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Bone Metastatic Breast Cancer: Advances in Cell Signaling and Autophagy Related Mechanisms

SIMPLE SUMMARY: Bone metastasis is a leading cause of breast cancer-related deaths. The interaction between metastatic cancer cells and bone-resident cells promotes tumor growth and bone loss. Metastatic tumors within the bone can contribute to complications including pathological fracture, hypercal...

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Autores principales: Othman, Ahmad, Winogradzki, Marcus, Lee, Linus, Tandon, Manish, Blank, Alan, Pratap, Jitesh
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8431094/
https://www.ncbi.nlm.nih.gov/pubmed/34503118
http://dx.doi.org/10.3390/cancers13174310
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author Othman, Ahmad
Winogradzki, Marcus
Lee, Linus
Tandon, Manish
Blank, Alan
Pratap, Jitesh
author_facet Othman, Ahmad
Winogradzki, Marcus
Lee, Linus
Tandon, Manish
Blank, Alan
Pratap, Jitesh
author_sort Othman, Ahmad
collection PubMed
description SIMPLE SUMMARY: Bone metastasis is a leading cause of breast cancer-related deaths. The interaction between metastatic cancer cells and bone-resident cells promotes tumor growth and bone loss. Metastatic tumors within the bone can contribute to complications including pathological fracture, hypercalcemia, spinal cord compression, and pain. The underlying molecular mechanisms that regulate these interactions in the bone microenvironment are not completely understood. Multiple cell signaling pathways, transcription factors, miRNAs, and secretory factors have been shown to promote bone metastasis. Here, we review the mechanisms by which tumor-derived and tumor-microenvironment-derived factors contribute to bone metastasis. We discuss recent findings highlighting the role of cell signaling and the autophagy pathway in bone metastasis. Furthermore, we discuss the clinical management, treatment options, current challenges, and potential novel targeting strategies of metastatic bone disease. ABSTRACT: Bone metastasis is a frequent complication of breast cancer with nearly 70% of metastatic breast cancer patients developing bone metastasis during the course of their disease. The bone represents a dynamic microenvironment which provides a fertile soil for disseminated tumor cells, however, the mechanisms which regulate the interactions between a metastatic tumor and the bone microenvironment remain poorly understood. Recent studies indicate that during the metastatic process a bidirectional relationship between metastatic tumor cells and the bone microenvironment begins to develop. Metastatic cells display aberrant expression of genes typically reserved for skeletal development and alter the activity of resident cells within the bone microenvironment to promote tumor development, resulting in the severe bone loss. While transcriptional regulation of the metastatic process has been well established, recent findings from our and other research groups highlight the role of the autophagy and secretory pathways in interactions between resident and tumor cells during bone metastatic tumor growth. These reports show high levels of autophagy-related markers, regulatory factors of the autophagy pathway, and autophagy-mediated secretion of matrix metalloproteinases (MMP’s), receptor activator of nuclear factor kappa B ligand (RANKL), parathyroid hormone related protein (PTHrP), as well as WNT5A in bone metastatic breast cancer cells. In this review, we discuss the recently elucidated mechanisms and their crosstalk with signaling pathways, and potential therapeutic targets for bone metastatic disease.
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spelling pubmed-84310942021-09-11 Bone Metastatic Breast Cancer: Advances in Cell Signaling and Autophagy Related Mechanisms Othman, Ahmad Winogradzki, Marcus Lee, Linus Tandon, Manish Blank, Alan Pratap, Jitesh Cancers (Basel) Review SIMPLE SUMMARY: Bone metastasis is a leading cause of breast cancer-related deaths. The interaction between metastatic cancer cells and bone-resident cells promotes tumor growth and bone loss. Metastatic tumors within the bone can contribute to complications including pathological fracture, hypercalcemia, spinal cord compression, and pain. The underlying molecular mechanisms that regulate these interactions in the bone microenvironment are not completely understood. Multiple cell signaling pathways, transcription factors, miRNAs, and secretory factors have been shown to promote bone metastasis. Here, we review the mechanisms by which tumor-derived and tumor-microenvironment-derived factors contribute to bone metastasis. We discuss recent findings highlighting the role of cell signaling and the autophagy pathway in bone metastasis. Furthermore, we discuss the clinical management, treatment options, current challenges, and potential novel targeting strategies of metastatic bone disease. ABSTRACT: Bone metastasis is a frequent complication of breast cancer with nearly 70% of metastatic breast cancer patients developing bone metastasis during the course of their disease. The bone represents a dynamic microenvironment which provides a fertile soil for disseminated tumor cells, however, the mechanisms which regulate the interactions between a metastatic tumor and the bone microenvironment remain poorly understood. Recent studies indicate that during the metastatic process a bidirectional relationship between metastatic tumor cells and the bone microenvironment begins to develop. Metastatic cells display aberrant expression of genes typically reserved for skeletal development and alter the activity of resident cells within the bone microenvironment to promote tumor development, resulting in the severe bone loss. While transcriptional regulation of the metastatic process has been well established, recent findings from our and other research groups highlight the role of the autophagy and secretory pathways in interactions between resident and tumor cells during bone metastatic tumor growth. These reports show high levels of autophagy-related markers, regulatory factors of the autophagy pathway, and autophagy-mediated secretion of matrix metalloproteinases (MMP’s), receptor activator of nuclear factor kappa B ligand (RANKL), parathyroid hormone related protein (PTHrP), as well as WNT5A in bone metastatic breast cancer cells. In this review, we discuss the recently elucidated mechanisms and their crosstalk with signaling pathways, and potential therapeutic targets for bone metastatic disease. MDPI 2021-08-26 /pmc/articles/PMC8431094/ /pubmed/34503118 http://dx.doi.org/10.3390/cancers13174310 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Review
Othman, Ahmad
Winogradzki, Marcus
Lee, Linus
Tandon, Manish
Blank, Alan
Pratap, Jitesh
Bone Metastatic Breast Cancer: Advances in Cell Signaling and Autophagy Related Mechanisms
title Bone Metastatic Breast Cancer: Advances in Cell Signaling and Autophagy Related Mechanisms
title_full Bone Metastatic Breast Cancer: Advances in Cell Signaling and Autophagy Related Mechanisms
title_fullStr Bone Metastatic Breast Cancer: Advances in Cell Signaling and Autophagy Related Mechanisms
title_full_unstemmed Bone Metastatic Breast Cancer: Advances in Cell Signaling and Autophagy Related Mechanisms
title_short Bone Metastatic Breast Cancer: Advances in Cell Signaling and Autophagy Related Mechanisms
title_sort bone metastatic breast cancer: advances in cell signaling and autophagy related mechanisms
topic Review
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8431094/
https://www.ncbi.nlm.nih.gov/pubmed/34503118
http://dx.doi.org/10.3390/cancers13174310
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