Cargando…

Humanization of the Prostate Microenvironment Reduces Homing of PC3 Prostate Cancer Cells to Human Tissue-Engineered Bone

The primary tumor microenvironment is inherently important in prostate cancer (PCa) initiation, growth and metastasis. However, most current PCa animal models are based on the injection of cancer cells into the blood circulation and bypass the first steps of the metastatic cascade, hence failing to...

Descripción completa

Detalles Bibliográficos
Autores principales: McGovern, Jacqui A., Shafiee, Abbas, Wagner, Ferdinand, Lahr, Christoph A., Landgraf, Marietta, Meinert, Christoph, Williams, Elizabeth D., Russell, Pamela J., Clements, Judith A., Loessner, Daniela, Holzapfel, Boris M., Risbridger, Gail P., Hutmacher, Dietmar W.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6265886/
https://www.ncbi.nlm.nih.gov/pubmed/30428629
http://dx.doi.org/10.3390/cancers10110438
_version_ 1783375716303241216
author McGovern, Jacqui A.
Shafiee, Abbas
Wagner, Ferdinand
Lahr, Christoph A.
Landgraf, Marietta
Meinert, Christoph
Williams, Elizabeth D.
Russell, Pamela J.
Clements, Judith A.
Loessner, Daniela
Holzapfel, Boris M.
Risbridger, Gail P.
Hutmacher, Dietmar W.
author_facet McGovern, Jacqui A.
Shafiee, Abbas
Wagner, Ferdinand
Lahr, Christoph A.
Landgraf, Marietta
Meinert, Christoph
Williams, Elizabeth D.
Russell, Pamela J.
Clements, Judith A.
Loessner, Daniela
Holzapfel, Boris M.
Risbridger, Gail P.
Hutmacher, Dietmar W.
author_sort McGovern, Jacqui A.
collection PubMed
description The primary tumor microenvironment is inherently important in prostate cancer (PCa) initiation, growth and metastasis. However, most current PCa animal models are based on the injection of cancer cells into the blood circulation and bypass the first steps of the metastatic cascade, hence failing to investigate the influence of the primary tumor microenvironment on PCa metastasis. Here, we investigated the spontaneous metastasis of PC3 human PCa cells from humanized prostate tissue, containing cancer-associated fibroblasts (CAFs) and prostate lymphatic and blood vessel endothelial cells (BVECs), to humanized tissue-engineered bone constructs (hTEBCs) in NOD-SCID IL2Rγ(null) (NSG) mice. The hTEBC formed a physiologically mature organ bone which allowed homing of metastatic PCa cells. Humanization of prostate tissue had no significant effect on the tumor burden at the primary site over the 4 weeks following intraprostatic injection, yet reduced the incidence and burden of metastases in the hTEBC. Spontaneous PCa metastases were detected in the lungs and spleen with no significant differences between the humanized and non-humanized prostate groups. A significantly greater metastatic tumor burden was observed in the liver when metastasis occurred from the humanized prostate. Together, our data suggests that the presence of human-derived CAFs and BVECs in the primary PCa microenvironment influences selectively the metastatic and homing behavior of PC3 cells in this model. Our orthotopic and humanized PCa model developed via convergence of cancer research and tissue engineering concepts provides a platform to dissect mechanisms of species-specific PCa bone metastasis and to develop precision medicine strategies.
format Online
Article
Text
id pubmed-6265886
institution National Center for Biotechnology Information
language English
publishDate 2018
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-62658862018-12-03 Humanization of the Prostate Microenvironment Reduces Homing of PC3 Prostate Cancer Cells to Human Tissue-Engineered Bone McGovern, Jacqui A. Shafiee, Abbas Wagner, Ferdinand Lahr, Christoph A. Landgraf, Marietta Meinert, Christoph Williams, Elizabeth D. Russell, Pamela J. Clements, Judith A. Loessner, Daniela Holzapfel, Boris M. Risbridger, Gail P. Hutmacher, Dietmar W. Cancers (Basel) Article The primary tumor microenvironment is inherently important in prostate cancer (PCa) initiation, growth and metastasis. However, most current PCa animal models are based on the injection of cancer cells into the blood circulation and bypass the first steps of the metastatic cascade, hence failing to investigate the influence of the primary tumor microenvironment on PCa metastasis. Here, we investigated the spontaneous metastasis of PC3 human PCa cells from humanized prostate tissue, containing cancer-associated fibroblasts (CAFs) and prostate lymphatic and blood vessel endothelial cells (BVECs), to humanized tissue-engineered bone constructs (hTEBCs) in NOD-SCID IL2Rγ(null) (NSG) mice. The hTEBC formed a physiologically mature organ bone which allowed homing of metastatic PCa cells. Humanization of prostate tissue had no significant effect on the tumor burden at the primary site over the 4 weeks following intraprostatic injection, yet reduced the incidence and burden of metastases in the hTEBC. Spontaneous PCa metastases were detected in the lungs and spleen with no significant differences between the humanized and non-humanized prostate groups. A significantly greater metastatic tumor burden was observed in the liver when metastasis occurred from the humanized prostate. Together, our data suggests that the presence of human-derived CAFs and BVECs in the primary PCa microenvironment influences selectively the metastatic and homing behavior of PC3 cells in this model. Our orthotopic and humanized PCa model developed via convergence of cancer research and tissue engineering concepts provides a platform to dissect mechanisms of species-specific PCa bone metastasis and to develop precision medicine strategies. MDPI 2018-11-13 /pmc/articles/PMC6265886/ /pubmed/30428629 http://dx.doi.org/10.3390/cancers10110438 Text en © 2018 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
McGovern, Jacqui A.
Shafiee, Abbas
Wagner, Ferdinand
Lahr, Christoph A.
Landgraf, Marietta
Meinert, Christoph
Williams, Elizabeth D.
Russell, Pamela J.
Clements, Judith A.
Loessner, Daniela
Holzapfel, Boris M.
Risbridger, Gail P.
Hutmacher, Dietmar W.
Humanization of the Prostate Microenvironment Reduces Homing of PC3 Prostate Cancer Cells to Human Tissue-Engineered Bone
title Humanization of the Prostate Microenvironment Reduces Homing of PC3 Prostate Cancer Cells to Human Tissue-Engineered Bone
title_full Humanization of the Prostate Microenvironment Reduces Homing of PC3 Prostate Cancer Cells to Human Tissue-Engineered Bone
title_fullStr Humanization of the Prostate Microenvironment Reduces Homing of PC3 Prostate Cancer Cells to Human Tissue-Engineered Bone
title_full_unstemmed Humanization of the Prostate Microenvironment Reduces Homing of PC3 Prostate Cancer Cells to Human Tissue-Engineered Bone
title_short Humanization of the Prostate Microenvironment Reduces Homing of PC3 Prostate Cancer Cells to Human Tissue-Engineered Bone
title_sort humanization of the prostate microenvironment reduces homing of pc3 prostate cancer cells to human tissue-engineered bone
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6265886/
https://www.ncbi.nlm.nih.gov/pubmed/30428629
http://dx.doi.org/10.3390/cancers10110438
work_keys_str_mv AT mcgovernjacquia humanizationoftheprostatemicroenvironmentreduceshomingofpc3prostatecancercellstohumantissueengineeredbone
AT shafieeabbas humanizationoftheprostatemicroenvironmentreduceshomingofpc3prostatecancercellstohumantissueengineeredbone
AT wagnerferdinand humanizationoftheprostatemicroenvironmentreduceshomingofpc3prostatecancercellstohumantissueengineeredbone
AT lahrchristopha humanizationoftheprostatemicroenvironmentreduceshomingofpc3prostatecancercellstohumantissueengineeredbone
AT landgrafmarietta humanizationoftheprostatemicroenvironmentreduceshomingofpc3prostatecancercellstohumantissueengineeredbone
AT meinertchristoph humanizationoftheprostatemicroenvironmentreduceshomingofpc3prostatecancercellstohumantissueengineeredbone
AT williamselizabethd humanizationoftheprostatemicroenvironmentreduceshomingofpc3prostatecancercellstohumantissueengineeredbone
AT russellpamelaj humanizationoftheprostatemicroenvironmentreduceshomingofpc3prostatecancercellstohumantissueengineeredbone
AT clementsjuditha humanizationoftheprostatemicroenvironmentreduceshomingofpc3prostatecancercellstohumantissueengineeredbone
AT loessnerdaniela humanizationoftheprostatemicroenvironmentreduceshomingofpc3prostatecancercellstohumantissueengineeredbone
AT holzapfelborism humanizationoftheprostatemicroenvironmentreduceshomingofpc3prostatecancercellstohumantissueengineeredbone
AT risbridgergailp humanizationoftheprostatemicroenvironmentreduceshomingofpc3prostatecancercellstohumantissueengineeredbone
AT hutmacherdietmarw humanizationoftheprostatemicroenvironmentreduceshomingofpc3prostatecancercellstohumantissueengineeredbone