Synthesis and in vivo evaluation of the putative breast cancer resistance protein inhibitor [11C]methyl 4-((4-(2-(6,7-dimethoxy-1,2,3,4-tetrahydroisoquinolin-2-yl)ethyl)phenyl)amino-carbonyl)-2-(quinoline-2-carbonylamino)benzoate

假定的乳腺癌抗性蛋白抑制剂[11C]甲基4-((4-(2-(6,7-二甲氧基-1,2,3,4-四氢异喹啉-2-基)乙基)苯基)氨基羰基)-2-(喹啉-2-羰基氨基)苯甲酸酯的合成及体内评价

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作者:Severin Mairinger, Oliver Langer, Claudia Kuntner, Thomas Wanek, Jens P Bankstahl, Marion Bankstahl, Johann Stanek, Bernd Dörner, Florian Bauer, Christoph Baumgartner, Wolfgang Löscher, Thomas Erker, Markus Müller

Conclusion

Our data suggest that [(11)C]-1 preferably interacts with P-gp rather than BCRP at the murine BBB which questions its reported in vitro BCRP selectivity. Consequently, [(11)C]-1 appears to be unsuitable as a PET tracer to map cerebral BCRP expression.

Methods

Compound 1 was labelled with (11)C in its methyl ester function by reaction of the corresponding carboxylic acid 2 with [(11)C]methyl triflate. Positron emission tomography (PET) imaging of [(11)C]-1 was performed in wild-type, Mdr1a/b((-/-)), Bcrp1((-/-)) and Mdr1a/b((-/-))Bcrp1((-/-)) mice (n=3 per mouse type) and radiotracer metabolism was assessed in plasma and brain.

Results

Brain-to-plasma ratios of unchanged [(11)C]-1 were 4.8- and 10.3-fold higher in Mdr1a/b((-/-)) and in Mdr1a/b((-/-))Bcrp1((-/-)) mice, respectively, as compared to wild-type animals, but only modestly increased in Bcrp1((-/-)) mice. [(11)C]-1 was rapidly metabolized in vivo giving rise to a polar radiometabolite which was taken up into brain tissue.

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