Caliph Suzanne M, Faassen Fried W, Porter Christopher J H
Drug Delivery, Disposition and Dynamics, Monash Institute of Pharmaceutical Sciences, Monash University (Parkville campus), Parkville, Vic, Australia.
J Pharm Pharmacol. 2014 Oct;66(10):1377-87. doi: 10.1111/jphp.12268. Epub 2014 May 12.
To assess the role of intestinal lymphatic transport in the oral bioavailability and brain deposition of a highly lipophilic, centrally acting drug candidate (Org 49209) in comparison to cholesterol, a close structural analogue.
The intestinal lymphatic transport of Org 49209 and cholesterol was assessed in lymph-cannulated anaesthetised rats and total bioavailability evaluated in non-lymph-cannulated animals. Parallel groups were employed to examine the brain deposition of Org 49209 after intraduodenal and intraperitoneal administrations.
The contribution of intestinal lymphatic transport to total bioavailability was similar for Org 49209 and cholesterol (approximately 40% of the absorbed dose). However, the oral bioavailability of Org 49209 was significantly (fourfold) lower than cholesterol. Brain deposition of Org 49209 was similar after intraduodenal and intraperitoneal administration. Systemic exposure, however, was higher after intraduodenal administration and brain-to-plasma ratios were therefore reduced.
The oral bioavailability of Org 49209 was significantly lower than that of its structural analogue cholesterol; however, intestinal lymphatic transport played a similar role in oral bioavailability for both compounds. Brain to plasma ratios were lower after intraduodenal versus intraperitoneal administration, suggesting that drug association with intestinal lymph lipoproteins may limit central nervous system access for highly lipophilic drugs.
与结构类似的胆固醇相比,评估肠道淋巴转运在一种高亲脂性中枢作用候选药物(Org 49209)口服生物利用度及脑内沉积中的作用。
在淋巴管插管的麻醉大鼠中评估Org 49209和胆固醇的肠道淋巴转运,并在非淋巴管插管动物中评估总生物利用度。采用平行组研究十二指肠内和腹腔内给药后Org 49209的脑内沉积情况。
Org 49209和胆固醇的肠道淋巴转运对总生物利用度的贡献相似(约占吸收剂量的40%)。然而,Org 49209的口服生物利用度显著低于胆固醇(低四倍)。十二指肠内和腹腔内给药后Org 49209的脑内沉积相似。然而,十二指肠内给药后的全身暴露更高,因此脑-血浆比降低。
Org 49209的口服生物利用度显著低于其结构类似物胆固醇;然而,肠道淋巴转运在两种化合物的口服生物利用度中发挥了相似作用。十二指肠内给药后脑-血浆比低于腹腔内给药,这表明药物与肠道淋巴脂蛋白的结合可能会限制高亲脂性药物进入中枢神经系统。