines - epinephrine/norepinephrine
inc HR
dilate bronchioles
inc blood glucose
constrict blood vessels, skin, dig/urin organs, skeletal muscles, pupils
dec dig/urin functions
coord response between endo/nerv sys (sympathetic nerv sys)
Pancreas
head, body, tail
endocrine and exocrine
islets of Langerhans (endo)
acinar cells (exo - digestive)
Acinar Cells
alpha (A cells) - glucagon
beta (B cells) - insulin
delta - somatostatin (like hypothalamus)
Glucagon
liver, muscle tissue, adipose tissue
*increase glucose
break down glycogen to glucose = glycogenolysis
form new glucose in liver
protein break down in muscle tissue to rel amino acids
release fats from adipose tiss
form ketone bodies in liver from fatty acids
*ketacidosis = inc ketones/dec pH blood
Insulin
liver, cardiac/skeletal muscle, parts of brain
*decrease glucose
promote uptake of nutrients to decrease blood glucose
lipid, amino acid, glucose uptake
synthesize glycogen in liver/skeletal muscle
synthesize fat from lipids/carbs
promote satiety
Hypoglycemia
low glucose
weak, dizzy, rapid breathing, nausea, sweats
Hyperglycemia
DM type 1/2
Thymus
maturation site WBCs (T lymphocytes)
thymosin (dev T lymphocytes)
thymopoietin
Gonads
(testes)
testosterone -
anabolic effect = stimulate bone growth/increased muscle mass
androgenic effect = develop secondary sex characteristics
(ovaries)
estrogen -
stimulate secondary sex characteristics
regulate menses cycle
progesterone - prep body for pregnancy, breast development
Pineal Gland
sleep-regulation centers in brainstem
*melatonin
Adipose Tissue
neurons in hypothalamus that control feeding
*leptin (protein) - crosses blood brain barrier
induceses satiety (hunger)
Heart
small muscle cells lining blood vessels, kidney tubules
*ANP (atrial natriuretic peptide)
natriuresis = increase H2O excreted in urine, decrease blood volume
vasodilation = relax small muscle cells
both lead to decreased BP
Kidneys
erythropoietin (EPO) - stimulate erythrocytes, increase O2-carrying capacity of blood
renin secretion - enzyme converts plasma protein angiotensin to angiotensin I
converts vitamin D from active form (calcitriol)
Metabolic Homeostasis
rest/fasting - thyroid detects basal metabolic rate, stim gluconeogenesis, inc blood glu, triggers glucacon, inc GH
rest/feeding - insulin secretion inc, prot in meal rel GH/IGF-1, prot stims glucagon release, ends with ins/leptin
exercise - catecholamines control met rate/glucagon secretion inc
Fluid Homeostasis
ADH, adlosterone, ANP
baseline - dec ADH, adlosterone continues
dec plasma volume/inc plasma solute - ADH/aldo inc, dec urine output
inc plasma vol/dec plasma solute - ADH/aldo dec = inc urine output
Stress Response
CRH, ACTH
adrenal steroid hormones from HPA axis
GH from anterior pituitary
catecholamines from adrenal medulla
glucagon from pancreas
Growth Hormone
bone/skeletal musle
promotes protein synthesis, fats to fuel
dwarfism (kids) - hyposecretion - 4 ft, norm body proportions
gigantism (kids), acromegaly (adults) - hypersecretion
TSH (thyroid stimulating hormone, thyrotropin)
thyroid gland
release thyroid hormones
ACTH (adrenocorticotropic hormone, corticotropin)
adrenal cortex
stimulates adrenal cortex, release cortisol
growth/development adrenal cortex
FSH (follicle stimulating hormone)
ovaries/testes
gonadotropin
men - sperm production
women - maturation of follicle/egg production
LH (luteinizing hormone)
ovaries/testes
gonadotropin
men - testosterone production
women - estrogen production, ovulation
PRL (prolactin)
breasts
causes milk production
blood levels increase end pregnancy
suckling stimulates PRH release/continued milk production
PTH (parathyroid hormone)
**most important hormone for Ca homeostastis
stimulates osteoclast ativity
remove Ca for bone release back to blood
Calcitonin
osseous tiss, kid, intestine
prod by parafollicular cells (thyroid)
antagonist to PTH
dec blood Ca level
when blood Ca level inc, inhibits osteoclast activity/releases Ca from bone matrix
stimulates Ca uptake/incorporates into bone matrix
regulated by humoral (blood) negative feedback mechanics
Hypoparathyroidism
low blood Ca
neurons excitable, tingly sensations
tetany (muscle twitch)
convulsions
progress to paralysis/death
Hyperparathyroidism
weakening bones (Ca loss)
release too many neurotransmitters = decrease neuro function
increase Ca level = depressed nervous system
form kidney stones
HCG (human chorionic gonadotropin)
produced by placenta
maintains uterine thickness
maintains corpus luteum
elevates progesterone level
Interactions
permissiveness - one can't effect without another (FSH/LH)
synergism - 1+ hormones produce same effect on target cell (amplification)
antagonism - 1+ hormones oppose action of another (calcitonin & PTH)