9.4 Blood

Syllabus
0610–2026–2027
Topic
9.4
Level

Learning objectives

List the components of blood

Blood consists of plasma with red blood cells, white blood cells and platelets suspended in it.

Component What it is
plasma the liquid part of blood
red blood cells specialised cells present in very large numbers
white blood cells immune cells
platelets small cell fragments involved in clotting

Plasma is the transport medium; the three formed components travel within it.

Plasma is part of blood. It is not the same as tissue fluid or lymph.

Identify red and white blood cells

Use relative number, size, shape and presence of a nucleus to distinguish red and white blood cells in diagrams or photomicrographs.

Feature Red blood cell White blood cell
number in a typical field many far fewer
shape small biconcave disc with a pale centre larger and less regular
nucleus absent present and dark-staining

First find the numerous small pale-centred discs: these are red cells. Larger cells with dark nuclei are white cells.

A pale centre in a red blood cell is not a nucleus; mature red blood cells have no nucleus.

State the functions of blood components

Each blood component has a distinct transport, defence or clotting role.

Component Function
red blood cells transport oxygen; haemoglobin binds oxygen
white blood cells defend by phagocytosis and antibody production
platelets promote blood clotting
plasma transports blood cells, ions, nutrients, urea, hormones and carbon dioxide

Match the substance or process to its carrier: oxygen mainly with haemoglobin in red cells; the listed dissolved substances and cells in plasma.

Plasma transports the blood cells; red blood cells do not transport every substance in blood.

State why blood clotting is important

Blood clotting seals a damaged blood vessel.

Role Consequence
prevents blood loss limits bleeding from the wound
prevents pathogen entry forms a barrier between damaged tissue and the environment

Both roles follow from closing the break in the skin and blood vessel.

Clotting prevents entry of pathogens at a wound; it does not destroy every pathogen already inside the body.

Identify lymphocytes and phagocytes

Lymphocytes and phagocytes are white blood cells distinguished mainly by nuclear shape and relative amount of cytoplasm.

Cell Recognition cue
lymphocyte large, round nucleus occupying most of the cell; thin rim of cytoplasm
phagocyte lobed or irregular nucleus; more cytoplasm and a less regular outline

In a blood image, first confirm the cell is a nucleated white cell, then use the round-versus-lobed nucleus distinction.

Cell size alone is not reliable; use nuclear shape and cytoplasm together.

Distinguish lymphocyte and phagocyte functions

Lymphocytes produce antibodies; phagocytes engulf pathogens by phagocytosis.

White blood cell Function
lymphocyte produces antibodies that act against specific antigens
phagocyte surrounds and engulfs pathogens by phagocytosis

Antibody production is a chemical defence by lymphocytes; engulfment is a cellular process carried out by phagocytes.

Lymphocytes do not engulf pathogens in this syllabus model, and phagocytes do not produce antibodies.

Describe the process of blood clotting

At a damaged blood vessel, platelets help trigger conversion of soluble fibrinogen into insoluble fibrin.

Stage Event
1 the vessel is damaged and platelets become involved
2 soluble fibrinogen is converted to insoluble fibrin
3 fibrin forms a mesh across the wound
4 the mesh traps blood cells, forming a clot that seals the wound

The fibrin mesh produces the physical barrier that reduces blood loss and pathogen entry.

Fibrinogen is the soluble precursor; fibrin is the insoluble mesh. Do not reverse the conversion.