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2000
Volume 24, Issue 11
  • ISSN: 1568-0096
  • E-ISSN: 1873-5576

Abstract

Background and Objectives: Understanding the regulatory mechanisms involving neuronatin () in non-small cell lung cancer (NSCLC) is an ongoing challenge. This study aimed to elucidate the impact of knockdown on NSCLC by employing both in vitro and in vivo approaches. Methods: To investigate the role of , its expression was silenced in NSCLC cell lines A549 and H226. Subsequently, various parameters, including cell proliferation, invasion, migration, and apoptosis, were assessed. Additionally, cell-derived xenograft models were established to evaluate the effect of knockdown on tumor growth. The expression of key molecules, including cyclin D1, B-cell leukemia/lymphoma 2 (Bcl-2), p65, matrix metalloproteinase (MMP) 2, and nerve growth factor (NGF) were examined both and . Nerve fiber density within tumor tissues was analyzed using silver staining. Results: Upon knockdown, a remarkable reduction in NSCLC cell proliferation, invasion, and migration was observed, accompanied by elevated levels of apoptosis. Furthermore, the expression of cyclin D1, Bcl-2, MMP2, and phosphorylated p65 (p-p65) showed significant downregulation. , knockdown led to substantial inhibition of tumor growth and a concurrent decrease in cyclinD1, Bcl-2, MMP2, and p-p65 expression within tumor tissues. Importantly, knockdown also led to a decrease in nerve fiber density and downregulation of NGF expression within the xenograft tumor tissues. Conclusion: Collectively, these findings suggest that neuronatin plays a pivotal role in driving NSCLC progression, potentially through the activation of the nuclear factor-kappa B signaling cascade. Additionally, neuronatin may contribute to the modulation of tumor microenvironment innervation in NSCLC. Targeting neuronatin inhibition emerges as a promising strategy for potential anti-NSCLC therapeutic intervention.

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/content/journals/ccdt/10.2174/0115680096271746240103063325
2024-11-01
2024-11-14
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