Nemoto Eiichi, Takahashi Hirokazu, Kobayashi Daisuke, Ueda Hideo, Morimoto Yasunori
Biol Pharm Bull. 2006 Jan;29(1):155-60. doi: 10.1248/bpb.29.155.
We investigated whether poly-L-arginine (PLA) could improve permeation of the hydrophilic compounds, FITC-labeled dextran (MW 3800, FD-4) and pyridoxamine, through ocular surface tissues. Samples of cornea, conjunctiva, or conjunctiva/sclera composite from Japanese white rabbits were mounted in Ussing chambers to measure FD-4 and pyridoxamine permeation and transepithelial electric resistance (TEER). The integrity and viability of the conjunctiva were assessed by chronological TEER monitoring and MTT assay, respectively. The permeability coefficient (Papp) of FD-4 in the cornea, conjunctiva, and conjunctiva/sclera composite was increased by the addition of PLA (MW 38 kDa, PLA (50) at 0.1 mg/ml by 6.81-, 9.78-, and 7.91-fold, respectively. The Papp of pyridoxamine was also increased in the presence of PLA (50) by 7.98-, 4.67-, 8.31-fold, respectively. A corresponding reduction in TEER was observed in all tissues. However, the reduced TEER in the case of the conjunctiva had recovered to ca. 70% 120 min after replacing the mucosal fluid with fresh bicarbonated Ringer's solution. MTT assay results indicated that treatment of the conjunctiva with 0.1 mg/ml PLA (50) did not change the production of formazan compared to that without PLA (50), indicating that the conjunctival viability is not significantly affected by PLA (50). Our findings suggest that PLA may be useful in promoting the ocular delivery of hydrophilic drugs without producing significant epithelial damage.
我们研究了聚-L-精氨酸(PLA)是否能改善亲水性化合物(异硫氰酸荧光素标记的葡聚糖(分子量3800,FD-4)和吡哆胺)透过眼表组织的渗透情况。将日本白兔的角膜、结膜或结膜/巩膜复合物样本安装在尤斯灌流小室中,以测量FD-4和吡哆胺的渗透以及跨上皮电阻(TEER)。分别通过按时间顺序监测TEER和MTT法评估结膜的完整性和活力。添加PLA(分子量38 kDa,0.1 mg/ml的PLA(50))后,角膜、结膜和结膜/巩膜复合物中FD-4的渗透系数(Papp)分别增加了6.81倍、9.78倍和7.91倍。在存在PLA(50)的情况下,吡哆胺的Papp也分别增加了7.98倍、4.67倍和8.31倍。在所有组织中均观察到相应的TEER降低。然而,用新鲜的碳酸氢林格液替换黏膜液120分钟后,结膜中降低的TEER已恢复至约70%。MTT分析结果表明,与未使用PLA(50)相比,用0.1 mg/ml PLA(50)处理结膜不会改变甲臜的产生,这表明结膜活力不受PLA(50)的显著影响。我们的研究结果表明,PLA可能有助于促进亲水性药物的眼部给药,而不会产生明显的上皮损伤。