Nanopolymeric Drug Delivery Lab, Department of Pharmacy, School of Chemical Sciences and Pharmacy, Central University of Rajasthan, Bandarsindri, Ajmer, Rajasthan 305817, India.
Department of Pharmaceutics, JSS College of Pharmacy, JSS Academy of Higher Education and Research, Mysuru, Karnataka 570015, India.
ACS Biomater Sci Eng. 2023 Jul 10;9(7):4288-4301. doi: 10.1021/acsbiomaterials.3c00263. Epub 2023 Jun 12.
The present study was aimed to synthesize, characterize, and evaluate the angiopep-2 grafted PAMAM dendrimers (Den, G 3.0 NH) with and without PEGylation for the targeted and better delivery approach of temozolomide (TMZ) for the management of glioblastoma multiforme (GBM). Den-ANG and Den-PEG-ANG conjugates were synthesized and characterized by H NMR spectroscopy. The PEGylated (TMZ@Den-PEG-ANG) and non-PEGylated (TMZ@Den-ANG) drug loaded formulations were prepared and characterized for particle size, zeta potential, entrapment efficiency, and drug loading. An release study at physiological (pH 7.4) and acidic pH (pH 5.0) was performed. Preliminary toxicity studies were performed through hemolytic assay in human RBCs. MTT assay, cell uptake, and cell cycle analysis were performed to evaluate the efficacy against GBM cell lines (U87MG). Finally, the formulations were evaluated in a Sprague-Dawley rat model for pharmacokinetics and organ distribution analysis. The H NMR spectra confirmed the conjugation of angiopep-2 to both PAMAM and PEGylated PAMAM dendrimers, as the characteristic chemical shifts were observed in the range of 2.1 to 3.9 ppm. AFM results revealed that the surface of Den-ANG and Den-PEG-ANG conjugates were rough. The particle size and zeta potential of TMZ@Den-ANG were observed to be 229.0 ± 17.8 nm and 9.06 ± 0.4 mV, respectively, whereas the same for TMZ@Den-PEG-ANG were found to be 249.6 ± 12.9 nm and 10.9 ± 0.6 mV, respectively. The entrapment efficiency of TMZ@Den-ANG and TMZ@Den-PEG-ANG were calculated to be 63.27 ± 5.1% and 71.48 ± 4.3%, respectively. Moreover, TMZ@Den-PEG-ANG showed a better drug release profile with a controlled and sustained pattern at PBS pH 5.0 than at pH 7.4. The hemolytic study revealed that TMZ@Den-PEG-ANG was biocompatible in nature as it showed 2.78 ± 0.1% hemolysis compared to 4.12 ± 0.2% hemolysis displayed by TMZ@Den-ANG. The outcomes of the MTT assay inferred that TMZ@Den-PEG-ANG possessed maximum cytotoxic effects against U87MG cells with IC values of 106.62 ± 11.43 μM (24 h) and 85.90 ± 9.12 μM (48 h). In the case of TMZ@Den-PEG-ANG, the IC values were reduced by 2.23-fold (24 h) and 1.36-fold (48 h) in comparison to pure TMZ. The cytotoxicity findings were further confirmed by significantly higher cellular uptake of TMZ@Den-PEG-ANG. Cell cycle analysis of the formulations suggested that the PEGylated formulation halts the cell cycle at G2/M phase with S-phase inhibition. In the studies, the half-life () values of TMZ@Den-ANG and TMZ@Den-PEG-ANG were enhanced by 2.22 and 2.76 times, respectively, than the pure TMZ. After 4 h of administration, the brain uptake values of TMZ@Den-ANG and TMZ@Den-PEG-ANG were found to be 2.55 and 3.35 times, respectively, higher than that of pure TMZ. The outcomes of various and experiments promoted the use of PEGylated nanocarriers for the management of GBM. Angiopep-2 grafted PEGylated PAMAM dendrimers can be potential and promising drug carriers for the targeted delivery of antiglioma drugs directly to the brain.
本研究旨在合成、表征并评估载有和未载有 PEG 的血管肽-2 接枝的 PAMAM 树枝状聚合物(Den,G3.0NH),以便为多形性胶质母细胞瘤(GBM)的管理提供靶向和更好的替莫唑胺(TMZ)传递方法。通过 H NMR 光谱对 Den-ANG 和 Den-PEG-ANG 缀合物进行了合成和表征。制备了载有 PEG 的(TMZ@Den-PEG-ANG)和非载有 PEG 的(TMZ@Den-ANG)药物制剂,并对其粒径、Zeta 电位、包封效率和载药量进行了评价。在生理(pH7.4)和酸性(pH5.0)条件下进行了释放研究。通过人 RBC 的溶血试验初步评价了毒性。通过 MTT 测定、细胞摄取和细胞周期分析评价了对 GBM 细胞系(U87MG)的疗效。最后,在 Sprague-Dawley 大鼠模型中进行了药代动力学和器官分布分析。H NMR 谱证实了血管肽-2 与 PAMAM 和 PEG 化 PAMAM 树枝状聚合物的结合,因为在 2.1 至 3.9ppm 的范围内观察到了特征化学位移。原子力显微镜结果表明 Den-ANG 和 Den-PEG-ANG 缀合物的表面粗糙。TMZ@Den-ANG 的粒径和 Zeta 电位分别为 229.0±17.8nm 和 9.06±0.4mV,TMZ@Den-PEG-ANG 的粒径和 Zeta 电位分别为 249.6±12.9nm 和 10.9±0.6mV。TMZ@Den-ANG 和 TMZ@Den-PEG-ANG 的包封效率分别为 63.27±5.1%和 71.48±4.3%。此外,TMZ@Den-PEG-ANG 在 PBS pH5.0 下的药物释放曲线表现出更好的控制和持续释放模式,而在 pH7.4 下则表现出较差的释放模式。溶血研究表明 TMZ@Den-PEG-ANG 具有生物相容性,因为与 TMZ@Den-ANG(4.12±0.2%溶血)相比,其溶血率仅为 2.78±0.1%。MTT 测定的结果表明,TMZ@Den-PEG-ANG 对 U87MG 细胞具有最大的细胞毒性作用,其 IC50 值分别为 106.62±11.43μM(24h)和 85.90±9.12μM(48h)。对于 TMZ@Den-PEG-ANG,与纯 TMZ 相比,其 IC50 值分别降低了 2.23 倍(24h)和 1.36 倍(48h)。细胞摄取实验进一步证实了 TMZ@Den-PEG-ANG 的细胞毒性作用更高。制剂的细胞周期分析表明,PEG 化制剂在 G2/M 期抑制 S 期,使细胞周期停滞。在研究中,TMZ@Den-ANG 和 TMZ@Den-PEG-ANG 的半衰期()值分别比纯 TMZ 提高了 2.22 倍和 2.76 倍。给药 4 小时后,TMZ@Den-ANG 和 TMZ@Den-PEG-ANG 的脑摄取值分别比纯 TMZ 高 2.55 倍和 3.35 倍。各种 和 实验的结果促进了使用 PEG 化纳米载体来管理 GBM。载有血管肽-2 的 PEG 化 PAMAM 树枝状聚合物可以成为靶向递送抗神经胶质瘤药物的有前途的药物载体,直接递送到大脑。