PURPOSE: The aims were to quantify the in vivo time-course between the oral dose, the plasma and brain exposure and the inhibitory effect on Amyloid β (Aβ) in brain and cerebrospinal fluid, and to establish the correlation between in vitro and in vivo potency of novel β-secretase (BACE1) inhibitors. METHODS: BACE1-mediated inhibition of Aβ was quantified in in vivo dose- and/or time-response studies and in vitro in SH-SY5Y cells, N2A cells, and primary cortical neurons (PCN). An indirect response model with inhibition on Aβ production rate was used to estimate unbound in vivo IC 50 in a population pharmacokinetic-pharmacodynamic modeling approach. RESULTS: Estimated in vivo inhibitory potencies varied between 1 and 1,000 nM. The turnover half-life of Aβ40 in brain was predicted to be 0.5 h in mouse and 1 h in guinea pig. An excellent correlation between PCN and in vivo potency was observed. Moreover, a strong correlation in potency was found between human SH-SY5Y cells and mouse PCN, being 4.5-fold larger in SH-SY5Y cells. CONCLUSION: The strong in vivo-in vitro correlation increased the confidence in using human cell lines for screening and optimization of BACE1 inhibitors. This can optimize the design and reduce the number of preclinical in vivo effect studies.
PURPOSE: The aims were to quantify the in vivo time-course between the oral dose, the plasma and brain exposure and the inhibitory effect on Amyloid β (Aβ) in brain and cerebrospinal fluid, and to establish the correlation between in vitro and in vivo potency of novel β-secretase (BACE1) inhibitors. METHODS:BACE1-mediated inhibition of Aβ was quantified in in vivo dose- and/or time-response studies and in vitro in SH-SY5Y cells, N2A cells, and primary cortical neurons (PCN). An indirect response model with inhibition on Aβ production rate was used to estimate unbound in vivo IC 50 in a population pharmacokinetic-pharmacodynamic modeling approach. RESULTS: Estimated in vivo inhibitory potencies varied between 1 and 1,000 nM. The turnover half-life of Aβ40 in brain was predicted to be 0.5 h in mouse and 1 h in guinea pig. An excellent correlation between PCN and in vivo potency was observed. Moreover, a strong correlation in potency was found between humanSH-SY5Y cells and mousePCN, being 4.5-fold larger in SH-SY5Y cells. CONCLUSION: The strong in vivo-in vitro correlation increased the confidence in using human cell lines for screening and optimization of BACE1 inhibitors. This can optimize the design and reduce the number of preclinical in vivo effect studies.
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Authors: S Sinha; J P Anderson; R Barbour; G S Basi; R Caccavello; D Davis; M Doan; H F Dovey; N Frigon; J Hong; K Jacobson-Croak; N Jewett; P Keim; J Knops; I Lieberburg; M Power; H Tan; G Tatsuno; J Tung; D Schenk; P Seubert; S M Suomensaari; S Wang; D Walker; J Zhao; L McConlogue; V John Journal: Nature Date: 1999-12-02 Impact factor: 49.962
Authors: Susanna Eketjäll; Juliette Janson; Karin Kaspersson; Anna Bogstedt; Fredrik Jeppsson; Johanna Fälting; Samantha Budd Haeberlein; Alan R Kugler; Robert C Alexander; Gvido Cebers Journal: J Alzheimers Dis Date: 2016 Impact factor: 4.472
Authors: Naidong Ye; Scott A Monk; Pankaj Daga; David M Bender; Laura B Rosen; Jamie Mullen; Margaret C Minkwitz; Alan R Kugler Journal: Clin Pharmacol Drug Dev Date: 2018-01-10
Authors: Jeanine E Ballard; Parul Pall; Joshua Vardigan; Fuqiang Zhao; Marie A Holahan; Richard Kraus; Yuxing Li; Darrell Henze; Andrea Houghton; Christopher S Burgey; Christopher Gibson Journal: Pharm Res Date: 2020-09-04 Impact factor: 4.200
Authors: Francesca Pistollato; Elan L Ohayon; Ann Lam; Gillian R Langley; Thomas J Novak; David Pamies; George Perry; Eugenia Trushina; Robin S B Williams; Alex E Roher; Thomas Hartung; Stevan Harnad; Neal Barnard; Martha Clare Morris; Mei-Chun Lai; Ryan Merkley; P Charukeshi Chandrasekera Journal: Oncotarget Date: 2016-06-28