Extrinsic (Death Receptor) Pathway:
Intrinsic (Mitochondrial) Pathway:
Perforin/Granzyme Pathway:
Execution Pathway:
Execution Pathway and Cellular Outcomes:
Cell Survival Mechanism:
Negative Regulators:
IAP Proteins:
Bcl-2:
Cancer Connection:
Importance of IAPs and Bcl-2:
Extrinsic Pathway Regulation:
Intrinsic Pathway Regulation:
Cytomorphological Alteration:
DNA Fragmentation:
Caspase Detection:
Membrane Alterations:
Whole Mounts:
Mitochondrial Assays:
Understanding apoptosis through diverse assays ensures accurate evaluation, given the intricacy of the process and potential overlaps with necrosis. The combination of assays provides a comprehensive view of the dynamic cellular events involved in apoptosis.
Developmental Role:
Cell Population Maintenance:
Removal of Damaged Cells:
Immune System Check:
Immune Response Regulation:
Neuronal Development and Diseases:
Disease Implications:
Understanding the multifaceted roles of apoptosis highlights its significance in development, immune response, and disease prevention, emphasizing the delicate balance required for proper cellular function.
Genetic Changes in Cancer:
DNA Damage and Apoptosis Inhibition:
Protein Imbalance and Chemoresistance:
Caspase Dysfunction and Colorectal Cancer Example:
Restoration of Apoptotic Signaling as Cancer Treatment:
Programmed Cell Death in Plants:
Control of Plant Programmed Cell Death:
Differences in Mechanism:
Morphological Changes in Plant Programmed Cell Death:
Understanding the distinctions in apoptosis in cancer and programmed cell death in plants provides insights into the diverse mechanisms governing cell fate in different organisms.
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