BIOL 373 Final Exam Questions And
Answers Already Graded A+!!
What are the functions of the GI system? CORRECT ANSWERS 1. digestion - break
macromolecules (nutrients) into forms that can be transported across the epithelium
2. absorption - transport nutrients, water, ions, vitamins across epithelium
3. secretion - release of enzymes into the gut lumen (heavily regulated)
4. motility - keep the gut contents moving (heavily regulated)
5. maintain water balance - balance between secretion and reabsorption
What are some problems faced by the GI tract regarding its function? CORRECT
ANSWERS 1. need to digest marcomolecules but not itself
-break down of barriers? -> peptic, duodenal ulcers
2. needs to allow entry of digested nutrients but not pathogens
-GI lining is largest area of contact between internal and external environments
-protection from pathogens mediated by:
+ epithelial barrier
+ mucus
+ digestive enzymes
+ acid
+ gut associated lymphoid tissue (GALT) - needs to react to pathogens but not foreign
proteins associated with food
Anatomy CORRECT ANSWERS 1. stomach
2. small intestine - duodenum, jejunum, ileum
3. large intestine - colon, rectum
Muscosal surface amatony CORRECT ANSWERS 1. mucosa - epithelium, lamina
propria, muscularis mucosa
2. submucosa - Meissner's (Submucosal) plexus
3. smooth muscle layers - circular muscle, auerbach's (myenteric) plexus, longitudinal
muscle
4. serosa
Differences between small intestine and stomach anatomy? CORRECT ANSWERS
stomach:
-gastric glands
-oblique muscle
small intestine:
-villi, crypt
-Peyer's patch (in mucosa)
What features increase surface area? CORRECT ANSWERS stomach - gastric glands
small intestine - crypts
,What are the 2 major patterns of contraction for gut motility? CORRECT ANSWERS 1.
peristalis - moving food from mouth to anus (forward movement)
2. segmental contractions - mixing/churning, maximizes exposure to digestive enzymes
and epithelium (little or no net forward movement)
these occur during/after a meal
Tonic vs. phasic contractions CORRECT ANSWERS -most gut muscle is a single unit
smooth muscle, connected by gap junctions
-certain regions are tonically contracted for minutes to hours
+ smooth muscle sphincters
+ anterior part of the stomach (keeps food from moving backwards)
-other regions undergo phasic contractions
+ posterior stomach
+ small intestine
Migrating motor complexes CORRECT ANSWERS -a series of contractions that begin
in the empty stomach and end in the large intestine (~90 minutes)
-"house keeping" function -> sweeps food remnants and bacteria out of GI tract and into
the large intestine
-between meals
Slow wave potentials CORRECT ANSWERS -slow waves similar to pacemaker
potentials in cardiac muscle except much less frequent, and do not necessarily reach
threshold
+ below threshold = no contraction
+ above threshold = opening of voltage-gated Na+ channels -> action potentials ->
contraction
-degree of contraction is graded according to amount of Ca2+ that enters
+ longer wave = more time for Ca2+ to enter = larger contraction
+ amplitude and duration of contraction influenced by: neurotransmitters (autonomic
input), hormones, paracrine factors
Interstitial cells of cajal CORRECT ANSWERS -slow wave frequency varies in different
regions of the tract
+ more frequent in duodenum vs. stomach
+ set by 'pacemaker cells' between smooth muscle layers "interstitial cells of Cajal"
What is secreted? CORRECT ANSWERS -water and ions (secreted into lumen then
reabsorbed)
-enzymes
-mucus
-bile (from liver)
-saliva
, How are water and ions secreted? CORRECT ANSWERS -mostly via membrane
transporters
-water follows osmotic gradient
-water and ions in some regions can also pass between cells (paracellular pathway)
-similar channels/transports to kidney
transporters:
Na/K ATPase, NKCC cotransporter, Cl/CHO exchanger, Na/H+ exchanger, H/K
exchanger
ion channels:
-ENaC, K+ channels, Cl channels (including CFTR)
How is acid secreted? CORRECT ANSWERS -secreted by parietal cells
1. CA forms bicarb in pariteal cells
2. basolateral side: HCO3- out and Cl- in
3. apical side: H+ out and K+ in (H+/K+ATPase), Cl- out via Cl- channel
bicarb moving out is absorbed in blood - 'alkaline tide' can be measured after a meal
How is bicarb secreted? CORRECT ANSWERS -secreted from epithelial cells lining
ducts of pancreas -> duodenum to neutralize stomach acid
1. CA (H20 + CO2 -> HCO3- + H+) creates bicarb inside cells
2. basolateral side: Cl- in via NKCC transporter
3. apical side: bicarb secreted via Cl-/HCO3- exchanger, Cl- out via CFTR channel and
reenters via Cl-/HCO3- exchanger
How is NaCl secreted? CORRECT ANSWERS -secreted from small intestine, colon,
salivary glands
1) Na+, K+, 2 Cl- enter via NKCC transporter (basolateral side)
2) Cl- enters lumen through CFTR channel (apical side)
3) Na+ is reabsorbed (Na+/K+ ATPase) (basolateral side)
4) Negative Cl- in lumen attracts Na+ by paracellular pathway and water follows (from
basolateral -> apical)
-crypt cells in small intestine and colon secrete 'isotonicsaline' that mixes with mucus
secreted by goblet cells to lubricate gut contents
How does Cystic Fibrosis effect the pancreas? CORRECT ANSWERS -mutation in
gene that encodes the CFTR channel
-leads to defects in Cl- (and water) transport
-named for changes in the pancreas
+ fluid-filled cysts and fibrosis (scarring)
mechanism:
1) Cl- not transported into ducts
2) various effects including decreased Na+ and water transport into ducts
3) mucus still produced but greatly thickened due to lack of water
4) blockage of pancreatic ducts
Answers Already Graded A+!!
What are the functions of the GI system? CORRECT ANSWERS 1. digestion - break
macromolecules (nutrients) into forms that can be transported across the epithelium
2. absorption - transport nutrients, water, ions, vitamins across epithelium
3. secretion - release of enzymes into the gut lumen (heavily regulated)
4. motility - keep the gut contents moving (heavily regulated)
5. maintain water balance - balance between secretion and reabsorption
What are some problems faced by the GI tract regarding its function? CORRECT
ANSWERS 1. need to digest marcomolecules but not itself
-break down of barriers? -> peptic, duodenal ulcers
2. needs to allow entry of digested nutrients but not pathogens
-GI lining is largest area of contact between internal and external environments
-protection from pathogens mediated by:
+ epithelial barrier
+ mucus
+ digestive enzymes
+ acid
+ gut associated lymphoid tissue (GALT) - needs to react to pathogens but not foreign
proteins associated with food
Anatomy CORRECT ANSWERS 1. stomach
2. small intestine - duodenum, jejunum, ileum
3. large intestine - colon, rectum
Muscosal surface amatony CORRECT ANSWERS 1. mucosa - epithelium, lamina
propria, muscularis mucosa
2. submucosa - Meissner's (Submucosal) plexus
3. smooth muscle layers - circular muscle, auerbach's (myenteric) plexus, longitudinal
muscle
4. serosa
Differences between small intestine and stomach anatomy? CORRECT ANSWERS
stomach:
-gastric glands
-oblique muscle
small intestine:
-villi, crypt
-Peyer's patch (in mucosa)
What features increase surface area? CORRECT ANSWERS stomach - gastric glands
small intestine - crypts
,What are the 2 major patterns of contraction for gut motility? CORRECT ANSWERS 1.
peristalis - moving food from mouth to anus (forward movement)
2. segmental contractions - mixing/churning, maximizes exposure to digestive enzymes
and epithelium (little or no net forward movement)
these occur during/after a meal
Tonic vs. phasic contractions CORRECT ANSWERS -most gut muscle is a single unit
smooth muscle, connected by gap junctions
-certain regions are tonically contracted for minutes to hours
+ smooth muscle sphincters
+ anterior part of the stomach (keeps food from moving backwards)
-other regions undergo phasic contractions
+ posterior stomach
+ small intestine
Migrating motor complexes CORRECT ANSWERS -a series of contractions that begin
in the empty stomach and end in the large intestine (~90 minutes)
-"house keeping" function -> sweeps food remnants and bacteria out of GI tract and into
the large intestine
-between meals
Slow wave potentials CORRECT ANSWERS -slow waves similar to pacemaker
potentials in cardiac muscle except much less frequent, and do not necessarily reach
threshold
+ below threshold = no contraction
+ above threshold = opening of voltage-gated Na+ channels -> action potentials ->
contraction
-degree of contraction is graded according to amount of Ca2+ that enters
+ longer wave = more time for Ca2+ to enter = larger contraction
+ amplitude and duration of contraction influenced by: neurotransmitters (autonomic
input), hormones, paracrine factors
Interstitial cells of cajal CORRECT ANSWERS -slow wave frequency varies in different
regions of the tract
+ more frequent in duodenum vs. stomach
+ set by 'pacemaker cells' between smooth muscle layers "interstitial cells of Cajal"
What is secreted? CORRECT ANSWERS -water and ions (secreted into lumen then
reabsorbed)
-enzymes
-mucus
-bile (from liver)
-saliva
, How are water and ions secreted? CORRECT ANSWERS -mostly via membrane
transporters
-water follows osmotic gradient
-water and ions in some regions can also pass between cells (paracellular pathway)
-similar channels/transports to kidney
transporters:
Na/K ATPase, NKCC cotransporter, Cl/CHO exchanger, Na/H+ exchanger, H/K
exchanger
ion channels:
-ENaC, K+ channels, Cl channels (including CFTR)
How is acid secreted? CORRECT ANSWERS -secreted by parietal cells
1. CA forms bicarb in pariteal cells
2. basolateral side: HCO3- out and Cl- in
3. apical side: H+ out and K+ in (H+/K+ATPase), Cl- out via Cl- channel
bicarb moving out is absorbed in blood - 'alkaline tide' can be measured after a meal
How is bicarb secreted? CORRECT ANSWERS -secreted from epithelial cells lining
ducts of pancreas -> duodenum to neutralize stomach acid
1. CA (H20 + CO2 -> HCO3- + H+) creates bicarb inside cells
2. basolateral side: Cl- in via NKCC transporter
3. apical side: bicarb secreted via Cl-/HCO3- exchanger, Cl- out via CFTR channel and
reenters via Cl-/HCO3- exchanger
How is NaCl secreted? CORRECT ANSWERS -secreted from small intestine, colon,
salivary glands
1) Na+, K+, 2 Cl- enter via NKCC transporter (basolateral side)
2) Cl- enters lumen through CFTR channel (apical side)
3) Na+ is reabsorbed (Na+/K+ ATPase) (basolateral side)
4) Negative Cl- in lumen attracts Na+ by paracellular pathway and water follows (from
basolateral -> apical)
-crypt cells in small intestine and colon secrete 'isotonicsaline' that mixes with mucus
secreted by goblet cells to lubricate gut contents
How does Cystic Fibrosis effect the pancreas? CORRECT ANSWERS -mutation in
gene that encodes the CFTR channel
-leads to defects in Cl- (and water) transport
-named for changes in the pancreas
+ fluid-filled cysts and fibrosis (scarring)
mechanism:
1) Cl- not transported into ducts
2) various effects including decreased Na+ and water transport into ducts
3) mucus still produced but greatly thickened due to lack of water
4) blockage of pancreatic ducts