TY - JOUR
T1 - Retina-to-Blood Transport of 1-Methyl-4-Phenylpyridinium Involves Carrier-Mediated Process at the Blood-Retinal Barrier
AU - Kubo, Yoshiyuki
AU - Yamamoto, Masakazu
AU - Matsunaga, Kensuke
AU - Usui, Takuya
AU - Akanuma, Shin ichi
AU - Hosoya, Ken ichi
N1 - Publisher Copyright:
© 2017 American Pharmacists Association®
PY - 2017/9
Y1 - 2017/9
N2 - 1-Methyl-4-phenylpyridinium (MPP+) transport at the blood-retinal barrier (BRB) was investigated. The retinal uptake index estimated for [3H]MPP+ was similar to that of [3H]D-mannitol, and was insensitive to unlabeled MPP+, suggesting no positive evidence to support the involvement of carrier-mediated transport in the blood-to-retina transport of MPP+ at the BRB. A microdialysis investigation showed that the concentration of [3H]MPP+ in the vitreous humor decreased in a biexponential manner, and the rate constant for [3H]MPP+ elimination during the terminal phase was greater than that of [14C]D-mannitol. The inhibition study of [3H]MPP+ elimination showed its substrate specificity, suggesting that the retina-to-blood transport of MPP+ at the BRB involves a carrier-mediated process. The in vitro study with model cells showed the concentration-dependent transport of MPP+, supporting carrier-mediated MPP+ transport at the inner and outer BRB, and suggested membrane potential-sensitive and Na+-, Cl−-, and pH-insensitive MPP+ transport at the BRB. In the in vitro inhibition study, the transport of [3H]MPP+ was significantly inhibited by organic cations, and further reverse transcription PCR analysis and knockdown study suggested that the retina-to-blood transport of MPP+ at the BRB is carried out by an unknown transporter of which transport function is similar to plasma membrane monoamine transporter (PMAT/SLC29A4).
AB - 1-Methyl-4-phenylpyridinium (MPP+) transport at the blood-retinal barrier (BRB) was investigated. The retinal uptake index estimated for [3H]MPP+ was similar to that of [3H]D-mannitol, and was insensitive to unlabeled MPP+, suggesting no positive evidence to support the involvement of carrier-mediated transport in the blood-to-retina transport of MPP+ at the BRB. A microdialysis investigation showed that the concentration of [3H]MPP+ in the vitreous humor decreased in a biexponential manner, and the rate constant for [3H]MPP+ elimination during the terminal phase was greater than that of [14C]D-mannitol. The inhibition study of [3H]MPP+ elimination showed its substrate specificity, suggesting that the retina-to-blood transport of MPP+ at the BRB involves a carrier-mediated process. The in vitro study with model cells showed the concentration-dependent transport of MPP+, supporting carrier-mediated MPP+ transport at the inner and outer BRB, and suggested membrane potential-sensitive and Na+-, Cl−-, and pH-insensitive MPP+ transport at the BRB. In the in vitro inhibition study, the transport of [3H]MPP+ was significantly inhibited by organic cations, and further reverse transcription PCR analysis and knockdown study suggested that the retina-to-blood transport of MPP+ at the BRB is carried out by an unknown transporter of which transport function is similar to plasma membrane monoamine transporter (PMAT/SLC29A4).
KW - 1-methyl-4-phenylpyridinium
KW - blood-retinal barrier
KW - efflux
KW - organic cation
UR - http://www.scopus.com/inward/record.url?scp=85020092936&partnerID=8YFLogxK
U2 - 10.1016/j.xphs.2017.04.028
DO - 10.1016/j.xphs.2017.04.028
M3 - 学術論文
C2 - 28454745
AN - SCOPUS:85020092936
SN - 0022-3549
VL - 106
SP - 2583
EP - 2591
JO - Journal of Pharmaceutical Sciences
JF - Journal of Pharmaceutical Sciences
IS - 9
ER -