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Investigations on Agglomeration and Haemocompatibility of Vitamin E TPGS Surface Modified Berberine Chloride Nanoparticles

机译:维生素E TPGS表面改性小檗碱氯化物纳米粒子的凝聚和血液相容性的研究

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摘要

The objective of the present study is to investigate the influence of surface modification on systemic stability of NPs. Vitamin E TPGS (1% w/v) was used for surface modification of berberine chloride nanoparticles. Naked and surface modified NPs were incubated in different SBFs (pH 6.8 and 7.4) with or without bile salts and human plasma. NPs were observed for particle agglomeration and morphology by particle size analyzer and TEM, respectively. The haemocompatibility studies were conducted on developed NPs to evaluate their safety profile. The surface modified NPs were stable compared to naked NPs in different SBFs due to the steric stabilization property of vitamin E TPGS. Particle agglomeration was not seen when NPs were incubated in SBF (pH 6.8) with bile salts. No agglomeration was observed in NPs after their incubation in plasma but particle size of the naked NPs increased due to adhesion of plasma proteins. The TEM images confirmed the particle size results. DSC and FT-IR studies confirmed the coexistence of TPGS in surface modified NPs. The permissible haemolysis, LDH release, and platelet aggregation revealed that NPs were compatible for systemic administration. Thus, the study illustrated that the surface modification is helpful in the maintenance of stability of NPs in systemic conditions.
机译:本研究的目的是研究表面改性对NPS的系统稳定性的影响。维生素E TPG(1%w / v)用于小檗碱氯化物纳米粒子的表面改性。裸露的和表面改性的NPS在不同的SBF(pH6.8和7.4)中,或没有胆汁盐和人血浆孵育。分别观察到NPS用于颗粒尺寸分析仪和TEM的颗粒聚集和形态。在发育的NPS上进行了血换性研究,以评估其安全性曲线。由于维生素E TPGS的空间稳定性,表面改性的NPS与不同SBF中的裸露NPS相比稳定。当用胆汁盐在SBF(pH6.8)中孵育NPS时,颗粒聚集未被看见。在它们在血浆中孵育后,在浆液中孵育后,在裸露的NPS的粒度增加,由于血浆蛋白的粘合,在浆液中的粒度增加,不会在NPS中观察到聚集。 TEM图像确认了粒度结果。 DSC和FT-IR研究证实了TPG在表面改性NPS中的共存。允许的溶血,LDH释放和血小板聚集表明,NPS与全身给药相容。因此,研究表明,表面改性有助于维持全身状况中NP的稳定性。

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