Key result
Apoptosis and necrosis share overlapping morphological and biochemical features, with apoptosis frequently followed by secondary necrosis if apoptotic bodies are not cleared.
Apoptosis and necrosis share overlapping morphological and biochemical features, with apoptosis frequently followed by secondary necrosis.
Overlapping cell death features inform cardiac injury models; leaves open whether targeting secondary necrosis alters clinical outcomes.
poptosis, or programmed cell death, is a process through which multicellular organisms dispose of cells efficiently. Much has been discovered about the molecular control of apoptosis since its initial description as a series of morphological events. 1 Apoptosis defines a type of cell death distinct from the more conventional necrotic death, seen classically in myocardial infarction, on the basis of characteristic morphological features (table 1, fig Although these descriptions and distinctions are useful, there is a great deal of overlap between apoptosis and necrosis in morphological features and biochemical events. Indeed, apoptosis is frequently followed by secondary necrosis of cells, especially if there is failure of clearance or ingestion of apoptotic bodies.
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J-M Schleich (2002) conducted a review in Apoptosis and myocardial infarction. Apoptosis and necrosis share overlapping morphological and biochemical features, with apoptosis frequently followed by secondary necrosis if apoptotic bodies are not cleared.
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