hm/ch-1/l-2,3 cell injury & cellular … lectures/pathology/hm_ch1_l2_3.pdfcell injury &...
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HM/CH-1/L-2,3
CELL INJURY & CELLULAR ADAPTATIONS
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CELL INJURY
DEFINITION VARIABLES FOR CELL RESPONSE: Type of cell and tissue involved Extent and type of cell injury
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CELLULAR RESPOSES
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ETIOLOGY OF CELL INJURY GENETIC CAUSES ACQUIRED CAUSES1. Hypoxia and ischaemia2. Physical agents3. Chemical agents and drugs4. Microbial agents5. Immunologic agents6. Nutritional derangements7. Ageing8. Psychologic Diseases 9. Iatrogenic causes10. Idiopathic diseases
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PATHOGENESIS OF CELL INJURYBasic underlying principles:1. Type, duration and severity of injurious
agent2. Type, status and adaptability of target cell3. Underlying intracellular phenomena:
-Mitochondrial dysfunction-Membrane damage-Release of toxic free radicals
4. Morphologic consequences
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PATHOGENESIS OF ISCHAEMIC AND HYPOXIC CELL INJURY
REVERSIBLE CELL INJURY IRREVERSIBLE CELL INJURY
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REVERSIBLE CELL INJURYMECHANISM
1. Decreased generation of cellular ATP
2. Intracellular lactic acidosis
3. Damage to plasma membrane pumps (Na-K, Ca)
4. Reduced protein synthesis
EFFECT1. Damage by ischaemia
versus hypoxia from other causes
2. Nuclear clumping3. Hydropic swelling and
other membrane changes
4. Dispersed ribosomes
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IRREVERSIBLE CELL INJURYKey events in “point of no return”: Inability to reverse mitochondrial
dysfunction Disturbed membrane function Continued reduction of ATP, depletion of
proteins, reduced intracellular pH, leakage of lysosomal enzymes
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IRREVERSIBLE CELL INJURYMECHANISM
1. Calcium influx2. Activated
phospholipases3. Intracellular
proteases4. Activated
endonucleases5. Lysosomal
hydrolytic enzymes
EFFECT1. Mitochondrial
damage2. Membrane damage3. Cytoskeletal damage4. Nuclear damage
5. Lysosomal damage, cell death, phagocytosis
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Attempts at restoration of blood supply
Cell injury due to oxygen deprivation: depends upon duration of ischaemia and blood restoration
Cell injury accentuated by restoration of perfusion (ischaemia-reperfusion injury) and subsequent events (liberation of toxic free radicals)
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3 different consequences:
Ishaemia to reversible cell injury Ischaemia to reperfusion injury Ischaemia to irreversible injury