一种通过眼内细胞系加强药物探测来革新白内障治疗的方法。

Ling Wang, Weixian Liu, Xionggao Huang
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引用次数: 8

摘要

本研究的目的是制备和表征n -乙酰肌肽(NAC)固体脂质纳米颗粒(SLN),以治疗白内障,因为手术需要设备和专业帮助。白内障被认为是由生物化学方法形成的,其中晶体眼蛋白失去溶解度并形成高分子量的质量。在本研究中,NAC的SLN(以下简称SLN-NAC)的另一个优点是体积更小,缓释,药物的角膜穿透性更好。密尔法制备SLN-NAC的方法有其独特之处。SLN-NAC的尺寸为75±10 nm,在理想穿透范围内。体外释放研究表明,用Mill方法制备的SLN-NAC制剂在1 h后产生初始爆发,持续释放时间长达24 h。制备的制剂的zeta电位为-22.1±1 mV。山羊角膜渗透研究表明,SLN-NAC滴眼液的渗透率高于NAC滴眼液。角膜水化研究表明,该配方对角膜细胞无损伤。因此,SLN-NAC可能通过改善药物渗透、降低毒性和不损伤角膜组织来彻底改变白内障的治疗和逆转。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

An approach to revolutionize cataract treatment by enhancing drug probing through intraocular cell line.

An approach to revolutionize cataract treatment by enhancing drug probing through intraocular cell line.

An approach to revolutionize cataract treatment by enhancing drug probing through intraocular cell line.

An approach to revolutionize cataract treatment by enhancing drug probing through intraocular cell line.

The purpose of this study is to prepare and characterize solid lipid nanoparticles (SLN) of N-Acetyl Carnosine (NAC) to treat cataract since surgery necessitates equipments and professional help. Cataract is believed to be formed by the biochemical approach where the crystalline eye proteins lose solubility and forms high molecular weight masses. Added advantages of SLN of NAC (henceforth referred as SLN-NAC) in the study are reduced size, sustained release and better corneal penetration of drug. The method of preparation of SLN-NAC by Mill's method is unique in itself. The size of the SLN-NAC was 75 ± 10 nm in the range of ideal for penetration. The in-vitro release study and the SLN-NAC formulations prepared with Mill's method demonstrated sustained release up to 24 h following an initial burst after 1 h. The zeta potential of the prepared formulation was -22.1 ± 1 mV. Corneal permeation studies using goat corneas indicate that SLN-NAC penetration rate was higher than those from NAC eye drops. Corneal hydration studies indicated that the formulation caused no harm to the corneal cells. Therefore it may be concluded that SLN-NAC may revolutionize cataract treatment and reversal by improving drug permeation, reducing toxicity and no damage to corneal tissue.

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