一种口服纳米药物治疗BALB/c小鼠乳腺癌的体内动物模型评估,使用4T1细胞系,无需化疗

Z. Fakhroueian, A. Massiha, Pegah Esmaeilzadeh, M. Assmar, A. Zahedi, Pouriya Esmaeilzadeh, Sara Rezaei, Shahab Rabiei Lalehdasht
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引用次数: 0

摘要

含有量子点纳米粒子(Q-Dot NPs)的纳米药物用于治疗严重的癌症,如乳腺癌,已经提出了奇妙的建议。在本研究中,ZnO量子点NPs通过ZnO@PVP纳米聚合物与高效的合适润湿剂、peg结合化合物和W/O乳化剂协同制备,制备出环保型水基纳米药物。采用SEM、TEM、FTIR、光致发光、zeta电位、UV-Vis吸收等表征技术对纳米药物中的ZnO Q-Dot NPs进行了表征。本研究旨在探讨该纳米药物对BALB/c小鼠4T1乳腺癌细胞系的抗肿瘤作用,并通过腹腔、注射(IVP)和口服治疗进行阐述。令人印象深刻的发现表明,ZnO纳米药物引起血液因子的变化,口服两周后,其浓度为40 μ g/ml时最有效。白细胞(WBC)中性粒细胞的显著增加和淋巴细胞(尤其是胆固醇)的显著减少是同时发生的强大影响,成功地治疗了恶性乳腺癌肿块。在这项重要的乳腺癌动物模型研究中,患病的老鼠完全康复,甚至有了安全的交配空间。组织病理学结果显示,在接受纳米药物治疗的组及其子女中,没有乳房肿瘤形成或转移的证据。这种纳米药物具有治疗效果,并准备用于治疗志愿者乳腺癌患者。但其预防(抑制)作用也可以在未来的研究中分析和补充到现有的数据中。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
In Vivo Animal Model Evaluation of a Powerful Oral Nanomedicine for Treating Breast Cancer in BALB/c Mice Using 4T1 Cell Lines without Chemotherapy
Nanopharmaceuticals containing quantum dot nanoparticles (Q-Dot NPs) for treating serious cancers such as breast cancer have made fantastic propos-als. In this study, ZnO quantum dot NPs are formulated via ZnO@PVP nanopolymer as co-assistants coordinating with efficacious suitable wetting agents, PEG-binding compound, and W/O emulsifier for producing eco-friendly wa-ter-based nanodrug. Several characterization techniques containing SEM, TEM, FTIR, photoluminescence, zeta potential, and UV-Vis absorption were employed for ZnO Q-Dot NPs in nanodrug. This work aims to investigate the anti-tumor effects of such nanomedicine on the 4T1 breast cancer cell line in BALB/c mice, being elaborated through intraperitoneal, injection (IVP) and oral therapy. The impressive findings showed that ZnO nanodrug caused changes in blood factors, having the most effectiveness at 40 µg/ml concentration after two weeks of oral treatments. The significant increase in white blood cells (WBC) neutrophils and meaningful decreases in lymphocytes and especially cholesterol were powerful simultaneous impacts, successfully treating malignant breast cancer masses. In this significant animal model research for breast cancer, the sick mice recovered entirely and even had a safe space to mate. Histopathological results showed no evidence of breast tumor formation or metastasis in the group treated with nanodrug and their children. This nanomedicine has a therapeutic effect, and is ready to be applied for treating volunteer breast cancer patients. However, its prevention (inhibitory) effect can also be analyzed and added to current data in future studies.
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