Autocrine production of reproductive axis neuropeptides affects proliferation of canine osteosarcoma in vitro

Abstract Background Osteosarcoma strikes hundreds of people each year, of both advanced and younger ages, and is often terminal. Like many tumor types, these bone tumors will frequently undergo a neuroendocrine transition, utilizing autocrine and/or paracrine hormones as growth factors and/or promot...

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Main Authors: Marcus A. Weinman, Jacob A. Fischer, Dakota C. Jacobs, Cheri P. Goodall, Shay Bracha, Patrick E. Chappell
Format: Article
Language:English
Published: BMC 2019-02-01
Series:BMC Cancer
Subjects:
Online Access:http://link.springer.com/article/10.1186/s12885-019-5363-4
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spelling doaj-1ca6552a12524373804cfa36578495db2020-11-25T02:39:36ZengBMCBMC Cancer1471-24072019-02-0119111210.1186/s12885-019-5363-4Autocrine production of reproductive axis neuropeptides affects proliferation of canine osteosarcoma in vitroMarcus A. Weinman0Jacob A. Fischer1Dakota C. Jacobs2Cheri P. Goodall3Shay Bracha4Patrick E. Chappell5Department of Clinical Sciences, Carlson College of Veterinary Medicine, Oregon State UniversityDepartment of Biomedical Sciences, Carlson College of Veterinary Medicine, Oregon State UniversityDepartment of Biomedical Sciences, Carlson College of Veterinary Medicine, Oregon State UniversityDepartment of Biomedical Sciences, Carlson College of Veterinary Medicine, Oregon State UniversityDepartment of Clinical Sciences, Carlson College of Veterinary Medicine, Oregon State UniversityDepartment of Biomedical Sciences, Carlson College of Veterinary Medicine, Oregon State UniversityAbstract Background Osteosarcoma strikes hundreds of people each year, of both advanced and younger ages, and is often terminal. Like many tumor types, these bone tumors will frequently undergo a neuroendocrine transition, utilizing autocrine and/or paracrine hormones as growth factors and/or promoters of angiogenesis to facilitate progression and metastasis. While many of these factors and their actions on tumor growth are characterized, some tumor-derived neuropeptides remain unexplored. Methods Using validated canine osteosarcoma cell lines in vitro, as well as cells derived from spontaneous tumors in dogs, we explored the autocrine production of two neuropeptides typically found in the hypothalamus, and most closely associated with reproduction: gonadotropin-releasing hormone (GnRH) and kisspeptin (Kiss-1). We evaluated gene expression and protein secretion of these hormones using quantitative RT-PCR and a sensitive radioimmunoassay, and explored changes in cell proliferation determined by MTS cell viability assays. Results Our current studies reveal that several canine osteosarcoma cell lines (COS, POS, HMPOS, D17, C4) synthesize and secrete GnRH and express the GnRH receptor, while COS and POS also express kiss1 and its cognate receptor. We have further found that GnRH and kisspeptin, exogenously applied to these tumor cells, exert significant effects on both gene expression and proliferation. Of particular interest, kisspeptin exposure stimulated GnRH secretion from COS, similarly to the functional relationship observed within the neuroendocrine reproductive axis. Additionally, GnRH and kisspeptin treatment both increased COS proliferation, which additionally manifested in increased expression of the bone remodeling ligand rankl within these cells. These effects were blocked by treatment with a specific GnRH receptor inhibitor. Both neuropeptides were found to increase expression of the specific serotonin (5HT) receptor htr2a, the activation of which has previously been associated with cellular proliferation, suggesting that production of these factors by osteosarcoma cells may act to sensitize tumors to circulating 5HT of local and/or enteric origin. Conclusions Here we report that kisspeptin and GnRH act as autocrine growth factors in canine osteosarcoma cells in vitro, modulating RANKL and serotonin receptor expression in a manner consistent with pro-proliferative effects. Pharmacological targeting of these hormones may represent new avenues of osteosarcoma treatment.http://link.springer.com/article/10.1186/s12885-019-5363-4OsteosarcomaGnRHKisspeptinAutocrineProliferation
collection DOAJ
language English
format Article
sources DOAJ
author Marcus A. Weinman
Jacob A. Fischer
Dakota C. Jacobs
Cheri P. Goodall
Shay Bracha
Patrick E. Chappell
spellingShingle Marcus A. Weinman
Jacob A. Fischer
Dakota C. Jacobs
Cheri P. Goodall
Shay Bracha
Patrick E. Chappell
Autocrine production of reproductive axis neuropeptides affects proliferation of canine osteosarcoma in vitro
BMC Cancer
Osteosarcoma
GnRH
Kisspeptin
Autocrine
Proliferation
author_facet Marcus A. Weinman
Jacob A. Fischer
Dakota C. Jacobs
Cheri P. Goodall
Shay Bracha
Patrick E. Chappell
author_sort Marcus A. Weinman
title Autocrine production of reproductive axis neuropeptides affects proliferation of canine osteosarcoma in vitro
title_short Autocrine production of reproductive axis neuropeptides affects proliferation of canine osteosarcoma in vitro
title_full Autocrine production of reproductive axis neuropeptides affects proliferation of canine osteosarcoma in vitro
title_fullStr Autocrine production of reproductive axis neuropeptides affects proliferation of canine osteosarcoma in vitro
title_full_unstemmed Autocrine production of reproductive axis neuropeptides affects proliferation of canine osteosarcoma in vitro
title_sort autocrine production of reproductive axis neuropeptides affects proliferation of canine osteosarcoma in vitro
publisher BMC
series BMC Cancer
issn 1471-2407
publishDate 2019-02-01
description Abstract Background Osteosarcoma strikes hundreds of people each year, of both advanced and younger ages, and is often terminal. Like many tumor types, these bone tumors will frequently undergo a neuroendocrine transition, utilizing autocrine and/or paracrine hormones as growth factors and/or promoters of angiogenesis to facilitate progression and metastasis. While many of these factors and their actions on tumor growth are characterized, some tumor-derived neuropeptides remain unexplored. Methods Using validated canine osteosarcoma cell lines in vitro, as well as cells derived from spontaneous tumors in dogs, we explored the autocrine production of two neuropeptides typically found in the hypothalamus, and most closely associated with reproduction: gonadotropin-releasing hormone (GnRH) and kisspeptin (Kiss-1). We evaluated gene expression and protein secretion of these hormones using quantitative RT-PCR and a sensitive radioimmunoassay, and explored changes in cell proliferation determined by MTS cell viability assays. Results Our current studies reveal that several canine osteosarcoma cell lines (COS, POS, HMPOS, D17, C4) synthesize and secrete GnRH and express the GnRH receptor, while COS and POS also express kiss1 and its cognate receptor. We have further found that GnRH and kisspeptin, exogenously applied to these tumor cells, exert significant effects on both gene expression and proliferation. Of particular interest, kisspeptin exposure stimulated GnRH secretion from COS, similarly to the functional relationship observed within the neuroendocrine reproductive axis. Additionally, GnRH and kisspeptin treatment both increased COS proliferation, which additionally manifested in increased expression of the bone remodeling ligand rankl within these cells. These effects were blocked by treatment with a specific GnRH receptor inhibitor. Both neuropeptides were found to increase expression of the specific serotonin (5HT) receptor htr2a, the activation of which has previously been associated with cellular proliferation, suggesting that production of these factors by osteosarcoma cells may act to sensitize tumors to circulating 5HT of local and/or enteric origin. Conclusions Here we report that kisspeptin and GnRH act as autocrine growth factors in canine osteosarcoma cells in vitro, modulating RANKL and serotonin receptor expression in a manner consistent with pro-proliferative effects. Pharmacological targeting of these hormones may represent new avenues of osteosarcoma treatment.
topic Osteosarcoma
GnRH
Kisspeptin
Autocrine
Proliferation
url http://link.springer.com/article/10.1186/s12885-019-5363-4
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