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Endobronchial Ultrasound-guided Intratumoral Injection of Cisplatin for the Treatment of Isolated Mediastinal Recurrence of Lung Cancer
Published on: February 12, 2017
LT1-3, a Slit2-Derived Peptide, Exhibits Anti-Tumor Activity and Improves Cisplatin Therapy
Ting-Chien Wu1, Chen-Yi Liao1, Yu-Ying Lin2
1Institute of Medicine, Chung Shan Medical University, 110, Sec. 1, Chien-Kuo N. Road, Taichung City 402306, Taiwan.
Abstract:
The Slit2/Robo signaling pathway acts as a tumor suppressor in various cancers. This study identified an 8-amino acid peptide, LT1-3, derived from the Slit2 LamG domain, and demonstrated its ability to inhibit lung cancer cell proliferation and invasion independently of Robo receptors. Notably, LT1-3 was non-toxic to normal cells (Beas-2B, MRC5, and HUVECs). Combination treatment of LT1-3 and cisplatin synergistically inhibited the proliferation of lung cancer cells (CL1-5, A549, H1355, H460, H23, H661), but had no inhibitory effect on H1299 and H1975. Furthermore, combination therapy prolonged the median survival of tumor-bearing immunodeficient nude mice from 27.5 days (control) to 37.5 days (LT1-3 or cisplatin) and further to 47.5 days (LT1-3/cisplatin combination). The tumor suppressor TP53 positively influences LT1-3-mediated proliferation inhibition, while MAPK8 (JNK1) and PRKACA (PKA) have been identified as negative regulators. With the exception of the p53R273 variants, most TP53 mutants retained their function in this context. The p53 reactivator APR-246 restores sensitivity of p53R273H-expressing cells to LT1-3. JNK inhibition sensitizes p53-deficient or p53R273H-expressing cells to LT1-3-mediated proliferation inhibition. LT1-3, alone or in combination with a JNK inhibitor, enhances cisplatin efficacy, even in the presence of p53 mutations. Therefore, LT1-3 possesses multifunctional antitumor properties, directly inhibiting tumor cells and enhancing the efficacy of cisplatin, without causing toxicity to normal cells. Combining LT1-3 with cisplatin holds promise as a first-line therapy for lung cancer, while LT1-3 alone may be suitable for maintenance therapy.
Insights
A novel peptide, LT1-3, derived from Slit2, inhibits lung cancer growth and invasion without harming normal cells. It synergizes with cisplatin, offering a promising new lung cancer therapy, especially for TP53-mutated tumors.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Signaling Pathways
Background:
- The Slit2/Robo pathway is a known tumor suppressor in various cancers.
- Targeting cancer cell proliferation and invasion is crucial for effective treatment.
Purpose of the Study:
- To identify and characterize a novel peptide, LT1-3, derived from Slit2 for its anti-lung cancer properties.
- To evaluate the efficacy of LT1-3, alone and in combination with cisplatin, in preclinical lung cancer models.
Main Methods:
- Identification of an 8-amino acid peptide (LT1-3) from the Slit2 LamG domain.
- In vitro assays assessing proliferation and invasion inhibition in lung cancer cell lines.
- In vivo studies using tumor-bearing immunodeficient nude mice.
- Analysis of TP53, MAPK8 (JNK1), and PRKACA (PKA) roles in LT1-3 response.
Main Results:
- LT1-3 inhibited lung cancer cell proliferation and invasion independently of Robo receptors and was non-toxic to normal cells.
- Combination therapy with LT1-3 and cisplatin showed synergistic anti-proliferative effects and prolonged survival in mice.
- TP53 positively influenced LT1-3 efficacy, while MAPK8 and PRKACA acted as negative regulators; JNK inhibition and APR-246 restored sensitivity in specific mutant contexts.
Conclusions:
- LT1-3 demonstrates potent, multifunctional antitumor properties against lung cancer.
- LT1-3 enhances cisplatin efficacy, even in the presence of TP53 mutations, suggesting broad applicability.
- Combination therapy with LT1-3 and cisplatin is a promising first-line treatment strategy for lung cancer.
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