Functions and Mechanisms of Tumor Necrosis Factor-{alpha} and Noncoding RNAs in Bone-Invasive Pituitary Adenomas

Zhu, H., Guo, J., Shen, Y., Dong, W., Gao, H., Miao, Y., Li, C., Zhang, Y.
The American Association for Cancer Research (AACR)
Published 2018
Publication Date:
2018-11-16
Publisher:
The American Association for Cancer Research (AACR)
Print ISSN:
1078-0432
Electronic ISSN:
1557-3265
Topics:
Medicine
Published by:
_version_ 1836399087503540224
autor Zhu, H., Guo, J., Shen, Y., Dong, W., Gao, H., Miao, Y., Li, C., Zhang, Y.
beschreibung Purpose: To explore the molecular mechanism and prognosis of bone-invasive pituitary adenomas (BIPA). Experimental design: A total of 274 patients with pituitary adenomas were followed up. Transcriptomic microarrays analysis was performed on 10 pituitary adenomas, including five BIPAs and five non-bone-invasive pituitary adenomas (NBIPA). The targeted molecular markers were validated by qRT-PCR, IHC, ELISA, and osteoclast differentiation. Results: Clinical variable analyses revealed a significant correlation between bone invasion and female sex, large tumor volume, non-gross total resection (NGTR), and tumor regrowth. BIPAs had worse progression-free survival (PFS) than did NBIPAs in the NGTR and nonfunctional pituitary adenoma (NFPA) groups. Gene ontology functional and KEGG pathway analyses showed that the biological processes and pathways were primarily immune and inflammatory pathways. Pathway act work showed that osteoclast differentiation pathway was significantly implicated in the pathway network. BIPAs had higher expression of TNFα than that of NBIPAs on IHC. In vitro , TNFα could induce RAW264.7 cells to differentiate into mature osteoclasts, leading to bone destruction. NR_033258, lncRNA SNHG24, miR-181c-5p, and miR-454-3p can regulate TNFα expression. Conclusions: BIPAs had worse PFS than did NBIPAs in the NGTR and NFPA groups. Inflammatory and immune factors play an important role in BIPAs. TNFα can directly induce osteoclast differentiation in BIPAs. NR_033258, lncRNA SNHG24, miR-181c-5p, and miR-454-3p can regulate TNFα expression. TNFα and its related lncRNAs and miRNAs represent potential therapeutic targets for bone-invasive pituitary adenomas in the future. Clin Cancer Res; 24(22); 5757–66. ©2018 AACR .
citation_standardnr 6357407
datenlieferant ipn_articles
feed_id 9363
feed_publisher The American Association for Cancer Research (AACR)
feed_publisher_url http://www.aacr.org/
insertion_date 2018-11-16
journaleissn 1557-3265
journalissn 1078-0432
publikationsjahr_anzeige 2018
publikationsjahr_facette 2018
publikationsjahr_intervall 7984:2015-2019
publikationsjahr_sort 2018
publisher The American Association for Cancer Research (AACR)
quelle Clinical Cancer Research
relation http://clincancerres.aacrjournals.org/cgi/content/short/24/22/5757?rss=1
search_space articles
shingle_author_1 Zhu, H., Guo, J., Shen, Y., Dong, W., Gao, H., Miao, Y., Li, C., Zhang, Y.
shingle_author_2 Zhu, H., Guo, J., Shen, Y., Dong, W., Gao, H., Miao, Y., Li, C., Zhang, Y.
shingle_author_3 Zhu, H., Guo, J., Shen, Y., Dong, W., Gao, H., Miao, Y., Li, C., Zhang, Y.
shingle_author_4 Zhu, H., Guo, J., Shen, Y., Dong, W., Gao, H., Miao, Y., Li, C., Zhang, Y.
shingle_catch_all_1 Functions and Mechanisms of Tumor Necrosis Factor-{alpha} and Noncoding RNAs in Bone-Invasive Pituitary Adenomas
Purpose: To explore the molecular mechanism and prognosis of bone-invasive pituitary adenomas (BIPA). Experimental design: A total of 274 patients with pituitary adenomas were followed up. Transcriptomic microarrays analysis was performed on 10 pituitary adenomas, including five BIPAs and five non-bone-invasive pituitary adenomas (NBIPA). The targeted molecular markers were validated by qRT-PCR, IHC, ELISA, and osteoclast differentiation. Results: Clinical variable analyses revealed a significant correlation between bone invasion and female sex, large tumor volume, non-gross total resection (NGTR), and tumor regrowth. BIPAs had worse progression-free survival (PFS) than did NBIPAs in the NGTR and nonfunctional pituitary adenoma (NFPA) groups. Gene ontology functional and KEGG pathway analyses showed that the biological processes and pathways were primarily immune and inflammatory pathways. Pathway act work showed that osteoclast differentiation pathway was significantly implicated in the pathway network. BIPAs had higher expression of TNFα than that of NBIPAs on IHC. In vitro , TNFα could induce RAW264.7 cells to differentiate into mature osteoclasts, leading to bone destruction. NR_033258, lncRNA SNHG24, miR-181c-5p, and miR-454-3p can regulate TNFα expression. Conclusions: BIPAs had worse PFS than did NBIPAs in the NGTR and NFPA groups. Inflammatory and immune factors play an important role in BIPAs. TNFα can directly induce osteoclast differentiation in BIPAs. NR_033258, lncRNA SNHG24, miR-181c-5p, and miR-454-3p can regulate TNFα expression. TNFα and its related lncRNAs and miRNAs represent potential therapeutic targets for bone-invasive pituitary adenomas in the future. Clin Cancer Res; 24(22); 5757–66. ©2018 AACR .
Zhu, H., Guo, J., Shen, Y., Dong, W., Gao, H., Miao, Y., Li, C., Zhang, Y.
The American Association for Cancer Research (AACR)
1078-0432
10780432
1557-3265
15573265
shingle_catch_all_2 Functions and Mechanisms of Tumor Necrosis Factor-{alpha} and Noncoding RNAs in Bone-Invasive Pituitary Adenomas
Purpose: To explore the molecular mechanism and prognosis of bone-invasive pituitary adenomas (BIPA). Experimental design: A total of 274 patients with pituitary adenomas were followed up. Transcriptomic microarrays analysis was performed on 10 pituitary adenomas, including five BIPAs and five non-bone-invasive pituitary adenomas (NBIPA). The targeted molecular markers were validated by qRT-PCR, IHC, ELISA, and osteoclast differentiation. Results: Clinical variable analyses revealed a significant correlation between bone invasion and female sex, large tumor volume, non-gross total resection (NGTR), and tumor regrowth. BIPAs had worse progression-free survival (PFS) than did NBIPAs in the NGTR and nonfunctional pituitary adenoma (NFPA) groups. Gene ontology functional and KEGG pathway analyses showed that the biological processes and pathways were primarily immune and inflammatory pathways. Pathway act work showed that osteoclast differentiation pathway was significantly implicated in the pathway network. BIPAs had higher expression of TNFα than that of NBIPAs on IHC. In vitro , TNFα could induce RAW264.7 cells to differentiate into mature osteoclasts, leading to bone destruction. NR_033258, lncRNA SNHG24, miR-181c-5p, and miR-454-3p can regulate TNFα expression. Conclusions: BIPAs had worse PFS than did NBIPAs in the NGTR and NFPA groups. Inflammatory and immune factors play an important role in BIPAs. TNFα can directly induce osteoclast differentiation in BIPAs. NR_033258, lncRNA SNHG24, miR-181c-5p, and miR-454-3p can regulate TNFα expression. TNFα and its related lncRNAs and miRNAs represent potential therapeutic targets for bone-invasive pituitary adenomas in the future. Clin Cancer Res; 24(22); 5757–66. ©2018 AACR .
Zhu, H., Guo, J., Shen, Y., Dong, W., Gao, H., Miao, Y., Li, C., Zhang, Y.
The American Association for Cancer Research (AACR)
1078-0432
10780432
1557-3265
15573265
shingle_catch_all_3 Functions and Mechanisms of Tumor Necrosis Factor-{alpha} and Noncoding RNAs in Bone-Invasive Pituitary Adenomas
Purpose: To explore the molecular mechanism and prognosis of bone-invasive pituitary adenomas (BIPA). Experimental design: A total of 274 patients with pituitary adenomas were followed up. Transcriptomic microarrays analysis was performed on 10 pituitary adenomas, including five BIPAs and five non-bone-invasive pituitary adenomas (NBIPA). The targeted molecular markers were validated by qRT-PCR, IHC, ELISA, and osteoclast differentiation. Results: Clinical variable analyses revealed a significant correlation between bone invasion and female sex, large tumor volume, non-gross total resection (NGTR), and tumor regrowth. BIPAs had worse progression-free survival (PFS) than did NBIPAs in the NGTR and nonfunctional pituitary adenoma (NFPA) groups. Gene ontology functional and KEGG pathway analyses showed that the biological processes and pathways were primarily immune and inflammatory pathways. Pathway act work showed that osteoclast differentiation pathway was significantly implicated in the pathway network. BIPAs had higher expression of TNFα than that of NBIPAs on IHC. In vitro , TNFα could induce RAW264.7 cells to differentiate into mature osteoclasts, leading to bone destruction. NR_033258, lncRNA SNHG24, miR-181c-5p, and miR-454-3p can regulate TNFα expression. Conclusions: BIPAs had worse PFS than did NBIPAs in the NGTR and NFPA groups. Inflammatory and immune factors play an important role in BIPAs. TNFα can directly induce osteoclast differentiation in BIPAs. NR_033258, lncRNA SNHG24, miR-181c-5p, and miR-454-3p can regulate TNFα expression. TNFα and its related lncRNAs and miRNAs represent potential therapeutic targets for bone-invasive pituitary adenomas in the future. Clin Cancer Res; 24(22); 5757–66. ©2018 AACR .
Zhu, H., Guo, J., Shen, Y., Dong, W., Gao, H., Miao, Y., Li, C., Zhang, Y.
The American Association for Cancer Research (AACR)
1078-0432
10780432
1557-3265
15573265
shingle_catch_all_4 Functions and Mechanisms of Tumor Necrosis Factor-{alpha} and Noncoding RNAs in Bone-Invasive Pituitary Adenomas
Purpose: To explore the molecular mechanism and prognosis of bone-invasive pituitary adenomas (BIPA). Experimental design: A total of 274 patients with pituitary adenomas were followed up. Transcriptomic microarrays analysis was performed on 10 pituitary adenomas, including five BIPAs and five non-bone-invasive pituitary adenomas (NBIPA). The targeted molecular markers were validated by qRT-PCR, IHC, ELISA, and osteoclast differentiation. Results: Clinical variable analyses revealed a significant correlation between bone invasion and female sex, large tumor volume, non-gross total resection (NGTR), and tumor regrowth. BIPAs had worse progression-free survival (PFS) than did NBIPAs in the NGTR and nonfunctional pituitary adenoma (NFPA) groups. Gene ontology functional and KEGG pathway analyses showed that the biological processes and pathways were primarily immune and inflammatory pathways. Pathway act work showed that osteoclast differentiation pathway was significantly implicated in the pathway network. BIPAs had higher expression of TNFα than that of NBIPAs on IHC. In vitro , TNFα could induce RAW264.7 cells to differentiate into mature osteoclasts, leading to bone destruction. NR_033258, lncRNA SNHG24, miR-181c-5p, and miR-454-3p can regulate TNFα expression. Conclusions: BIPAs had worse PFS than did NBIPAs in the NGTR and NFPA groups. Inflammatory and immune factors play an important role in BIPAs. TNFα can directly induce osteoclast differentiation in BIPAs. NR_033258, lncRNA SNHG24, miR-181c-5p, and miR-454-3p can regulate TNFα expression. TNFα and its related lncRNAs and miRNAs represent potential therapeutic targets for bone-invasive pituitary adenomas in the future. Clin Cancer Res; 24(22); 5757–66. ©2018 AACR .
Zhu, H., Guo, J., Shen, Y., Dong, W., Gao, H., Miao, Y., Li, C., Zhang, Y.
The American Association for Cancer Research (AACR)
1078-0432
10780432
1557-3265
15573265
shingle_title_1 Functions and Mechanisms of Tumor Necrosis Factor-{alpha} and Noncoding RNAs in Bone-Invasive Pituitary Adenomas
shingle_title_2 Functions and Mechanisms of Tumor Necrosis Factor-{alpha} and Noncoding RNAs in Bone-Invasive Pituitary Adenomas
shingle_title_3 Functions and Mechanisms of Tumor Necrosis Factor-{alpha} and Noncoding RNAs in Bone-Invasive Pituitary Adenomas
shingle_title_4 Functions and Mechanisms of Tumor Necrosis Factor-{alpha} and Noncoding RNAs in Bone-Invasive Pituitary Adenomas
timestamp 2025-06-30T23:37:23.576Z
titel Functions and Mechanisms of Tumor Necrosis Factor-{alpha} and Noncoding RNAs in Bone-Invasive Pituitary Adenomas
titel_suche Functions and Mechanisms of Tumor Necrosis Factor-{alpha} and Noncoding RNAs in Bone-Invasive Pituitary Adenomas
topic WW-YZ
uid ipn_articles_6357407