IGF1 induces cell proliferation in human pituitary tumors – Functional blockade of IGF1 receptor as a novel therapeutic approach in non-functioning tumors

2014 ◽  
Vol 390 (1-2) ◽  
pp. 93-101 ◽  
Author(s):  
Hadara Rubinfeld ◽  
Adi Kammer ◽  
Ortal Cohen ◽  
Alexander Gorshtein ◽  
Zvi R. Cohen ◽  
...  
2002 ◽  
Vol 87 (10) ◽  
pp. 4741-4746 ◽  
Author(s):  
Daniel C. Danila ◽  
Xun Zhang ◽  
Yunli Zhou ◽  
Jaafar N. Sleiman Haidar ◽  
Anne Klibanski

Activin is a member of the TGFβ family of cytokines involved in the control of cell proliferation. We have previously shown that the majority of clinically nonfunctioning pituitary tumors do not respond to activin-induced growth suppression. Human pituitary tumors specifically express alternatively spliced activin type I receptor Alk4 mRNAs, producing C-terminus truncated isoforms designated Alk4-2, 4-3, and 4-4. However, it is not known whether these truncated activin receptors suppress activin effects on cell proliferation in human pituitary cells. Therefore, we investigated activin signaling in a human pituitary tumor cell line, HP75, derived from a clinically nonfunctioning pituitary tumor. HP75 cells express activin A mRNA and secrete activin A, as measured by ELISA and a functional bioassay. TGFβ administration decreases the proliferation of HP75 cells, suggesting that the signaling pathway shared by TGFβ and activin is functional in this cell line. However, activin neither inhibits cell proliferation nor stimulates reporter gene expression in HP75 cells, indicating that activin signaling is specifically blocked at the receptor level. HP75 cells express all truncated activin type I receptor Alk4 isoforms, as determined by RT-PCR. Because truncated Alk4 receptor isoforms inhibit activin signaling by competing with the wild-type receptor for binding to activin type II receptors, we hypothesized that overexpression of wild-type activin type I receptor will restore activin signaling. In HP75 cells, cotransfection of the wild-type activin type I receptor Alk4-1 expression vector increases activin-responsive reporter activity. Furthermore, transfection with wild-type activin receptor type I results in activin-mediated suppression of cell proliferation. These data indicate that truncated Alk4 isoforms interfere with activin signaling pathways and thereby may contribute to uncontrolled cell growth. Overexpression of the wild-type Alk4-1 receptor restores responsiveness to activin in human pituitary tumor-derived cells.


Author(s):  
E. Horvath ◽  
K. Kovacs ◽  
I. E. Stratmann ◽  
C. Ezrin

Surgically removed human pituitary glands as well as pituitary tumors fixed in glutaraldehyde, postfixed in osmium tetroxide, embedded in epon resin, stained with uranyl acetate and lead citrate have been investigated by electron microscopy in order to correlate ultrastructure with functional activity. In the course of this study two distinct types of microfilaments have been identified in the cytoplasm of adenohypophysiocytes.Type I microfilaments (Fig. 1) were found in the cytoplasm of anterior lobe cells of five female subjects with disseminated mammary cancer and two patients with severe diabetes mellitus. The breast cancer patients were treated pre-operatively for various periods of time with different doses of oxysteroids. The microfilaments had an average diameter of JO A, formed parallel bundles, were scattered irregularly in the cytoplasm and were frequently located in the perikaryon. They were not membrane-bound and failed to show any periodicity.


2010 ◽  
Vol 49 (05) ◽  
pp. N41-N43
Author(s):  
T. Winder ◽  
A. Schuster ◽  
A. Becherer ◽  
K. Gasser ◽  
A. De Vries ◽  
...  

2017 ◽  
Author(s):  
Maximilian Bielohuby ◽  
Surya Prakash ◽  
Bodo Brunner ◽  
Anja Pfenninger ◽  
Ulrich Werner ◽  
...  

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