Literature DB >> 7910711

Tumors of the endocrine/neuroendocrine system: an overview.

R A Erlandson1, J M Nesland.   

Abstract

For the sake of discussion, the markedly diversified tumors of the endocrine/neuroendocrine system are classified as those originating in classic epithelial endocrine organs (eg, adrenal cortical adenomas), from the diffuse endocrine cells (eg, jejunal carcinoid tumors), or from clusters of these cells (eg, islet cell tumors); and those arising from neurosecretory neurons (eg, neuroblastoma) or paraganglia (eg, carotid body tumor). Although traditional transmission electron microscopy is useful for identifying neurosecretory or endosecretory granules as such, with few exceptions (eg, insulin-containing granules with a complex paracrystalline core) it is not possible to ascribe a granule type (size, shape, or ultrastructure) to a distinct nosologic entity or secretory product because of their overlapping fine structures in different cell types. Immunoelectron microscopy methods utilizing colloidal gold-labeled secondary antibodies can be used to localize virtually any antigen (peptide or neuroamine) to a specific neurosecretory or endosecretory granule or other cell structure. General endocrine/neuroendocrine cell markers such as neuron-specific enolase, the chromogranins, and synaptophysin are useful in identifying neuroendocrine differentiation in a neoplasm using routine immunohistochemical procedures. The current relevance of the APUD concept of Pearse as well as the biologic importance of endocrine/neuroendocrine secretory products such as bombesin and insulinlike growth factors also are discussed.

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Year:  1994        PMID: 7910711     DOI: 10.3109/01913129409016286

Source DB:  PubMed          Journal:  Ultrastruct Pathol        ISSN: 0191-3123            Impact factor:   1.094


  6 in total

1.  Imaging of nonlaryngeal neuroendocrine carcinoma.

Authors:  U S Kanamalla; P P Kesava; H S McGuff
Journal:  AJNR Am J Neuroradiol       Date:  2000-04       Impact factor: 3.825

2.  Comparison of somatostatin analogue and metaiodobenzylguanidine scintigraphy for the detection of carcinoid tumours.

Authors:  M Nocaudie-Calzada; D Huglo; B Carnaille; C Proye; X Marchandise
Journal:  Eur J Nucl Med       Date:  1996-11

3.  Neuroendocrine differentiation in human prostatic tumor models.

Authors:  M A Noordzij; W M van Weerden; C M de Ridder; T H van der Kwast; F H Schröder; G J van Steenbrugge
Journal:  Am J Pathol       Date:  1996-09       Impact factor: 4.307

Review 4.  Neuroendocrine cells in the normal, hyperplastic and neoplastic prostate.

Authors:  M A Noordzij; G J van Steenbrugge; T H van der Kwast; F H Schröder
Journal:  Urol Res       Date:  1995

5.  Metastatic well-differentiated neuroendocrine carcinoma of the pancreas: case report and review of literature.

Authors:  Mersadies R Martin; Umer F Malik; Deepak Mohan; Ahmed Mahmoud
Journal:  Cases J       Date:  2009-09-01

6.  Surface marker profiling of SH-SY5Y cells enables small molecule screens identifying BMP4 as a modulator of neuroblastoma differentiation.

Authors:  Fraua Christina Ferlemann; Vishal Menon; Alexandra Larisa Condurat; Jochen Rößler; Jan Pruszak
Journal:  Sci Rep       Date:  2017-10-19       Impact factor: 4.379

  6 in total

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