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Hyaluronic acid-tagged silica nanoparticles in colon cancer therapy: therapeutic efficacy evaluation

机译:透明质酸标记的二氧化硅纳米粒子在结肠癌治疗中的疗效评价

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摘要

Colon cancer is one of the leading causes of cancer-related death worldwide, and the therapeutic application of 5-fluorouracil (5-FU) is limited due to its nonspecificity, low bioavailability, and overdose. The present study is an attempt to improve the chemotherapeutic efficacy of 5-FU in colon cancers. Therefore, we have prepared 5-FU-loaded hyaluronic acid (HA)-conjugated silica nanoparticles (SiNPs) to target to colon cancer cells. In this study, we have showed the specific binding and intracellular accumulation of targeted nanoparticles based on HA surface modifications in colon carcinoma cells. The particles had spherical shapes with sizes of approximately 130 nm. HA-conjugated nanoparticles showed a sustained release pattern for 5-FU and continuously released for 120 hours. We have further investigated the cytotoxicity potential of targeted and nontargeted nanoparticles in colo-205 cancer cells. IC50 value of 5-FU/hyaluronic acid-conjugated silica nanoparticles (HSNP) was 0.65 µg/mL compared with ~2.8 µg/mL for 5-FU/SNP after 24 hours of incubation. The result clearly showed that HA-conjugated NP was more effective in inducing apoptosis in cancer cells than nontargeted NP. The 5-FU/HSNP showed ~45% of cell apoptosis (early and late apoptosis stage) compared with only 20% for 5-FU/silica nanoparticles (SNP)-treated group. The HA-conjugated nanoparticles provide the possibility of efficient drug transport into tumors that could effectively reduce the side effects in the normal tissues. 5-FU/HSNP was highly efficient in suppressing the tumor growth in xenograft tumor model. The proportion of Ki67 in 5-FU/HSNP-treated group was significantly lower than that of either free drug or nontargeted SiNPs. Altogether, we have showed that conjugation of HA to SiNPs could result in enhanced uptake of 5-FU through CD44-mediated endocytosis uptake and could result in significant antitumor efficacy. Thus, 5-FU/HSNP could be a promising drug delivery system for colon cancer therapy.
机译:结肠癌是全球范围内与癌症相关的死亡的主要原因之一,并且5-氟尿嘧啶(5-FU)的治疗应用由于其非特异性,低生物利用度和过量而受到限制。本研究是提高5-FU在结肠癌中的化学治疗功效的尝试。因此,我们准备了加载5-FU的透明质酸(HA)共轭的二氧化硅纳米粒子(SiNPs),以靶向结肠癌细胞。在这项研究中,我们已经显示了基于结肠癌细胞中HA表面修饰的靶向纳米粒子的特异性结合和细胞内积累。颗粒具有尺寸约为130nm的球形。 HA-缀合的纳米颗粒显示5-FU的持续释放模式,并持续释放120小时。我们进一步研究了靶向和非靶向纳米颗粒在colo-205癌细胞中的细胞毒性潜力。孵育24小时后,结合5-FU /透明质酸的二氧化硅纳米颗粒(HSNP)的IC50值为0.65 µg / mL,而使用5-FU / SNP的IC50值为〜2.8 µg / mL。该结果清楚地表明,HA缀合的NP比非靶向NP更有效地诱导癌细胞凋亡。 5-FU / HSNP显示〜45%的细胞凋亡(早期和晚期凋亡阶段),而5-FU /二氧化硅纳米颗粒(SNP)处理组仅约20%。与HA结合的纳米颗粒提供了将药物有效转移到肿瘤中的可能性,可以有效减少正常组织中的副作用。 5-FU / HSNP在异种移植肿瘤模型中抑制肿瘤生长方面非常有效。 5-FU / HSNP治疗组中Ki67的比例显着低于游离药物或非靶向S​​iNPs。总而言之,我们已经表明,HA与SiNPs的结合可以通过CD44介导的内吞作用而导致5-FU的摄取增加,并可能导致显着的抗肿瘤功效。因此,5-FU / HSNP可能是用于结肠癌治疗的有希望的药物递送系统。

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