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What are the two main routes by which molecules cross epithelium to enter the bloodstream?
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How do channel proteins mediate facilitated diffusion?
Channel proteins form aqueous pores allowing specific solutes to pass across the membrane.
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How do carrier proteins mediate facilitated diffusion?
Carrier proteins bind the solute and undergo a conformational change to transport it across the membrane.
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Name the three functional types of carrier-mediated transport described.
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Give an example of a symport (cotransporter) mentioned in the text.
SGLT-1
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Which type of facilitated diffusion transport allows much faster transport: channels or carriers?
Channel proteins allow much faster transport than carrier proteins.
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What distinguishes primary active transport from secondary active transport?
Primary active transport uses ATP; secondary derives energy from the concentration gradient of another actively transported substance.
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Name two examples of primary active transport and their associated locations/functions given in the text.
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List the secondary active transport mechanisms mentioned and one associated function for each.
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Which transporter mediates secondary active uptake of glucose and galactose in the intestine?
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What capability of SGLT-1 makes it effective when luminal glucose is lower than enterocyte glucose?
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How is fructose absorbed across the intestinal epithelium?
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Which transporter mediates glucose exit at the basolateral membrane and what are its properties?
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What drives water absorption in the gastrointestinal tract and how much is absorbed?
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Are calcium and iron completely absorbed in the intestine?
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What mechanism is described as 'standing gradient osmosis' driven by which ion?
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Name four general types of membrane transport (image shown in answer).

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How is Na+ actively transported from the enterocyte into the lateral intercellular spaces?
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Which Na+ absorption mechanisms become more efficient along the intestine?
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How is Na+ movement characterized in the colon?
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How is Cl⁻ transported in the ileum relative to Na+ and HCO₃⁻?
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What is the osmotic and hydrostatic consequence of water movement from the gut lumen into intercellular spaces?
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Once ions and water enter intercellular spaces, how are they removed?
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Describe K+ movement in the small intestine and colon.
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Which intestinal regions absorb Ca²⁺?
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Which hormones or factors stimulate intestinal calcium absorption?
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What can cause hypercalcaemia related to parathyroid pathology?
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How is Ca²⁺ carried across the apical membrane of enterocytes?
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How is Ca²⁺ removed across the basolateral membrane of enterocytes by PMCA?
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What is the role and characteristic of the Na⁺/Ca²⁺ exchanger at the basolateral membrane?
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What is the tonicity of the intercellular spaces during intestinal ion transport?
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What is the primary role of vitamin D in the intestine?
Enhances normal Ca²+ absorption by enterocytes
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How does vitamin D3 increase intracellular calcium transport in enterocytes?
By increasing levels of calbindin, which enhances Ca²+ transport through the cytosol
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How does vitamin D3 increase basolateral extrusion of calcium from enterocytes?
By increasing the level of Ca²+ ATPase in the basolateral membrane
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Name two clinical consequences of vitamin D deficiency mentioned in the notes.
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In which chemical forms is dietary iron present?
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Why must Fe3+ be reduced before absorption and which vitamin helps this?
Because Fe3+ cannot be absorbed; vitamin C reduces Fe3+ to Fe2+
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Which enzyme catalyses reduction of Fe3+ to Fe2+ in the duodenum?
Duodenal cytochrome B (Dcytb)
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Which transporter moves Fe2+ across the apical membrane of enterocytes?
Divalent metal transporter 1 (DMT-1), a H+-coupled co-transporter
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After entering enterocytes, how does Fe2+ reach the blood across the basolateral membrane?
Fe2+ moves via the ferroportin ion channel across the basolateral membrane into blood
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What is the role of hephaestin in iron transport?
Hephaestin is a copper-dependent ferroxidase that converts Fe2+ to Fe3+ at the basolateral membrane
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How does iron travel in blood after basolateral export and oxidation?
Fe3+ binds to apotransferrin and travels in blood as transferrin
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How is iron stored inside enterocyte cytosol?
Fe2+ binds to apoferritin to form ferritin; Fe2+ is oxidised to Fe3+ and crystallises inside the protein shell
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What is the storage capacity of a single ferritin molecule?
A single ferritin molecule can store up to 4,000 iron ions
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How does increased dietary iron affect ferritin and absorption?
Excess dietary iron increases ferritin production in enterocytes, which prevents excessive iron absorption
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What happens to iron irreversibly bound to ferritin in epithelial cells?
Iron/ferritin is not available for plasma transport and is lost in the intestinal lumen and excreted in faeces
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What effect does an increase in cytosolic iron concentration have on ferritin synthesis?
An increase in cytosolic iron concentration increases ferritin synthesis.
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Besides iron regulation, what is another role of ferritin mentioned?
Ferritin is also an acute inflammatory phase molecule.
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What is the consequence of impaired vitamin B12 absorption on red blood cells?
Impaired vitamin B12 absorption retards red blood cell maturation and causes pernicious anaemia.
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How is free vitamin B12 released in the stomach?
Low pH and pepsin digestion of proteins in the stomach release free vitamin B12.
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Why does vitamin B12 bind to R protein (haptocorrin) in the stomach?
Vitamin B12 binds to R protein to avoid denaturation by HCl.
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Where are R proteins that bind vitamin B12 digested?
R proteins are digested in the duodenum.
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What is intrinsic factor (IF) and where is it secreted?
Intrinsic factor is a vitamin B12 binding glycoprotein secreted by parietal cells.
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What property of the vitamin B12/intrinsic factor complex aids absorption?
The vitamin B12/IF complex is resistant to digestion.
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What happens to vitamin B12 absorption if intrinsic factor is absent?
Without intrinsic factor there is no absorption of vitamin B12.
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To which receptor and where in the intestine does the vitamin B12/IF complex bind for uptake?
The vitamin B12/IF complex binds to the cubilin receptor and is taken up in the distal ileum.
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What uptake mechanism is thought to mediate vitamin B12/IF internalization in the distal ileum?
Uptake is thought to involve receptor-mediated endocytosis.
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Where is the vitamin B12/IF complex possibly broken after cellular uptake?
The vitamin B12/IF complex is possibly broken in mitochondria.
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Which protein binds vitamin B12 after it leaves the enterocyte and facilitates transport across the basolateral membrane?
Vitamin B12 binds to transcobalamin II (TCII) which crosses the basolateral membrane by an unknown mechanism.
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How does vitamin B12 travel to the liver in the circulation?
Vitamin B12 travels to the liver bound to transcobalamin II (TCII).
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How do cells uptake vitamin B12 from the circulation when it is bound to TCII?
Cells uptake the TCII–vitamin B12 complex via TCII receptors on the cell surface.
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What happens to transcobalamin II (TCII) inside cells after uptake?
Proteolysis breaks down TCII inside the cell.
Sfoglia le tue carte qui, oppure iscriviti per studiare con la spaced repetition.
What are the two main routes by which molecules cross epithelium to enter the bloodstream?
How do channel proteins mediate facilitated diffusion?
Channel proteins form aqueous pores allowing specific solutes to pass across the membrane.
How do carrier proteins mediate facilitated diffusion?
Carrier proteins bind the solute and undergo a conformational change to transport it across the membrane.
Name the three functional types of carrier-mediated transport described.
Give an example of a symport (cotransporter) mentioned in the text.
SGLT-1
Which type of facilitated diffusion transport allows much faster transport: channels or carriers?
Channel proteins allow much faster transport than carrier proteins.
What distinguishes primary active transport from secondary active transport?
Primary active transport uses ATP; secondary derives energy from the concentration gradient of another actively transported substance.
Name two examples of primary active transport and their associated locations/functions given in the text.
List the secondary active transport mechanisms mentioned and one associated function for each.
Which transporter mediates secondary active uptake of glucose and galactose in the intestine?
What capability of SGLT-1 makes it effective when luminal glucose is lower than enterocyte glucose?
How is fructose absorbed across the intestinal epithelium?
Which transporter mediates glucose exit at the basolateral membrane and what are its properties?
What drives water absorption in the gastrointestinal tract and how much is absorbed?
Are calcium and iron completely absorbed in the intestine?
What mechanism is described as 'standing gradient osmosis' driven by which ion?
Name four general types of membrane transport (image shown in answer).

How is Na+ actively transported from the enterocyte into the lateral intercellular spaces?
Which Na+ absorption mechanisms become more efficient along the intestine?
How is Na+ movement characterized in the colon?
How is Cl⁻ transported in the ileum relative to Na+ and HCO₃⁻?
What is the osmotic and hydrostatic consequence of water movement from the gut lumen into intercellular spaces?
Once ions and water enter intercellular spaces, how are they removed?
Describe K+ movement in the small intestine and colon.
Which intestinal regions absorb Ca²⁺?
Which hormones or factors stimulate intestinal calcium absorption?
What can cause hypercalcaemia related to parathyroid pathology?
How is Ca²⁺ carried across the apical membrane of enterocytes?
How is Ca²⁺ removed across the basolateral membrane of enterocytes by PMCA?
What is the role and characteristic of the Na⁺/Ca²⁺ exchanger at the basolateral membrane?
What is the tonicity of the intercellular spaces during intestinal ion transport?
What is the primary role of vitamin D in the intestine?
Enhances normal Ca²+ absorption by enterocytes
How does vitamin D3 increase intracellular calcium transport in enterocytes?
By increasing levels of calbindin, which enhances Ca²+ transport through the cytosol
How does vitamin D3 increase basolateral extrusion of calcium from enterocytes?
By increasing the level of Ca²+ ATPase in the basolateral membrane
Name two clinical consequences of vitamin D deficiency mentioned in the notes.
In which chemical forms is dietary iron present?
Why must Fe3+ be reduced before absorption and which vitamin helps this?
Because Fe3+ cannot be absorbed; vitamin C reduces Fe3+ to Fe2+
Which enzyme catalyses reduction of Fe3+ to Fe2+ in the duodenum?
Duodenal cytochrome B (Dcytb)
Which transporter moves Fe2+ across the apical membrane of enterocytes?
Divalent metal transporter 1 (DMT-1), a H+-coupled co-transporter
After entering enterocytes, how does Fe2+ reach the blood across the basolateral membrane?
Fe2+ moves via the ferroportin ion channel across the basolateral membrane into blood
What is the role of hephaestin in iron transport?
Hephaestin is a copper-dependent ferroxidase that converts Fe2+ to Fe3+ at the basolateral membrane
How does iron travel in blood after basolateral export and oxidation?
Fe3+ binds to apotransferrin and travels in blood as transferrin
How is iron stored inside enterocyte cytosol?
Fe2+ binds to apoferritin to form ferritin; Fe2+ is oxidised to Fe3+ and crystallises inside the protein shell
What is the storage capacity of a single ferritin molecule?
A single ferritin molecule can store up to 4,000 iron ions
How does increased dietary iron affect ferritin and absorption?
Excess dietary iron increases ferritin production in enterocytes, which prevents excessive iron absorption
What happens to iron irreversibly bound to ferritin in epithelial cells?
Iron/ferritin is not available for plasma transport and is lost in the intestinal lumen and excreted in faeces
What effect does an increase in cytosolic iron concentration have on ferritin synthesis?
An increase in cytosolic iron concentration increases ferritin synthesis.
Besides iron regulation, what is another role of ferritin mentioned?
Ferritin is also an acute inflammatory phase molecule.
What is the consequence of impaired vitamin B12 absorption on red blood cells?
Impaired vitamin B12 absorption retards red blood cell maturation and causes pernicious anaemia.
How is free vitamin B12 released in the stomach?
Low pH and pepsin digestion of proteins in the stomach release free vitamin B12.
Why does vitamin B12 bind to R protein (haptocorrin) in the stomach?
Vitamin B12 binds to R protein to avoid denaturation by HCl.
Where are R proteins that bind vitamin B12 digested?
R proteins are digested in the duodenum.
What is intrinsic factor (IF) and where is it secreted?
Intrinsic factor is a vitamin B12 binding glycoprotein secreted by parietal cells.
What property of the vitamin B12/intrinsic factor complex aids absorption?
The vitamin B12/IF complex is resistant to digestion.
What happens to vitamin B12 absorption if intrinsic factor is absent?
Without intrinsic factor there is no absorption of vitamin B12.
To which receptor and where in the intestine does the vitamin B12/IF complex bind for uptake?
The vitamin B12/IF complex binds to the cubilin receptor and is taken up in the distal ileum.
What uptake mechanism is thought to mediate vitamin B12/IF internalization in the distal ileum?
Uptake is thought to involve receptor-mediated endocytosis.
Where is the vitamin B12/IF complex possibly broken after cellular uptake?
The vitamin B12/IF complex is possibly broken in mitochondria.
Which protein binds vitamin B12 after it leaves the enterocyte and facilitates transport across the basolateral membrane?
Vitamin B12 binds to transcobalamin II (TCII) which crosses the basolateral membrane by an unknown mechanism.
How does vitamin B12 travel to the liver in the circulation?
Vitamin B12 travels to the liver bound to transcobalamin II (TCII).
How do cells uptake vitamin B12 from the circulation when it is bound to TCII?
Cells uptake the TCII–vitamin B12 complex via TCII receptors on the cell surface.
What happens to transcobalamin II (TCII) inside cells after uptake?
Proteolysis breaks down TCII inside the cell.
Alt: Membrane transport types — diffusion, channel, carrier, active transport.
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