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Acute inflammation is the body's immune response to a potentially harmful situation, such as an infection.
At the site of injury, the initial stimulus triggers a complex cascade of numerous chemicals. For example, mast cells release histamines and generate prostaglandins to promote vasodilation.
The expansion of these local blood vessels allows more blood flow to the injured tissue, resulting in redness and warmth.
Vascular permeability also increases. Due to the contraction of endothelial cells, gaps form, causing exudate, protein rich fluid to leak into the affected area. That produces swelling and pain.
Concurrently, neutrophils, the phagocytic white blood cells, respond to chemicals called leucocytosis inducing factors by increasing their number in blood. In a process known as margination, they bind tightly at the gaps and then flatten out and squeeze through the capillaries during diapedesis.
The neutrophils follow the chemicals trail towards the site along with additional cells such as monocytes and lymphocytes that are also attracted via chemotaxis.
Some of the proteins that leaked out of the capillaries then help with clotting, forming a fibrin mesh that isolates the area and acts as a scaffold for repair to start the healing process.
In response to tissue injury and infection, mast cells initiate inflammation. Mast cells release chemicals that increase the permeability of…
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