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The diffuse neuroendocrine (APUD) system.

J M Launay, F Tabuteau, M Haimart

    Biomedicine & Pharmacotherapy = Biomedecine & Pharmacotherapie
    |January 1, 1983
    PubMed
    Summary
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    The amine precursor uptake decarboxylation (APUD) cell system, characterized by shared pathophysiological traits, plays a complex role in maintaining homeostasis. Further research into APUD cell tumors (apudomas) is crucial for understanding normal physiology and improving patient management.

    Area of Science:

    • Endocrinology
    • Neuroscience
    • Oncology

    Background:

    • The amine precursor uptake decarboxylation (APUD) cell system is recognized for its distinct pathophysiological features.
    • Its diffuse nature, spanning the central and peripheral nervous systems, implies intricate homeostatic interactions.
    • The APUD concept involves cells with pluripotential for producing biogenic amines and peptides.

    Purpose of the Study:

    • To highlight the significance of the APUD cell system in understanding body homeostasis.
    • To emphasize the importance of recognizing the multicentric nature and potential for multiple cell involvement in APUD-related diseases.
    • To underscore the role of apudomas in advancing the understanding of normal APUD cell physiology.

    Main Methods:

    • Review of existing experimental evidence.

    Related Experiment Videos

  • Discussion of the implications of emerging radioimmunological and radioenzymatic assays.
  • Conceptual analysis of the APUD concept and its clinical relevance.
  • Main Results:

    • Experimental evidence supports the APUD cell series as a distinct system.
    • The diffuse and complex nature of the APUD system suggests broader homeostatic roles.
    • Advancements in assays are expected to identify additional apudomas.

    Conclusions:

    • Understanding the APUD concept is vital for managing patients with apudomas.
    • Further studies on apudomas will elucidate normal APUD cell physiological interrelationships.
    • The APUD system's complexity necessitates a comprehensive approach to diagnosis and treatment.