一种抗癌生物活性肽联合奥沙利铂在体外和体内抑制胃癌细胞。

IF 1.9 4区 生物学 Q4 BIOCHEMISTRY & MOLECULAR BIOLOGY Current protein & peptide science Pub Date : 2025-01-08 DOI:10.2174/0113892037350632241205040150
Xian Li, Lihua Kang, Wenyan Han, Xiulan Su
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引用次数: 0

摘要

背景:胃癌已成为威胁人类健康的主要疾病之一。本研究旨在探讨抗癌生物活性肽(ACBP)联合奥沙利铂(OXA)对MKN-45、SGC7901和NCI-N87分化的人胃癌细胞和GES-1永生化人胃粘膜上皮细胞的作用机制。研究短期间歇ACBP联合OXA对人胃癌裸鼠的治疗效果及作用机制。方法:采用MTT法测定这些药物在细胞中的半最大抑制浓度,并用H&E染色观察细胞形态学变化。经药物处理后,采用q-PCR检测四种细胞系中Lin28、miR-107、miR-609和Let-7的表达。用western blotting法检测四种药物处理后细胞系中Lin28蛋白的表达。此外,观察荷瘤裸鼠的日常活动和生活质量,并通过免疫组织化学和RT-PCR检测肿瘤组织中Lin28的表达。结果:ACBP对MKN-45、SGC7901、NCI-N87胃癌细胞的增殖具有剂量依赖性,对GES-1细胞的增殖有弱抑制作用。此外,其对低分化胃癌细胞的增殖抑制作用更强。ACBP、OXA和联合用药可上调MKN-45细胞中的Lin28基因表达,下调SGC7901和GES-1细胞中的Lin28基因表达。ACBP和联合治疗下调了MKN-45细胞中的Let-7表达,上调了SGC7901细胞中的Let-7表达。ACBP联合OXA具有显著的抗肿瘤增敏作用。此外,它还显著提高了荷瘤裸鼠的生活质量,减少了化疗药物对裸鼠的毒副作用。结论:ACBP单用及联用奥沙利铂可影响肿瘤干细胞标志物基因Lin28的表达,调节Lin28特异性调控的microrna的表达。此外,ACBP的抗癌和减敏作用可能与Lin28/miRNA-107信号通路有关,通过抑制癌变干细胞的增殖发挥作用。本研究结果为探索ACBP单用及联合化疗药物的抗肿瘤机制提供了科学依据。
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An Anticancer Bioactive Peptide Combined with Oxaliplatin Inhibited Gastric Cancer Cells In Vitro and In Vivo.

Background: Gastric cancer has become one of the major diseases threatening human health. This study aimed to investigate the mechanism of an anticancer bioactive peptide (ACBP) combined with oxaliplatin (OXA) on MKN-45, SGC7901, and NCI-N87 differentiated human gastric cancer cells and GES-1 immortalized human gastric mucosal epithelial cells. The therapeutic effect and action mechanism of short-term intermittent ACBP combined with OXA on nude mice with human gastric cancer were also investigated.

Methods: The half-maximal inhibitory concentrations of these agents in these cells were measured by an MTT assay, and cell morphological changes were observed by H&E staining. The expression of Lin28, miR-107, miR-609, and Let-7 in these four cell lines was determined by q-PCR after drug treatment. Lin28 protein expression in these four cell lines treated with these drugs was measured by western blotting. Furthermore, activity and quality of life were observed daily in all tumor-bearing nude mice, and the expression of Lin28 in tumor tissue was determined by immunohistochemistry and RT-PCR.

Results: The results showed that ACBP inhibited the proliferation of MKN-45, SGC7901, and NCI-N87 gastric cancer cells in a dose-dependent manner and weakly suppressed the proliferation of GES-1 cells. Moreover, its inhibitory effect on proliferation was stronger in poorly differentiated gastric cancer cells. ACBP, OXA, and the combination upregulated Lin28 gene expression in MKN-45 cells and downregulated it in SGC7901 and GES-1 cells. ACBP and the combination therapy downregulated Let-7 expression in MKN-45 cells and upregulated Let-7 expression in SGC7901 cells. The combination of ACBP with OXA demonstrated significant anticancer sensitization. Moreover, it also significantly improved the quality of life of tumor-bearing nude mice and reduced the toxic side effects of chemotherapeutic drugs on nude mice.

Conclusion: ACBP alone and in combination with oxaliplatin influenced the expression of tumor stem cell marker gene Lin28 and regulated the expression of microRNAs specifically regulated by Lin28. In addition, the anticancer effects and attenuated sensitization effects of ACBP may be related to the Lin28/miRNA-107 signaling pathway, acting by inhibiting the proliferation of cancerous stem cells. The findings of this study provide a scientific basis for exploring the antitumor mechanism of ACBP alone and combined with chemotherapeutic drugs.

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来源期刊
Current protein & peptide science
Current protein & peptide science 生物-生化与分子生物学
CiteScore
5.20
自引率
0.00%
发文量
73
审稿时长
6 months
期刊介绍: Current Protein & Peptide Science publishes full-length/mini review articles on specific aspects involving proteins, peptides, and interactions between the enzymes, the binding interactions of hormones and their receptors; the properties of transcription factors and other molecules that regulate gene expression; the reactions leading to the immune response; the process of signal transduction; the structure and function of proteins involved in the cytoskeleton and molecular motors; the properties of membrane channels and transporters; and the generation and storage of metabolic energy. In addition, reviews of experimental studies of protein folding and design are given special emphasis. Manuscripts submitted to Current Protein and Peptide Science should cover a field by discussing research from the leading laboratories in a field and should pose questions for future studies. Original papers, research articles and letter articles/short communications are not considered for publication in Current Protein & Peptide Science.
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