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Differential Expression of Stem Cell Markers in Human Adamantinomatous Craniopharyngioma and Pituitary Adenoma
Chang, Claudia Veiga; Araujo, Ricardo Vieira; Cirqueira, Cinthya Santos; Cani, Carolina Maria Gomes; Matusshita, Hamilton; Cescato, Valter Angelo Sperling; Fragoso, Maria Candida Barisson V; Bronstein, Marcello Delano; Zerbini, Maria Claudia Nogueira; Mendonca, Berenice Bilharinho; Carvalho, Luciani Renata.
  • Chang, Claudia Veiga; Universidade de São Paulo. BR
  • Araujo, Ricardo Vieira; Universidade de São Paulo. BR
  • Cirqueira, Cinthya Santos; Secretaria da Saúde do Estado de São Paulo. Instituto Adolfo Lutz. BR
  • Cani, Carolina Maria Gomes; Universidade de São Paulo. BR
  • Matusshita, Hamilton; Universidade de São Paulo. BR
  • Cescato, Valter Angelo Sperling; Universidade de São Paulo. BR
  • Fragoso, Maria Candida Barisson V; Universidade de São Paulo. BR
  • Bronstein, Marcello Delano; Universidade de São Paulo. BR
  • Zerbini, Maria Claudia Nogueira; Universidade de São Paulo. BR
  • Mendonca, Berenice Bilharinho; Universidade de São Paulo. BR
  • Carvalho, Luciani Renata; Universidade de São Paulo. BR
Neuroendocrinology ; 104(2): 183-193, 2017.
Article in English | LILACS, SES-SP | ID: biblio-1024761
ABSTRACT
Background/

Aims:

Although craniopharyngioma (CP) is histologically benign, it is a pituitary tumour that grows rapidly and often recurs. Adamantinomatous CP (ACP) was associated with an activating mutation in ß-catenin, and it has been postulated that pituitary stem cells might play a role in oncogenesis in human ACP. Stem cells have also been identified in pituitary adenoma. Our aim was to characterize the expression pattern of ABCG2, CD44, DLL4, NANOG, NOTCH2, POU5F1/OCT4, SOX2, and SOX9 stem cell markers in human ACP and pituitary adenoma. Methods and

Results:

We studied 33 patients (9 ACP and 24 adenoma) using real-time quantitative PCR (RT-qPCR) and immunohistochemistry. SOX9 was up-regulated in ACP, exhibiting positive immunostaining in the epithelium and stroma, with the highest expression in patients with recurrence. CD44 was overexpressed in ACP as confirmed by immunohistochemistry. SOX2 did not significantly differ among the tumour types. The RT-qPCR array showed an increased expression of MKI67,OCT4/POU5F1, and DLL4 in all tumours. NANOG was decreased in ACP. ABCG2 was down-regulated in most of the tumours. NOTCH2 was significantly decreased in the adenomas.

Conclusion:

Our results confirm the presence of stem cell markers in human pituitary tumours as well as the different expression patterns of ACP and adenoma. These findings suggest that ACP may originate from a more undifferentiated cell cluster. Additionally, SOX9 immunodetection in the stroma and the highest expression levels related to the relapse of patients suggest a contribution to the aggressive behaviour and high recurrence of this tumour type.
Subject(s)
Full text: Available Index: LILACS (Americas) Main subject: Pituitary Neoplasms / Aged / Humans / Biomarkers, Tumor / Adenoma / Gene Expression / Child / Child, Preschool / Adolescent / Hyaluronan Receptors Type of study: Prognostic study Language: English Journal: Neuroendocrinology Year: 2017 Type: Article Institution/Affiliation country: Secretaria da Saúde do Estado de São Paulo/BR / Universidade de São Paulo/BR

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Full text: Available Index: LILACS (Americas) Main subject: Pituitary Neoplasms / Aged / Humans / Biomarkers, Tumor / Adenoma / Gene Expression / Child / Child, Preschool / Adolescent / Hyaluronan Receptors Type of study: Prognostic study Language: English Journal: Neuroendocrinology Year: 2017 Type: Article Institution/Affiliation country: Secretaria da Saúde do Estado de São Paulo/BR / Universidade de São Paulo/BR