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GMS 6401 STUDY GUIDE QUESTIONS AND 100% VERIFIED CORRECT ANSWERS!!

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GMS 6401 STUDY GUIDE QUESTIONS AND 100% VERIFIED CORRECT ANSWERS!!

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GMS 6401 STUDY GUIDE QUESTIONS AND
100% VERIFIED CORRECT ANSWERS!!
What kind of reabsorption is at the proximal tubule?

Iso-osmotic reabsorption (1:1 with Na+)
-Driven by solute reabsorption

How much water is reabsorbed at the descending Loop of Henle?

Reabsorbs ~10%
Water-permeable
Solute-impermeable --> tubular fluid becomes hyperosmotic

How much water is reabsorbed at the TALH and Distal Tubule?

-Impermeable to water
-Solute reabsorption continues --> tubular fluid becomes hypo-osmotic

How much water gets reabsorbed at the collecting duct?

-Water reabsorption depends on ADH

What happens if ADH is present?

Water is reabsorbed --> concentrated urine

What happens if ADH is absent?

Little water is reabsorbed --> dilute urine

What creates the medullary interstitial gradient?

-Countercurrent multiplication
-urea recycling
-enables water reabsorption from CD when ADH is present

The ability to create urine depends on...

,-Medullary interstitial gradient
-Tubular heterogeneity
- anatomy of medulla

tubular heterogeneity

different permeabilities to Na+, urea, and water in different segments

anatomy of medulla

tubules and vasa recta are arranged to maintain the intersitial gradient

When ADH is present....

-Increase H2O permeability in CD
-Water is reabsorbed down gradient
-decreased urine volume, increase osm

When ADH is not present...

-CD remains water-impermeable
-Water stays in tubule
-Increase urine volume, decrease osm

ADH=

Vasopressin = Arginine Vasopressin (AVP)

Intracellular (ICF)

high k+, low Na+ ; ~300 mosm/kg

Extracellular (ECF/plasma/intersitium)

High Na+, low K+ ; ~300 mosm/kg

Medulla (only exception)

Variable osmolality (up to ~1200 mosm/kg) due to concurrent processes

Water moves passively in all tissues to equalize osmolality, except

, in the renal medulla, where gradients are intentionally maintained

The ability to concentrate urine depends on:

-Medullary Interstitial Gradient
-Tubule properties
- Presence of Antidiuretic Hormone (ADH)

Medullary Interstitial Gradient

Gradient of increasing osmolality from cortex (~300) to papilla (~1200)

Tubule Properties

-Segment specific permeabilities to water, Na+, urea
-Precise anatomic arrangement of tubules and blood vessels in the medulla

Presence of Antidiuretic Hormone (ADH)

-ADH increases water and urea permeability in specific nephron segments
-Water reabsorption occurs only if tubular walls are permeable

What is the interstitial Osm at the cortex?

~300 mosm/kg

what is the interstitial Osm at the outer medulla?

~400-600 mosm/kg

What is the interstitial Osm at the inner medulla?

800-1200 mosm/kg (with ADH)

Tubular fluid entering the CD is always....

hypo-osmotic (~100 mosm/kg)

Osmotic gradient allows...

water reabsorption only if CD is water-permeable (via ADH)

descending limb (dLH)

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