藻酸盐微球包裹hox转录本反义RNA siRNA可调节刺猬-Gli1通路,缓解表皮生长因子受体酪氨酸激酶抑制剂的耐药性。

IF 2.3 4区 医学 Q3 ENGINEERING, BIOMEDICAL Journal of Biomaterials Applications Pub Date : 2024-03-01 Epub Date: 2024-01-23 DOI:10.1177/08853282241228667
Guojie Lu, Huiling Zhong, Jianwei Gao, Yaosen Zhang
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引用次数: 0

摘要

长非编码RNA HOTAIR和Hedgehog-Gli1信号通路与多种癌症的肿瘤发生和耐药性密切相关。然而,它们在非小细胞癌表皮生长因子受体-TKIs耐药性发生过程中的具体作用仍不清楚。针对EGFR-TKIs耐药问题,本研究利用电喷雾法制备了包裹HOTAIR siRNA(SA/HOTAIR siRNA)的海藻酸钠微球,并研究了其在吉非替尼耐药细胞系PC9/GR中的RNA干扰(RNAi)效果。此外,研究还探讨了HOTAIR是否能通过Hedgehog-GLi1信号通路调节表皮生长因子受体抑制剂(EGFR-TKIs)的耐药性。实验结果表明,海藻酸钠(SA)微球具有良好的生物相容性、较高的包封效率和载药量,能有效提高siRNA的沉默效率。HOTAIR siRNA能明显抑制PC9/GR细胞的增殖、迁移和侵袭能力,同时促进细胞凋亡。此外,HOTAIR siRNA 还能有效抑制肿瘤生长,并下调 Hedgehog-GLi1 通路和抗凋亡蛋白,这些都在动物实验中得到了证实。此外,与单独使用 HOTAIR siRNA 相比,SA/HOTAIR siRNA 能更好地抑制细胞和肿瘤功能。临床研究结果表明,在接受 EGFR-TKIs 治疗前后监测 NSCLC 患者血清和尿液样本中 HOTAIR 的表达水平,可以在一定程度上预测 EGFR-TKIs 的疗效。这项研究证明,HOTAIR siRNA通过抑制Hedgehog-GLi1通路,有效缓解了EGFR-TKIs获得性耐药的发生。此外,该研究还为抗EGFR-TKIs获得性耐药性提供了一种可靠而持久的给药系统。
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Alginate microspheres encapsulating hox transcript antisense RNA siRNA regulate the Hedgehog-Gli1 pathway to alleviate epidermal growth factor receptor tyrosine kinase inhibitors resistance.

The long non-coding RNA HOTAIR and the Hedgehog-Gli1 signaling pathway are closely associated with tumor occurrence and drug resistance in various cancers. However, their specific roles in the development of EGFR-TKIs resistance in non-small cell carcinoma remain unclear. To address the issue of EGFR-TKIs resistance, this study utilized the electrospray method to prepare sodium alginate microspheres encapsulating HOTAIR siRNA (SA/HOTAIR siRNA) and investigated its effects on RNA interference (RNAi) in the gefitinib-resistant cell line PC9/GR. Furthermore, the study explored whether HOTAIR could modulate EGFR-TKIs resistance through the Hedgehog-GLi1 signaling pathway. The experimental results showed that sodium alginate (SA) microspheres demonstrated excellent biocompatibility with high encapsulation efficiency and drug-loading capacity, effectively enhancing the silencing efficiency of siRNA. HOTAIR siRNA significantly inhibited the proliferation, migration, and invasion abilities of PC9/GR cells while promoting apoptosis. Additionally, HOTAIR siRNA effectively suppressed tumor growth and downregulated the Hedgehog-GLi1 pathway and anti-apoptotic proteins, which were confirmed in animal experiments. Moreover, SA/HOTAIR siRNA exhibited superior inhibition of cellular and tumor functions compared to using HOTAIR siRNA alone. Clinical research findings indicated that monitoring the expression level of HOTAIR in the serum and urine samples of NSCLC patients before and after receiving EGFR-TKIs treatment can predict the efficacy of EGFR-TKIs to a certain extent. This study provided evidence that HOTAIR siRNA effectively mitigated the development of acquired resistance to EGFR-TKIs by inhibiting the Hedgehog-GLi1 pathway. Furthermore, it introduced a reliable and long-lasting drug delivery system for combating acquired resistance to EGFR-TKIs.

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来源期刊
Journal of Biomaterials Applications
Journal of Biomaterials Applications 工程技术-材料科学:生物材料
CiteScore
5.10
自引率
3.40%
发文量
144
审稿时长
1.5 months
期刊介绍: The Journal of Biomaterials Applications is a fully peer reviewed international journal that publishes original research and review articles that emphasize the development, manufacture and clinical applications of biomaterials. Peer-reviewed articles by biomedical specialists from around the world cover: New developments in biomaterials, R&D, properties and performance, evaluation and applications Applications in biomedical materials and devices - from sutures and wound dressings to biosensors and cardiovascular devices Current findings in biological compatibility/incompatibility of biomaterials The Journal of Biomaterials Applications publishes original articles that emphasize the development, manufacture and clinical applications of biomaterials. Biomaterials continue to be one of the most rapidly growing areas of research in plastics today and certainly one of the biggest technical challenges, since biomaterial performance is dependent on polymer compatibility with the aggressive biological environment. The Journal cuts across disciplines and focuses on medical research and topics that present the broadest view of practical applications of biomaterials in actual clinical use. The Journal of Biomaterial Applications is devoted to new and emerging biomaterials technologies, particularly focusing on the many applications which are under development at industrial biomedical and polymer research facilities, as well as the ongoing activities in academic, medical and applied clinical uses of devices.
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