The Kidney (Cambridge (CIE) IGCSE Biology): Revision Note

Exam code: 0610 & 0970

Phil

Written by: Phil

Reviewed by: Jenna Quinn

Updated on

The kidney & the nephron: Extended

  • The kidneys are located in the back of the abdomen and have two important functions in the body:

    • they regulate the water content of the blood (vital for maintaining blood pressure)

    • they excrete the toxic waste products of metabolism (such as urea) and substances in excess of requirements (such as salts)

Diagram showing human kidneys and a labelled kidney cross-section with renal artery, renal vein, cortex, medulla, adrenal gland, ureter and nephrons.
The structure of a human kidney

The nephron 

  • Each kidney contains around a million tiny structures called nephrons, also known as kidney tubules or renal tubules

  • The nephrons start in the cortex of the kidney, loop down into the medulla and back up to the cortex

  • The contents of the nephrons drain into the innermost part of the kidney and the urine collects there before it flows into the ureter to be carried to the bladder for storage

Diagram of a kidney nephron showing glomerulus, Bowman’s capsule, proximal and distal convoluted tubules, loop of Henle and collecting duct.
Structure of a nephron

Ultrafiltration

  • Arterioles branch off the renal artery and lead to each nephron, where they form a knot of capillaries (the glomerulus) sitting inside the cup-shaped Bowman’s capsule 

  • The capillaries get narrower as they get further into the glomerulus which increases the pressure on the blood moving through them (which is already at high pressure because it is coming directly from the renal artery which is connected to the aorta

  • This eventually causes the smaller molecules being carried in the blood to be forced out of the capillaries and into the Bowman’s capsule, where they form what is known as the filtrate

  • This process is known as ultrafiltration

  • The substances forced out of the capillaries are: glucose, water, urea, salts

  • Some of these are useful and will be reabsorbed back into the blood further down the nephron 

Diagram of a nephron showing ultrafiltration: blood enters the glomerulus, high pressure forces water, salts, glucose and urea into Bowman’s capsule
Diagram showing the process of ultrafiltration

Reabsorption of glucose

  • After the glomerular filtrate enters the Bowman’s Capsule, glucose is the first substance to be reabsorbed at the proximal (first) convoluted tubule

  • This takes place by active transport

  • The nephron is adapted for this by having many mitochondria to provide energy for the active transport of glucose molecules

  • Reabsorption of glucose cannot take place anywhere else in the nephron as the gates that facilitate the active transport of glucose are only found in the proximal convoluted tubule

  • In a person with a normal blood glucose level, there are enough gates present to remove all of the glucose from the filtrate back into the blood

  • People with diabetes cannot control their blood glucose levels and they are often very high, meaning that not all of the glucose filtered out can be reabsorbed into the blood in the proximal convoluted tubule

  • As there is nowhere else for the glucose to be reabsorbed, it continues in the filtrate and ends up in the urine

  • This is why one of the first tests a doctor may do to check if someone is diabetic is to test their urine for the presence of glucose

Diagram of a nephron showing filtrate flow and reabsorption of glucose, salts and water in tubules, loop of Henle and collecting duct forming urine
Diagram showing the reabsorption of glucose

Reabsorption of water & salts

  • As the filtrate drips through the Loop of Henle necessary salts are reabsorbed back into the blood by diffusion and active transport

  • As salts are reabsorbed back into the blood, water follows by osmosis (opens in a new tab)

  • Water is also reabsorbed from the collecting duct in different amounts depending on how much water the body needs at that time

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Phil

Author: Phil

Expertise: Biology Content Creator

Phil has a BSc in Biochemistry from the University of Birmingham, followed by an MBA from Manchester Business School. He has 15 years of teaching and tutoring experience, teaching Biology in schools before becoming director of a growing tuition agency. He has also examined Biology for one of the leading UK exam boards. Phil has a particular passion for empowering students to overcome their fear of numbers in a scientific context.

Jenna Quinn

Reviewer: Jenna Quinn

Expertise: Content Creator

Jenna studied at Cardiff University before training to become a science teacher at the University of Bath specialising in Biology (although she loves teaching all three sciences at GCSE level!). Teaching is her passion, and with 10 years experience teaching across a wide range of specifications – from GCSE and A Level Biology in the UK to IGCSE and IB Biology internationally – she knows what is required to pass those Biology exams.