Nerve-tumor crosstalk in tumor microenvironment: From tumor initiation and progression to clinical implications

The autonomic nerve system (ANS) innervates organs and tissues throughout the body and maintains functional balance among various systems. Further investigations have shown that excessive activation of ANS not only causes disruption of homeostasis, but also may promote tumor formation. In addition,...

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Published inBiochimica et biophysica acta. Reviews on cancer Vol. 1879; no. 4; p. 189121
Main Authors Zhang, Zheng, Lv, Zhen Gang, Lu, Miao, Li, Haifeng, Zhou, Jiahua
Format Journal Article
LanguageEnglish
Published Netherlands Elsevier B.V 01.07.2024
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Abstract The autonomic nerve system (ANS) innervates organs and tissues throughout the body and maintains functional balance among various systems. Further investigations have shown that excessive activation of ANS not only causes disruption of homeostasis, but also may promote tumor formation. In addition, the dynamic interaction between nerve and tumor cells in the tumor microenvironment also regulate tumor progression. On the one hand, nerves are passively invaded by tumor cells, that is, perineural invasion (PNI). On the other hand, compared with normal tissues, tumor tissues are subject to more abundant innervation, and nerves can influence tumor progression through regulating tumor proliferation, metastasis and drug resistance. A large number of studies have shown that nerve-tumor crosstalk, including PNI and innervation, is closely related to the prognosis of patients, and contributes to the formation of cancer pain, which significantly deteriorates the quality of life for patients. These findings suggest that nerve-tumor crosstalk represents a potential target for anti-tumor therapies and the management of cancer pain in the future. In this review, we systematically describe the mechanism by which nerve-tumor crosstalk regulates tumorigenesis and progression.
AbstractList The autonomic nerve system (ANS) innervates organs and tissues throughout the body and maintains functional balance among various systems. Further investigations have shown that excessive activation of ANS not only causes disruption of homeostasis, but also may promote tumor formation. In addition, the dynamic interaction between nerve and tumor cells in the tumor microenvironment also regulate tumor progression. On the one hand, nerves are passively invaded by tumor cells, that is, perineural invasion (PNI). On the other hand, compared with normal tissues, tumor tissues are subject to more abundant innervation, and nerves can influence tumor progression through regulating tumor proliferation, metastasis and drug resistance. A large number of studies have shown that nerve-tumor crosstalk, including PNI and innervation, is closely related to the prognosis of patients, and contributes to the formation of cancer pain, which significantly deteriorates the quality of life for patients. These findings suggest that nerve-tumor crosstalk represents a potential target for anti-tumor therapies and the management of cancer pain in the future. In this review, we systematically describe the mechanism by which nerve-tumor crosstalk regulates tumorigenesis and progression.
The autonomic nerve system (ANS) innervates organs and tissues throughout the body and maintains functional balance among various systems. Further investigations have shown that excessive activation of ANS not only causes disruption of homeostasis, but also may promote tumor formation. In addition, the dynamic interaction between nerve and tumor cells in the tumor microenvironment also regulate tumor progression. On the one hand, nerves are passively invaded by tumor cells, that is, perineural invasion (PNI). On the other hand, compared with normal tissues, tumor tissues are subject to more abundant innervation, and nerves can influence tumor progression through regulating tumor proliferation, metastasis and drug resistance. A large number of studies have shown that nerve-tumor crosstalk, including PNI and innervation, is closely related to the prognosis of patients, and contributes to the formation of cancer pain, which significantly deteriorates the quality of life for patients. These findings suggest that nerve-tumor crosstalk represents a potential target for anti-tumor therapies and the management of cancer pain in the future. In this review, we systematically describe the mechanism by which nerve-tumor crosstalk regulates tumorigenesis and progression.The autonomic nerve system (ANS) innervates organs and tissues throughout the body and maintains functional balance among various systems. Further investigations have shown that excessive activation of ANS not only causes disruption of homeostasis, but also may promote tumor formation. In addition, the dynamic interaction between nerve and tumor cells in the tumor microenvironment also regulate tumor progression. On the one hand, nerves are passively invaded by tumor cells, that is, perineural invasion (PNI). On the other hand, compared with normal tissues, tumor tissues are subject to more abundant innervation, and nerves can influence tumor progression through regulating tumor proliferation, metastasis and drug resistance. A large number of studies have shown that nerve-tumor crosstalk, including PNI and innervation, is closely related to the prognosis of patients, and contributes to the formation of cancer pain, which significantly deteriorates the quality of life for patients. These findings suggest that nerve-tumor crosstalk represents a potential target for anti-tumor therapies and the management of cancer pain in the future. In this review, we systematically describe the mechanism by which nerve-tumor crosstalk regulates tumorigenesis and progression.
ArticleNumber 189121
Author Lu, Miao
Zhou, Jiahua
Zhang, Zheng
Lv, Zhen Gang
Li, Haifeng
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  surname: Zhang
  fullname: Zhang, Zheng
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  organization: Department of Hepato-Pancreatico-Biliary Surgery, Zhongda Hospital Southeast University, Nanjing 210009, Jiangsu Province, China
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Issue 4
Keywords Crosstalk
SACC
6-OHDA
PNI
ADM
Nerve
TDO2
Tumor
NK1R
SCs
HCC
IPMN
Ems
NGF
CSF-1
EMT
MMP
MAG
PDAC
CAP
AAV
CGRP
COX-2
ANS
ADRB2
12/15-LOX
IMs
CSC
iCAFs
DCs
NCAM1
GC
PGE2
Tumor microenvironment
NSCLC
BDNF
Tregs
VEGF
Ach
TRPV1
TME
OTSCC
MDSCs
PIN
PSCs
PanIN
NMU
DRG
ZFP277
CHRM
Language English
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Snippet The autonomic nerve system (ANS) innervates organs and tissues throughout the body and maintains functional balance among various systems. Further...
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StartPage 189121
SubjectTerms Animals
Cancer Pain - metabolism
Cancer Pain - pathology
Carcinogenesis - pathology
Crosstalk
Disease Progression
Humans
Neoplasm Invasiveness
Neoplasms - pathology
Nerve
Tumor
Tumor Microenvironment
Title Nerve-tumor crosstalk in tumor microenvironment: From tumor initiation and progression to clinical implications
URI https://dx.doi.org/10.1016/j.bbcan.2024.189121
https://www.ncbi.nlm.nih.gov/pubmed/38796026
https://www.proquest.com/docview/3060747911
Volume 1879
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