Explain the process by which the body maintains haemostasis
Haemostasis is normal blood
clotting process that prevents excessive blood loss in the body following
vascular injury. It is essential for survival. There are three primary
mechanisms to control bleeding. The mechanisms are vascular spasm, platelet
plug, and blood clotting.
Vascular spasm occurs When a blood vessels is punctured. The smooth
muscles surrounding the blood vessel hold the blood supply to the area. It can
hold for minutes to hours.
Platelet plug formation
is a more complex process than vascular spasm. There are three phases in this
mechanism: Platelet adhesion, Platelet release reaction and Platelet
aggregation. Platelet adhesion is the first phase. When the damage to a blood
vessel has been detected by platelets, it begins to adhere to the exposed
surfaces. Once platelets stuck to a damaged area, the platelets begin to
change, which is called Platelet release reaction phase.
Firstly Platelet created extensions in order to contact each other, so that
they can release their contents. There are two types of chemical packages known
as granules, which are held within the cytoplasm of platelets. Two types of
granules are alpha granules and dense granules. Alpha granules contain clotting
factors, growth factors, and fibroblasts. Dense granules contain ADP, ATP,
Calcium ions, and Serotonin. In the Platelet
aggregation phase, the ADP make the nearby platelets sticky and combine
together with the other recruited platelets and form a platelet plug helping to
stop the loss of blood through holes in small vessels.
Blood Clotting or Coagulation is the most complex haemostatic
process. The main purpose of the process is to turn liquid blood into a gel.
The gel is called a clot and is composed of protein fibres called fibrin in
which the formed elements of blood are trapped. The gel effectively forms a cap
over a wound. There are several substances in clotting process, which are
called clotting factors. These factors are one to three, using Roman
numerals. These clotting factors are a
cascade of interactions and resulting in clot formation. Clotting occurs in
three stages. The first stage occurs via two distinct pathways, intrinsic or
extrinsic, results in the formation of the enzyme prothrombinase. In the second
stage of the process, prothrombin is catalysed by prothrombinase and calcium
ions to the enzyme thrombin. In stage three, thrombin converts fibrinogen to
loose fibrin threads. Vitamin K is a key
factor required for the formation of several clotting factors.
The clot caps a damaged area to stop
the bleeding. In addition, the fibrin within the clot sews the damaged area pulling
back together. Once the damage has been repaired, tissue repair take place.
Once the damaged vessels have
been repaired, the fibrinolytic system prevents clots from getting too large
and helps to dissolves clots. Fibrinolysis is the process of dissolving a clot,
by removing the fibrin within it.
Haemostasis process is very
sophisticated mechanism to protect from the loss of blood from ruptured blood
vessels. However, if there is large ruptures occur on the blood vessels,
medical treatment is necessary to prevent the excessive loss of blood.
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