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GCU BIO 202 Exam 4 QUESTIONS & ANSWERS || LATEST UPDATE 2025

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autoregulation - ANSWER maintains GFR despite changes in local blood pressre and blood flow autoregulation - ANSWER changes diameters of afferent and efferent arterioles and glomerular capillaries dilation - ANSWER autoregulation: reduced blood flow or glomerular blood pressure triggers _______ of afferent arterioles dilation - ANSWER autoregulation: reduced blood flow or glomerular blood pressure triggers _______ of glomerular capillaries (by contraction of mesangial cells)

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GCU BIO 202 Exam 4 QUESTIONS &
ANSWERS || LATEST UPDATE 2025
autoregulation - ANSWER maintains GFR despite changes in local blood pressre and
blood flow

autoregulation - ANSWER changes diameters of afferent and efferent arterioles and
glomerular capillaries

dilation - ANSWER autoregulation: reduced blood flow or glomerular blood pressure
triggers _______ of afferent arterioles

dilation - ANSWER autoregulation: reduced blood flow or glomerular blood pressure
triggers _______ of glomerular capillaries (by contraction of mesangial cells)

constriction - ANSWER autoregulation: reduced blood flow or glomerular blood pressure
triggers _______ of efferent arterioles

stretches - ANSWER rise in renal blood pressure _______ walls of afferent arterioles

contract - ANSWER rise in renal blood pressure causes juxtaglomerular cells to
_______

constricts - ANSWER rise in renal blood pressure _______ afferent arterioles

decreases - ANSWER rise in renal blood pressure _______ glomerular blood flow

yes - ANSWER is autoregulation self-regulated?

constricts - ANSWER autonomic regulation of GFR sympathetic activation _______
afferent arterioles (fight or flight -> exercising)

decreases - ANSWER autonomic regulation of GFR sympathetic activation _______
GFR

slows - ANSWER autonomic regulation of GFR sympathetic activation _______ filtrate
production

decreases - ANSWER autonomic regulation of GFR sympathetic activation slows filtrate
production _______ blood flow to the glomerulus

exercise - ANSWER autonomic regulation of GFR sympathetic activation slows filtrate
production i.e. _______

,advil - ANSWER autonomic regulation of GFR sympathetic activation slows filtrate
production, _______ constricts afferent arteriole even more, leading to hypoperfusion of
kidneys and possible renal failure

renin angiotensin - ANSWER hormonal regulation of GFR by hormones of the _______
_______ system

natriuretic peptides - ANSWER hormonal regulation of GFR by hormones of _______
_______

oppose - ANSWER hormonal regulation of GFR by hormones of natriuretic peptides
(ANP and BNP) _______ aldosterone secretion

proximal convoluted tubule - ANSWER reabsorption occurs in what section of the
nephron?

reabsorption - ANSWER useful materials are recaptured before filtrate leaves kidneys

filtrate, solute - ANSWER 60-70% of _______ volume and 99% of _______ reabsorbed
in proximal convoluted tubule

simple cuboidal - ANSWER reabsorption in PCT has what kind of epithelium?

apical - ANSWER reabsorption in PCT has microvilli on _______ surfaces

pH - ANSWER reabsorption can adjust _______ in PCT - bicarbonate makes blood
more basic

absorb - ANSWER tubular cells of PCT _______ organic nutrients, ions, water, and
plasma proteins from tubular fluid

release - ANSWER tubular cells of PCT _______ them into peritubular fluid and
peritubular capillary

peritubular fluid - ANSWER interstitial fluid around renal tubule

reabsorption - ANSWER tubular cells of PCT CO2 _______ from the tubular fluid results
in 90% of bicarbonate generation and reabsorption from the tubular fluid

secretion - ANSWER tubular cells of PCT active H+ _______ into the tubular fluid

towards - ANSWER nephron loop: renal tubule turns _______ renal medulla

plevis - ANSWER nephron loop: descending limb - fluid flows towards renal _______

cortex - ANSWER nephron loop: ascending limb - fluid flows toward renal _______

,thin descending segment - ANSWER nephron loop: water out, more concentrated urine

thin descending segment - ANSWER nephron loop: more solute in space aound limb

thin descending segment - ANSWER nephron loop: freely permeable to water, not
permeable to solutes

thin descending segment - ANSWER nephron loop: water osmotically flows out og the
renal tubule into the peritubular fluid

thick ascending segment - ANSWER nephron loop: pumping solute into space around
limb

thick ascending segment - ANSWER nephron loop: relativelyy impermeable to water

thick ascending segment - ANSWER nephron loop: pumps (active transport) sodium
and chloride ions out of tubular fluid

thick ascending segment - ANSWER nephron loop: this creates high colute
concentrations in peritubular fluid

nephron loop - ANSWER osmolarity starts low goes high then back to low in _______
_______

positive - ANSWER this system creates a simple _______ feedback loop which
multiplies the concentration difference between the hypotonic tubular flui in the thick
ascending limb and the hypertonic peritubular fluid deep in the renal medulla

urea - ANSWER _______ production accounts for approx. half of the solute content of
urine

urea - ANSWER results from muscle catabolism and breakdown of amino acids that the
body doesn't need

excretion - ANSWER renal urea _______ muct match the liver production of it

excretion - ANSWER urea is key in regulating the _______ of water

water - ANSWER urea is small and _______ soluble

freely - ANSWER urea is _______ filtered

urea flow - ANSWER recycled from collecting duct -> peritubular fluid of inner medulla -
> vasa recta blood vessels -> back to glomerulus

, hyperosmotic - ANSWER urea allows the kidneys to create _______ urine (urine that
has more ions in it - is "more conccentrated" - than that same person's plasma)

loops of Henle - ANSWER urea recycling in the inner medulla also contributes to the
osmotic gradient generated by the ________ _______ _______

increase - ANSWER ADH _______ water permeability but not urea permeability in the
cortical and outer medullary collecting ducts, causing urea to concentrate in the tubular
fluid in this segment

increases - ANSWER in the inner medullary collecting ducts ADH _______ both water
and urea permeability, which allows urea to flow passively down its concentration
gradient into the interstitial fluid (this adds to the osmotic gradient and helps drive water
reabsorption)

waste - ANSWER urea is a _______ product - got to get rid of it

third - ANSWER distal convoluted tubuler is the _______ segment of the renal tubule
(number)

true - ANSWER T/F: the initial portion of the DCT passes between afferent and efferent
arterioles

smaller - ANSWER DCT has a _______ diameter than PCT

fewer - ANSWER in the DCT, epithelial cells have far _______ microvilli - so less
surface area, less reabsorption

4 - ANSWER how many processes of DCT are there?

secretion - ANSWER DCT process: active _______ of ions (acid/base balance), acids,
drugs, and toxins

selective - ANSWER DCT process: _______ reabsorption of sodium and calcium ions
from tubular fluid

aldosterone - ANSWER stimulates reabsorption of sodium back into the blood -> water
follows

PTH/calcitriol - ANSWER activated form of vitamin D3 that stimulates absorption of
calcium back into blood

maintainance - ANSWER _______ of GFR by the macula densa cells of the
juxtaglomerular apparatus

concentrating - ANSWER selective reabsorption of water: _______ the tubular fluid

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