PNAS 2009-09-15

Expression of neuropeptide hormone receptors in human adrenal tumors and cell lines: antiproliferative effects of peptide analogues.

C G Ziegler, J W Brown, A V Schally, A Erler, L Gebauer, A Treszl, L Young, L M Fishman, J B Engel, H S Willenberg, S Petersenn, G Eisenhofer, M Ehrhart-Bornstein, S R Bornstein

Index: Proc. Natl. Acad. Sci. U. S. A. , (2009)

Full Text: HTML

Abstract

Peptide analogues targeting various neuropeptide receptors have been used effectively in cancer therapy. A hallmark of adrenocortical tumor formation is the aberrant expression of peptide receptors relating to uncontrolled cell proliferation and hormone overproduction. Our microarray results have also demonstrated a differential expression of neuropeptide hormone receptors in tumor subtypes of human pheochromocytoma. In light of these findings, we performed a comprehensive analysis of relevant receptors in both human adrenomedullary and adrenocortical tumors and tested the antiproliferative effects of peptide analogues targeting these receptors. Specifically, we examined the receptor expression of somatostatin-type-2 receptor, growth hormone-releasing hormone (GHRH) receptor or GHRH receptor splice variant-1 (SV-1) and luteinizing hormone-releasing hormone (LHRH) receptor at the mRNA and protein levels in normal human adrenal tissues, adrenocortical and adrenomedullary tumors, and cell lines. Cytotoxic derivatives of somatostatin AN-238 and, to a lesser extent, AN-162, reduced cell numbers of uninduced and NGF-induced adrenomedullary pheochromocytoma cells and adrenocortical cancer cells. Both the splice variant of GHRH receptor SV-1 and the LHRH receptor were also expressed in adrenocortical cancer cell lines but not in the pheochromocytoma cell line. The GHRH receptor antagonist MZ-4-71 and LHRH antagonist Cetrorelix both significantly reduced cell growth in the adrenocortical cancer cell line. In conclusion, the expression of receptors for somatostatin, GHRH, and LHRH in the normal human adrenal and in adrenal tumors, combined with the growth-inhibitory effects of the antitumor peptide analogues, may make possible improved treatment approaches to adrenal tumors.


Related Compounds

  • phenylethanolamine

Related Articles:

A quantum dot based electrochemiluminescent immunosensor for the detection of pg level phenylethanolamine A using gold nanoparticles as substrates and electron transfer accelerators.

2014-09-07

[Analyst 139(17) , 4365-72, (2014)]

Development and validation of a sensitive method for simultaneous determination of eight β₂-agonists in pork by ultrasonic-assisted extraction and liquid chromatography/tandem mass spectrometry.

2015-01-01

[J. Chromatogr. Sci. 53(1) , 104-11, (2014)]

Simultaneous determination of plasma phenethylamine, phenylethanolamine, tyramine and octopamine by high-performance liquid chromatography using derivatization with fluorescamine.

[J. Chromatogr. A. 427(2) , 320-5, (1988)]

Combinations of growth promoters in veal calves: consequences for screening and confirmation methods.

1998-09-01

[Zentralbl. Veterinarmed. A 45(6-7) , 425-40, (1998)]

A phase I/II trial of epirubicin and docetaxel in locally advanced breast cancer (LABC) on 2-weekly or 3-weekly schedules: NCIC CTG MA.22.

2015-01-01

[Springerplus 4 , 631, (2015)]

More Articles...