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首页> 外文期刊>Cell biology international. >Preparation and investigation of indirubin-loaded SLN nanoparticles and their anti-cancer effects on human glioblastoma U87MG cells
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Preparation and investigation of indirubin-loaded SLN nanoparticles and their anti-cancer effects on human glioblastoma U87MG cells

机译:载入吲哚素纳米粒子的制备与调查及其对人胶质母细胞瘤U87mg细胞的抗癌作用

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摘要

Indirubin, an ingredient in traditional Chinese medicine, is considered as an anti-cancer agent. However, due to its hydrophobic nature, clinical efficiency has been limited. Drug delivery via nanotechnology techniques open new windows toward treatment of cancerous patients. Glioblastoma multiforme (GBM) is the most severe and common type of brain primary tumors. Of common problems in targeting therapies of glioblastoma is the availability of drug in tumoric tissues. In this study, Indirubin loaded solid lipid nanoparticles were prepared and their therapeutic potentials and antitumoric effects were assessed on GBM cell line (U87MG). The SLNs were prepared with Cetyl palmitate and Polysorbat 80 via high-pressure homogenization (HPH) methods in hot mode. Then, properties of SLNs including size, zeta potential, drug encapsulation efficacy (EE %) and drug loading were characterized. SLNs morphology and size were observed using SEM and TEM. The crystalinity of formulation was determined by different scattering calorimetry (DSC). The amount of drug release and antitumor efficiency were evaluated at both normal brain pH of 7.2 and tumoric pH of 6.8. The prapared SLNs had mean size of 130 nm, zeta potential of -16 mV and EE of 99.73%. The results of DSC showed proper encapsulation of drug into SLNs. Drug release assessment in both pH displayed sustain release property. The result of MTT test exhibited a remarkable increment in antitumor activity of Indirubin loaded SLN in comparison with free form of drug and blank SLN on multiform GB. This study indicated that Indirubin loaded SLNs could act as a useful anticancer drugs.
机译:Indirubin是一种中药中的成分,被认为是抗癌剂。然而,由于其疏水性,临床效率受到限制。通过纳米技术技术的药物递送开放新窗户朝向癌症患者的治疗。胶质母细胞瘤多形体(GBM)是最严重和常见的脑原发性肿瘤。植物母细胞瘤靶向疗法的常见问题是肿瘤组织中药物的可用性。在该研究中,制备了Incirubin负载的固体脂质纳米颗粒,并在GBM细胞系(U87mg)上评估其治疗潜力和抗肿瘤作用。通过在热模式下通过高压均化(HPH)方法用甲酰棕榈酸酯和多电磁解体80制备SLNS。然后,表征了包括尺寸,ζ电位,药物包封效应(EE%)和药物载荷的SLN的性质。使用SEM和TEM观察SLNS形态和大小。通过不同的散射量热法(DSC)测定制剂的晶间。在普通脑pH pH值为7.2和6.8的肿瘤pH下评估药物释放量和抗肿瘤效率。 Prapared SLN的平均尺寸为130nm,Zeta电位为-16mV,EE为99.73%。 DSC的结果表明药物的适当封装成SLN。 PH显示的药物释放评估显示维持释放属性。 MTT试验的结果表现出Indirubin的抗肿瘤活性的显着增量,与多种GB上的药物和坯料SLN的自由形式相比,Incirubin负载SLN。本研究表明,Incirubin负载的SLN可以充当有用的抗癌药物。

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