Q.The proximal convoluted tubule is lined by the -------------.
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🔒 Start your 14-day free trial to unlock the full solution →Concept understanding — Tubular Reabsorption
The Intuition: Your Body Doesn't Throw Away the Good Stuff
Imagine you're cooking a large pot of soup. You accidentally add too much salt, so you decide to strain the whole thing through a fine sieve. The liquid that passes through is now too watery and bland — but it still contains all the valuable bits: the vegetables, the spices, the chicken pieces. Would you throw that strained liquid away? Of course not. You'd pour it back into the pot, keep the good parts, and adjust the seasoning.
That's exactly what your kidneys do.
Your kidneys filter your entire blood volume about 60 times a day, producing roughly 180 litres of filtrate — that's the "strained soup." But you only pee out about 1.5 litres. The remaining 178.5 litres? Your body reabsorbs it. Every single drop of water, every molecule of glucose, every ion of sodium that your body still needs is pulled back into the blood before it can escape as urine.
Tubular reabsorption is the process by which the nephron — the functional unit of the kidney — selectively recovers water, glucose, ions, and other nutrients from the filtrate and returns them to the bloodstream. It's the reason you don't pee out your breakfast.
The Precise Statement
Tubular reabsorption is the movement of substances from the renal tubule (the filtrate side) back into the peritubular capillaries (the blood side). It occurs along the entire length of the nephron — proximal convoluted tubule (PCT), loop of Henle, distal convoluted tubule (DCT), and collecting duct — but the bulk happens in the PCT.
Reabsorption rate = Filtered load − Excretion rate
The filtered load is the amount of a substance that enters the tubule per minute (GFR times plasma concentration). The excretion rate is what actually leaves in urine (urine flow rate times urine concentration). The difference is what gets reabsorbed.
How It Actually Works: Two Pathways
Substances cross the tubular epithelium into the blood via two routes:
Transcellular route — through the cell itself. The substance enters the tubule cell across the apical membrane (facing the filtrate), then exits across the basolateral membrane (facing the blood). This is how glucose, amino acids, and most ions travel.
Paracellular route — between the cells, through tight junctions. Water and some ions (especially in the proximal tubule) slip through these gaps. This route is passive and driven by concentration gradients.
The driving force for most reabsorption is active transport of sodium ions (Na⁺) out of the tubule cell via the Na⁺/K⁺ ATPase pump on the basolateral side. This creates a low sodium concentration inside the cell, which pulls sodium in from the filtrate through various co-transporters — and along with sodium comes glucose, amino acids, chloride ions (Cl⁻), and water.
What Gets Reabsorbed Where
| Segment | What is reabsorbed | Mechanism |
|---|---|---|
| PCT | ~65% of filtered sodium, all glucose, all amino acids, most bicarbonate, ~65% of water, most chloride, potassium, calcium, magnesium | Active sodium transport; secondary active co-transport for glucose/amino acids; paracellular water and chloride |
| Loop of Henle | ~25% of filtered sodium, ~15% of water, ~40% of calcium, ~20% of magnesium | Sodium-potassium-2 chloride co-transporter in thick ascending limb (impermeable to water); thin descending limb reabsorbs water passively |
| DCT | ~5% of filtered sodium, calcium (regulated by PTH), magnesium | Sodium-chloride co-transporter; calcium reabsorption via TRPV5 channels |
| Collecting duct | Variable amounts of water (regulated by ADH), sodium (regulated by aldosterone), urea | Aquaporins for water; ENaC channels for sodium; urea transporters |
The PCT of the nephron is lined with simple cuboidal epithelium having microvilli (brush border) for r …
[!TLDR]
Cuboidal epithelium
Method
The PCT of the nephron is lined with simple cuboidal epithelium having microvilli (brush b …
- CBSE 2026Set ANNUAL1 markMCQQ.In which part of the nephron does reabsorption of essential nutrients, ions and water take place?(a) Proximal convoluted tubule(b) Henle's loop(c) Collecting duct(d) Glomerulus
›Reveal solutionSolution
Most reabsorption of glucose, amino acids, ions and water from the filtrate happens in the PCT.
After filtration at the glomerulus produces the glomerular filtrate, this filtrate passes into the proximal convoluted tubule (PCT), which is lined by simple cuboidal brush-border epithelium to increase the surface area for reabsorption. The PCT reabsorbs almost all of the essential nutrients (glucose, amino acids), and a major fraction of electrolytes (Na+, Cl−, etc.) and water, back into the peritubular capillaries — largely by active transport. It also helps maintain the pH and ionic balance of body fluids by selective secretion of H+, NH3, and K+ ions into the filtrate …
- CBSE 2026Set ANNUAL1 markQ.The proximal convoluted tubule is lined by the -------------.
›Reveal solutionSolution
[!TLDR]
Cuboidal epithelium
Method
The PCT of the nephron is lined with simple cuboidal epithelium having microvilli (brush b …
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