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Characterisation of radioiodinated flavonoid derivatives for SPECT imaging of cerebral prion deposits

Authors :
Fuchigami, Takeshi
Yamashita, Yuki
Kawasaki, Masao
Ogawa, Ayaka
Haratake, Mamoru
Atarashi, Ryuichiro
Sano, Kazunori
Nakagaki, Takehiro
Ubagai, Kaori
Ono, Masahiro
Yoshida, Sakura
Nishida, Noriyuki
Nakayama, Morio
Fuchigami, Takeshi
Yamashita, Yuki
Kawasaki, Masao
Ogawa, Ayaka
Haratake, Mamoru
Atarashi, Ryuichiro
Sano, Kazunori
Nakagaki, Takehiro
Ubagai, Kaori
Ono, Masahiro
Yoshida, Sakura
Nishida, Noriyuki
Nakayama, Morio
Publication Year :
2015

Abstract

Prion diseases are fatal neurodegenerative diseases characterised by deposition of amyloid plaques containing abnormal prion protein aggregates (PrPSc). This study aimed to evaluate the potential of radioiodinated flavonoid derivatives for single photon emission computed tomography (SPECT) imaging of PrPSc. In vitro binding assays using recombinant mouse PrP (rMoPrP) aggregates revealed that the 4-dimethylamino-substituted styrylchromone derivative (SC-NMe2) had higher in vitro binding affinity (Kd = 24.5 nM) and capacity (Bmax = 36.3 pmol/nmol protein) than three other flavonoid derivatives (flavone, chalcone, and aurone). Fluorescent imaging using brain sections from mouse-adapted bovine spongiform encephalopathy (mBSE)-infected mice demonstrated that SC-NMe2 clearly labelled PrPSc-positive prion deposits in the mice brain. Two methoxy SC derivatives, SC-OMe and SC-(OMe)2, also showed high binding affinity for rMoPrP aggregates with Ki values of 20.8 and 26.6 nM, respectively. In vitro fluorescence and autoradiography experiments demonstrated high accumulation of [125I]SC-OMe and [125I]SC-(OMe)2 in prion deposit-rich regions of the mBSE-infected mouse brain. SPECT/computed tomography (CT) imaging and ex vivo autoradiography demonstrated that [123I]SC-OMe showed consistent brain distribution with the presence of PrPSc deposits in the mBSE-infected mice brain. In conclusion, [123I]SC-OMe appears a promising SPECT radioligand for monitoring prion deposit levels in the living brain.<br />Scientific Reports, 5, 18440; 2015

Details

Database :
OAIster
Notes :
application/pdf, English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1375206474
Document Type :
Electronic Resource