Membranes and membrane transport — IB Diploma Biology SL
IB Biology B2.1: lipid bilayers, simple diffusion, osmosis and aquaporins, channels and pumps, and the fluid mosaic model.
IB Biology B2.1: lipid bilayers, simple diffusion, osmosis and aquaporins, channels and pumps, and the fluid mosaic model.
3 short notes, in the order of the specification. Each one in short:
A lipid bilayer is a double layer of amphipathic phospholipids that forms naturally in water, with hydrophilic phosphate heads facing the water on both sides and hydrophobic hydrocarbon tails forming the core. The core has low permeability to ions, polar molecules and large molecules, but small non-polar molecules such as oxygen and carbon dioxide cross it by simple diffusion.
Osmosis is the net movement of water across a partially permeable membrane from a lower to a higher solute concentration; aquaporins are channels that greatly speed it up. Channel proteins let specific ions diffuse through when open, and pump proteins use ATP to move specific particles against a concentration gradient. Both make membranes selectively permeable.
The fluid mosaic model describes a membrane as a fluid phospholipid bilayer with a mosaic of proteins in it. Integral proteins are embedded in one or both lipid layers; peripheral proteins are attached to one surface. Glycoproteins and glycolipids carry carbohydrate chains on the extracellular side, where they work in cell adhesion and cell recognition.
5 exam-style questions (17 marks), each with its mark scheme.
Answer the questions13 cards: flip them, mark what you knew, and practise the rest.
Practise the cardsThe whole of cells (form and function) on one page, so you can see where this subtopic fits.
Open the mind mapFree PDFs to print or save.
Which part of a phospholipid is hydrophobic?
The two hydrocarbon (fatty acid) tails.
Name the channel protein that lets water cross membranes rapidly.
Aquaporin.
What does a pump protein use to move particles against a concentration gradient?
Energy from ATP.
On which side of the plasma membrane are the carbohydrate chains of glycoproteins?
The extracellular side.
Oxygen is small and non-polar, so it can pass between the phospholipids through the hydrophobic core of the membrane by simple diffusion. Ions are charged and hydrophilic, so they cannot easily enter the hydrocarbon core. They cross only through specific channel or pump proteins, which makes the membrane selectively permeable.
Osmosis is a special case of diffusion: it is the net movement of water only, across a partially permeable membrane, from a lower to a higher solute concentration. Simple diffusion is the net movement of any particle from a higher to a lower concentration of that particle. Both are passive and caused by random movement of particles.
Facilitated diffusion is passive movement of specific particles down their concentration gradient through channel proteins, with no ATP used. Active transport uses energy from ATP and pump proteins to move specific particles against their concentration gradient. Both are selective, because each protein only lets certain particles across.
The fluid mosaic model describes the membrane as a phospholipid bilayer in which the lipids and many proteins move sideways (fluid), with proteins scattered through it like tiles (mosaic). It includes integral and peripheral proteins, glycoproteins, glycolipids and cholesterol, with hydrophilic surfaces and a hydrophobic core.
Written and checked against the IB Biology SL specification · Updated October 2026