Skip to main content
Erschienen in: Cellular Oncology 4/2020

24.05.2020 | Original paper

LINC00858 knockdown inhibits gastric cancer cell growth and induces apoptosis through reducing WNK2 promoter methylation

verfasst von: Jiang Du, Yuan Liang, Ji Li, Jin-Ming Zhao, Xu-Yong Lin

Erschienen in: Cellular Oncology | Ausgabe 4/2020

Einloggen, um Zugang zu erhalten

Abstract

Background

Emerging evidence indicates a regulatory role of long non-coding RNAs (lncRNAs) in the development of gastric cancer (GC), but the mechanisms underlying their function have remained largely unknown. Recent microarray-based expression profiling has led to the identification of a novel differentially expressed lncRNA, LINC00858, in GC. Subsequently, LINC00858 was found to be highly expressed in GC tissues and cells. This study was designed to clarify the functional role of LINC00858 in GC, including its effect on methylation of the WNK2 gene promoter and its downstream MAPK signaling pathway.

Methods

After exogenous over-expression and knockdown of LINC00858 and the addition of a MAPK pathway inhibitor in GC cells, we explored the effects of LINC00858 and the MAPK signaling pathway on GC cell behavior using various in vitro and in vivo assays.

Results

LINC00858 was found to negatively regulate WNK2 expression by enhancing its promoter methylation and to activate the MAPK signaling pathway. Moreover, we found that knockdown of LINC00858 or inhibition of the MAPK signaling pathway resulted in decreased GC cell growth, migration and invasion, as well as decreased cell cycle progression, along with increased apoptosis and decreased tumorigenicity.

Conclusions

Together, these findings indicate that silencing of LINC00858 increases WNK2 expression and inhibits the MAPK signaling pathway, thereby inhibiting GC growth and development. Our data highlight LINC00858 as a potential target in GC therapy.
Anhänge
Nur mit Berechtigung zugänglich
Literatur
1.
Zurück zum Zitat J. Caldeira, J. Simoes-Correia, J. Paredes, M.T. Pinto, S. Sousa, G. Corso, D. Marrelli, F. Roviello, P.S. Pereira, D. Weil, C. Oliveira, F. Casares, R. Seruca, CPEB1, a novel gene silenced in gastric cancer: A Drosophila approach. Gut 61, 1115–1123 (2012)CrossRefPubMed J. Caldeira, J. Simoes-Correia, J. Paredes, M.T. Pinto, S. Sousa, G. Corso, D. Marrelli, F. Roviello, P.S. Pereira, D. Weil, C. Oliveira, F. Casares, R. Seruca, CPEB1, a novel gene silenced in gastric cancer: A Drosophila approach. Gut 61, 1115–1123 (2012)CrossRefPubMed
2.
Zurück zum Zitat W. Chen, R. Zheng, P.D. Baade, S. Zhang, H. Zeng, F. Bray, A. Jemal, X.Q. Yu, J. He, Cancer statistics in China, 2015. CA Cancer J Clin 66, 115–132 (2016)CrossRefPubMed W. Chen, R. Zheng, P.D. Baade, S. Zhang, H. Zeng, F. Bray, A. Jemal, X.Q. Yu, J. He, Cancer statistics in China, 2015. CA Cancer J Clin 66, 115–132 (2016)CrossRefPubMed
3.
Zurück zum Zitat L. Zong, M. Abe, Y. Seto, J. Ji, The challenge of screening for early gastric cancer in China. Lancet 388, 2606 (2016)CrossRefPubMed L. Zong, M. Abe, Y. Seto, J. Ji, The challenge of screening for early gastric cancer in China. Lancet 388, 2606 (2016)CrossRefPubMed
4.
Zurück zum Zitat R. Herrero, J. Parsonnet, E.R. Greenberg, Prevention of gastric cancer. JAMA 312, 1197–1198 (2014)CrossRefPubMed R. Herrero, J. Parsonnet, E.R. Greenberg, Prevention of gastric cancer. JAMA 312, 1197–1198 (2014)CrossRefPubMed
5.
Zurück zum Zitat P. Zhang, L. Shi, T. Zhang, L. Hong, W. He, P. Cao, X. Shen, P. Zheng, Y. Xia, P. Zou, Piperlongumine potentiates the antitumor efficacy of oxaliplatin through ROS induction in gastric cancer cells. Cell Oncol 42, 847–860 (2019) P. Zhang, L. Shi, T. Zhang, L. Hong, W. He, P. Cao, X. Shen, P. Zheng, Y. Xia, P. Zou, Piperlongumine potentiates the antitumor efficacy of oxaliplatin through ROS induction in gastric cancer cells. Cell Oncol 42, 847–860 (2019)
6.
Zurück zum Zitat A. Amedei, M. Benagiano, C. della Bella, E. Niccolai and M.M. D'Elios, Novel immunotherapeutic strategies of gastric cancer treatment, J Biomed Biotechnol 2011, 437348 (2011) A. Amedei, M. Benagiano, C. della Bella, E. Niccolai and M.M. D'Elios, Novel immunotherapeutic strategies of gastric cancer treatment, J Biomed Biotechnol 2011, 437348 (2011)
7.
Zurück zum Zitat S. Wang, M. Zhou, A. Ji, D. Zhang, J. He, Milk/dairy products consumption and gastric cancer: An update meta-analysis of epidemiological studies. Oncotarget 9, 7126–7135 (2018)CrossRefPubMed S. Wang, M. Zhou, A. Ji, D. Zhang, J. He, Milk/dairy products consumption and gastric cancer: An update meta-analysis of epidemiological studies. Oncotarget 9, 7126–7135 (2018)CrossRefPubMed
8.
Zurück zum Zitat Y. Yoda, H. Takeshima, T. Niwa, J.G. Kim, T. Ando, R. Kushima, T. Sugiyama, H. Katai, H. Noshiro, T. Ushijima, Integrated analysis of cancer-related pathways affected by genetic and epigenetic alterations in gastric cancer. Gastric Cancer 18, 65–76 (2015)CrossRefPubMed Y. Yoda, H. Takeshima, T. Niwa, J.G. Kim, T. Ando, R. Kushima, T. Sugiyama, H. Katai, H. Noshiro, T. Ushijima, Integrated analysis of cancer-related pathways affected by genetic and epigenetic alterations in gastric cancer. Gastric Cancer 18, 65–76 (2015)CrossRefPubMed
9.
Zurück zum Zitat J.H. Yuan, F. Yang, F. Wang, J.Z. Ma, Y.J. Guo, Q.F. Tao, F. Liu, W. Pan, T.T. Wang, C.C. Zhou, S.B. Wang, Y.Z. Wang, Y. Yang, N. Yang, W.P. Zhou, G.S. Yang, S.H. Sun, A long noncoding RNA activated by TGF-beta promotes the invasion-metastasis cascade in hepatocellular carcinoma. Cancer Cell 25, 666–681 (2014)CrossRefPubMed J.H. Yuan, F. Yang, F. Wang, J.Z. Ma, Y.J. Guo, Q.F. Tao, F. Liu, W. Pan, T.T. Wang, C.C. Zhou, S.B. Wang, Y.Z. Wang, Y. Yang, N. Yang, W.P. Zhou, G.S. Yang, S.H. Sun, A long noncoding RNA activated by TGF-beta promotes the invasion-metastasis cascade in hepatocellular carcinoma. Cancer Cell 25, 666–681 (2014)CrossRefPubMed
10.
Zurück zum Zitat X. Li, Z. Wu, X. Fu, W. Han, Long noncoding RNAs: Insights from biological features and functions to diseases. Med Res Rev 33, 517–553 (2013)CrossRefPubMed X. Li, Z. Wu, X. Fu, W. Han, Long noncoding RNAs: Insights from biological features and functions to diseases. Med Res Rev 33, 517–553 (2013)CrossRefPubMed
11.
Zurück zum Zitat M.L. Pecero, J. Salvador-Bofill, S. Molina-Pinelo, Long non-coding RNAs as monitoring tools and therapeutic targets in breast cancer. Cell Oncol 42, 1–12 (2019) M.L. Pecero, J. Salvador-Bofill, S. Molina-Pinelo, Long non-coding RNAs as monitoring tools and therapeutic targets in breast cancer. Cell Oncol 42, 1–12 (2019)
12.
Zurück zum Zitat R. Castro-Oropeza, J. Melendez-Zajgla, V. Maldonado, K. Vazquez-Santillan, The emerging role of lncRNAs in the regulation of cancer stem cells. Cell Oncol 41, 585–603 (2018) R. Castro-Oropeza, J. Melendez-Zajgla, V. Maldonado, K. Vazquez-Santillan, The emerging role of lncRNAs in the regulation of cancer stem cells. Cell Oncol 41, 585–603 (2018)
13.
Zurück zum Zitat Q.K. Sha, L. Chen, J.Z. Xi, H. Song, Long non-coding RNA LINC00858 promotes cells proliferation, migration and invasion by acting as a ceRNA of miR-22-3p in colorectal cancer. Artif Cells Nanomed Biotechnol 47, 1057–1066 (2019)CrossRefPubMed Q.K. Sha, L. Chen, J.Z. Xi, H. Song, Long non-coding RNA LINC00858 promotes cells proliferation, migration and invasion by acting as a ceRNA of miR-22-3p in colorectal cancer. Artif Cells Nanomed Biotechnol 47, 1057–1066 (2019)CrossRefPubMed
14.
Zurück zum Zitat Z. Gu, Z. Hou, L. Zheng, X. Wang, L. Wu, C. Zhang, Long noncoding RNA LINC00858 promotes osteosarcoma through regulating miR-139-CDK14 axis. Biochem Biophys Res Commun 503, 1134–1140 (2018)CrossRefPubMed Z. Gu, Z. Hou, L. Zheng, X. Wang, L. Wu, C. Zhang, Long noncoding RNA LINC00858 promotes osteosarcoma through regulating miR-139-CDK14 axis. Biochem Biophys Res Commun 503, 1134–1140 (2018)CrossRefPubMed
15.
Zurück zum Zitat B. Tasharrofi, S. Ghafouri-Fard, Long non-coding RNAs as regulators of the mitogen-activated protein kinase (MAPK) pathway in cancer. Klin Onkol 31, 95–102 (2018)CrossRefPubMed B. Tasharrofi, S. Ghafouri-Fard, Long non-coding RNAs as regulators of the mitogen-activated protein kinase (MAPK) pathway in cancer. Klin Onkol 31, 95–102 (2018)CrossRefPubMed
16.
Zurück zum Zitat D.D. Wu, Y.R. Gao, T. Li, D.Y. Wang, D. Lu, S.Y. Liu, Y. Hong, H.B. Ning, J.P. Liu, J. Shang, J.F. Shi, J.S. Wei, X.Y. Ji, PEST-containing nuclear protein mediates the proliferation, migration, and invasion of human neuroblastoma cells through MAPK and PI3K/AKT/mTOR signaling pathways. BMC Cancer 18, 499 (2018)CrossRefPubMedPubMedCentral D.D. Wu, Y.R. Gao, T. Li, D.Y. Wang, D. Lu, S.Y. Liu, Y. Hong, H.B. Ning, J.P. Liu, J. Shang, J.F. Shi, J.S. Wei, X.Y. Ji, PEST-containing nuclear protein mediates the proliferation, migration, and invasion of human neuroblastoma cells through MAPK and PI3K/AKT/mTOR signaling pathways. BMC Cancer 18, 499 (2018)CrossRefPubMedPubMedCentral
17.
Zurück zum Zitat P. Li, W.J. Xue, Y. Feng, Q.S. Mao, Long non-coding RNA CASC2 suppresses the proliferation of gastric cancer cells by regulating the MAPK signaling pathway. Am J Transl Res 8, 3522–3529 (2016)PubMedPubMedCentral P. Li, W.J. Xue, Y. Feng, Q.S. Mao, Long non-coding RNA CASC2 suppresses the proliferation of gastric cancer cells by regulating the MAPK signaling pathway. Am J Transl Res 8, 3522–3529 (2016)PubMedPubMedCentral
18.
Zurück zum Zitat D.M. Wu, Y.J. Wang, X.R. Han, X. Wen, S. Wang, M. Shen, S.H. Fan, J. Zhuang, Z.F. Zhang, Q. Shan, M.Q. Li, B. Hu, C.H. Sun, J. Lu, Y.L. Zheng, LncRNA LINC00880 promotes cell proliferation, migration, and invasion while inhibiting apoptosis by targeting CACNG5 through the MAPK signaling pathway in spinal cord ependymoma. J Cell Physiol 233, 6689–6704 (2018)CrossRefPubMed D.M. Wu, Y.J. Wang, X.R. Han, X. Wen, S. Wang, M. Shen, S.H. Fan, J. Zhuang, Z.F. Zhang, Q. Shan, M.Q. Li, B. Hu, C.H. Sun, J. Lu, Y.L. Zheng, LncRNA LINC00880 promotes cell proliferation, migration, and invasion while inhibiting apoptosis by targeting CACNG5 through the MAPK signaling pathway in spinal cord ependymoma. J Cell Physiol 233, 6689–6704 (2018)CrossRefPubMed
19.
Zurück zum Zitat A.M. Costa, F. Pinto, O. Martinho, M.J. Oliveira, P. Jordan, R.M. Reis, Silencing of the tumor suppressor gene WNK2 is associated with upregulation of MMP2 and JNK in gliomas. Oncotarget 6, 1422–1434 (2015)CrossRefPubMed A.M. Costa, F. Pinto, O. Martinho, M.J. Oliveira, P. Jordan, R.M. Reis, Silencing of the tumor suppressor gene WNK2 is associated with upregulation of MMP2 and JNK in gliomas. Oncotarget 6, 1422–1434 (2015)CrossRefPubMed
20.
Zurück zum Zitat C. Dutruel, F. Bergmann, I. Rooman, M. Zucknick, D. Weichenhan, L. Geiselhart, T. Kaffenberger, P.S. Rachakonda, A. Bauer, N. Giese, C. Hong, H. Xie, J.F. Costello, J. Hoheisel, R. Kumar, M. Rehli, P. Schirmacher, J. Werner, C. Plass, O. Popanda, P. Schmezer, Early epigenetic downregulation of WNK2 kinase during pancreatic ductal adenocarcinoma development. Oncogene 33, 3401–3410 (2014)CrossRefPubMed C. Dutruel, F. Bergmann, I. Rooman, M. Zucknick, D. Weichenhan, L. Geiselhart, T. Kaffenberger, P.S. Rachakonda, A. Bauer, N. Giese, C. Hong, H. Xie, J.F. Costello, J. Hoheisel, R. Kumar, M. Rehli, P. Schirmacher, J. Werner, C. Plass, O. Popanda, P. Schmezer, Early epigenetic downregulation of WNK2 kinase during pancreatic ductal adenocarcinoma development. Oncogene 33, 3401–3410 (2014)CrossRefPubMed
21.
Zurück zum Zitat P. Jun, C. Hong, A. Lal, J.M. Wong, M.W. McDermott, A.W. Bollen, C. Plass, W.A. Held, D.J. Smiraglia, J.F. Costello, Epigenetic silencing of the kinase tumor suppressor WNK2 is tumor-type and tumor-grade specific. Neuro-Oncology 11, 414–422 (2009)CrossRefPubMedPubMedCentral P. Jun, C. Hong, A. Lal, J.M. Wong, M.W. McDermott, A.W. Bollen, C. Plass, W.A. Held, D.J. Smiraglia, J.F. Costello, Epigenetic silencing of the kinase tumor suppressor WNK2 is tumor-type and tumor-grade specific. Neuro-Oncology 11, 414–422 (2009)CrossRefPubMedPubMedCentral
22.
Zurück zum Zitat A. Fujita, J.R. Sato, O. Rodrigues Lde, C.E. Ferreira, M.C. Sogayar, Evaluating different methods of microarray data normalization. BMC Bioinformatics 7, 469 (2006)CrossRefPubMedPubMedCentral A. Fujita, J.R. Sato, O. Rodrigues Lde, C.E. Ferreira, M.C. Sogayar, Evaluating different methods of microarray data normalization. BMC Bioinformatics 7, 469 (2006)CrossRefPubMedPubMedCentral
23.
Zurück zum Zitat G.K. Smyth, Linear Models and Empirical Bayes Methods for Assessing Differential Expression in Microarray Experiments, Stat Appl Genet Mol Biol 3, Article3 (2004) G.K. Smyth, Linear Models and Empirical Bayes Methods for Assessing Differential Expression in Microarray Experiments, Stat Appl Genet Mol Biol 3, Article3 (2004)
24.
Zurück zum Zitat J. Yao, C.J. Qian, B. Ye, X. Zhang, Y. Liang, ERK inhibition enhances TSA-induced gastric cancer cell apoptosis via NF-kappaB-dependent and notch-independent mechanism. Life Sci 91, 186–193 (2012)CrossRefPubMed J. Yao, C.J. Qian, B. Ye, X. Zhang, Y. Liang, ERK inhibition enhances TSA-induced gastric cancer cell apoptosis via NF-kappaB-dependent and notch-independent mechanism. Life Sci 91, 186–193 (2012)CrossRefPubMed
25.
Zurück zum Zitat K.J. Livak, T.D. Schmittgen, Analysis of relative gene expression data using real-time quantitative PCR and the 2(−Delta Delta C(T)) method. Methods 25, 402–408 (2001)CrossRefPubMed K.J. Livak, T.D. Schmittgen, Analysis of relative gene expression data using real-time quantitative PCR and the 2(−Delta Delta C(T)) method. Methods 25, 402–408 (2001)CrossRefPubMed
26.
Zurück zum Zitat S. Moniz, F. Verissimo, P. Matos, R. Brazao, E. Silva, L. Kotelevets, E. Chastre, C. Gespach, P. Jordan, Protein kinase WNK2 inhibits cell proliferation by negatively modulating the activation of MEK1/ERK1/2. Oncogene 26, 6071–6081 (2007)CrossRefPubMed S. Moniz, F. Verissimo, P. Matos, R. Brazao, E. Silva, L. Kotelevets, E. Chastre, C. Gespach, P. Jordan, Protein kinase WNK2 inhibits cell proliferation by negatively modulating the activation of MEK1/ERK1/2. Oncogene 26, 6071–6081 (2007)CrossRefPubMed
27.
Zurück zum Zitat S. Moniz, P. Matos, P. Jordan, WNK2 modulates MEK1 activity through the rho GTPase pathway. Cell Signal 20, 1762–1768 (2008)CrossRefPubMed S. Moniz, P. Matos, P. Jordan, WNK2 modulates MEK1 activity through the rho GTPase pathway. Cell Signal 20, 1762–1768 (2008)CrossRefPubMed
28.
Zurück zum Zitat Z. Zhou, Z. Lin, X. Pang, M.A. Tariq, X. Ao, P. Li, J. Wang, Epigenetic regulation of long non-coding RNAs in gastric cancer. Oncotarget 9, 19443–19458 (2018)CrossRefPubMed Z. Zhou, Z. Lin, X. Pang, M.A. Tariq, X. Ao, P. Li, J. Wang, Epigenetic regulation of long non-coding RNAs in gastric cancer. Oncotarget 9, 19443–19458 (2018)CrossRefPubMed
29.
Zurück zum Zitat S.P. Zhu, J.Y. Wang, X.G. Wang, J.P. Zhao, Long intergenic non-protein coding RNA 00858 functions as a competing endogenous RNA for miR-422a to facilitate the cell growth in non-small cell lung cancer. Aging (Albany NY) 9, 475–486 (2017)CrossRef S.P. Zhu, J.Y. Wang, X.G. Wang, J.P. Zhao, Long intergenic non-protein coding RNA 00858 functions as a competing endogenous RNA for miR-422a to facilitate the cell growth in non-small cell lung cancer. Aging (Albany NY) 9, 475–486 (2017)CrossRef
30.
31.
Zurück zum Zitat N. Hu, M. Kadota, H. Liu, C.C. Abnet, H. Su, H. Wu, N.D. Freedman, H.H. Yang, C. Wang, C. Yan, L. Wang, S. Gere, A. Hutchinson, G. Song, Y. Wang, T. Ding, Y.L. Qiao, J. Koshiol, S.M. Dawsey, C. Giffen, A.M. Goldstein, P.R. Taylor, M.P. Lee, Genomic landscape of somatic alterations in esophageal squamous cell carcinoma and gastric cancer. Cancer Res 76, 1714–1723 (2016)CrossRefPubMedPubMedCentral N. Hu, M. Kadota, H. Liu, C.C. Abnet, H. Su, H. Wu, N.D. Freedman, H.H. Yang, C. Wang, C. Yan, L. Wang, S. Gere, A. Hutchinson, G. Song, Y. Wang, T. Ding, Y.L. Qiao, J. Koshiol, S.M. Dawsey, C. Giffen, A.M. Goldstein, P.R. Taylor, M.P. Lee, Genomic landscape of somatic alterations in esophageal squamous cell carcinoma and gastric cancer. Cancer Res 76, 1714–1723 (2016)CrossRefPubMedPubMedCentral
32.
Zurück zum Zitat S. Moniz, O. Martinho, F. Pinto, B. Sousa, C. Loureiro, M.J. Oliveira, L.F. Moita, M. Honavar, C. Pinheiro, M. Pires, J.M. Lopes, C. Jones, J.F. Costello, J. Paredes, R.M. Reis, P. Jordan, Loss of WNK2 expression by promoter gene methylation occurs in adult gliomas and triggers Rac1-mediated tumour cell invasiveness. Hum Mol Genet 22, 84–95 (2013)CrossRefPubMed S. Moniz, O. Martinho, F. Pinto, B. Sousa, C. Loureiro, M.J. Oliveira, L.F. Moita, M. Honavar, C. Pinheiro, M. Pires, J.M. Lopes, C. Jones, J.F. Costello, J. Paredes, R.M. Reis, P. Jordan, Loss of WNK2 expression by promoter gene methylation occurs in adult gliomas and triggers Rac1-mediated tumour cell invasiveness. Hum Mol Genet 22, 84–95 (2013)CrossRefPubMed
33.
Zurück zum Zitat H. Li, X. Liu, L. Zhang, X. Li, LncRNA BANCR facilitates vascular smooth muscle cell proliferation and migration through JNK pathway. Oncotarget 8, 114568–114575 (2017)CrossRefPubMedPubMedCentral H. Li, X. Liu, L. Zhang, X. Li, LncRNA BANCR facilitates vascular smooth muscle cell proliferation and migration through JNK pathway. Oncotarget 8, 114568–114575 (2017)CrossRefPubMedPubMedCentral
34.
Zurück zum Zitat L. Han, L. Xiong, C. Wang, Y. Shi, Q. Song, G. Sun, MicroRNA-128 contributes to the progression of gastric carcinoma through GAREM-mediated MAPK signaling activation. Biochem Biophys Res Commun 504, 295–301 (2018)CrossRefPubMed L. Han, L. Xiong, C. Wang, Y. Shi, Q. Song, G. Sun, MicroRNA-128 contributes to the progression of gastric carcinoma through GAREM-mediated MAPK signaling activation. Biochem Biophys Res Commun 504, 295–301 (2018)CrossRefPubMed
Metadaten
Titel
LINC00858 knockdown inhibits gastric cancer cell growth and induces apoptosis through reducing WNK2 promoter methylation
verfasst von
Jiang Du
Yuan Liang
Ji Li
Jin-Ming Zhao
Xu-Yong Lin
Publikationsdatum
24.05.2020
Verlag
Springer Netherlands
Erschienen in
Cellular Oncology / Ausgabe 4/2020
Print ISSN: 2211-3428
Elektronische ISSN: 2211-3436
DOI
https://doi.org/10.1007/s13402-020-00518-4

Weitere Artikel der Ausgabe 4/2020

Cellular Oncology 4/2020 Zur Ausgabe

Neu im Fachgebiet Pathologie

Molekularpathologische Untersuchungen im Wandel der Zeit

Open Access Biomarker Leitthema

Um auch an kleinen Gewebeproben zuverlässige und reproduzierbare Ergebnisse zu gewährleisten ist eine strenge Qualitätskontrolle in jedem Schritt des Arbeitsablaufs erforderlich. Eine nicht ordnungsgemäße Prüfung oder Behandlung des …

Vergleichende Pathologie in der onkologischen Forschung

Pathologie Leitthema

Die vergleichende experimentelle Pathologie („comparative experimental pathology“) ist ein Fachbereich an der Schnittstelle von Human- und Veterinärmedizin. Sie widmet sich der vergleichenden Erforschung von Gemeinsamkeiten und Unterschieden von …

Gastrointestinale Stromatumoren

Open Access GIST CME-Artikel

Gastrointestinale Stromatumoren (GIST) stellen seit über 20 Jahren ein Paradigma für die zielgerichtete Therapie mit Tyrosinkinaseinhibitoren dar. Eine elementare Voraussetzung für eine mögliche neoadjuvante oder adjuvante Behandlung bei …

Personalisierte Medizin in der Onkologie

Aufgrund des erheblichen technologischen Fortschritts in der molekularen und genetischen Diagnostik sowie zunehmender Erkenntnisse über die molekulare Pathogenese von Krankheiten hat in den letzten zwei Jahrzehnten ein grundlegender …