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Updated: Nov 29, 2025

Quantitative Autoradiographic Method for Determination of Regional Rates of Cerebral Protein Synthesis In Vivo
Published on: June 28, 2019
Simple methodology for ensuring the precision of measuring radioactivity at low concentrations in very small tissues
Takanori Hironaka1, Kazuhiro Inazawa1, Yukari Tanaka2
1Drug Metabolism and Pharmacokinetics, Research Laboratory for Development, Shionogi & Co., Ltd., Toyonaka, Osaka, Japan; Development of Drug Safety & DMPK, Research Area for Candidate Selection, Shionogi TechnoAdvance Research Co., Ltd., Toyonaka, Osaka, Japan.
Abstract:
Quantitative whole-body autoradiography (QWBA) is largely used to evaluate tissue distribution of small molecule drugs. In QWBA, radioactivity is measured as the intensity obtained from the autoradiogram. It is known that lower intensity per a region of interest (ROI) or smaller size of ROI increases the variability of intensity. In fact, as some tissues are very small (e.g., the choroidea), ensuring reliability on the intensity for measuring radioactivity in these tissues is difficult in case of under- or over-estimation of radioactivity concentration owing to their variation of low radioactivity intensity of ROI. We thus analyzed the relationships between the size, intensity, and precision of ROI to determine the statistically significant lower limit of quantification (LLOQ) in very small tissues. To investigate the difference in correlation between the radiation source (commercial planar radiation standard [com-ST] and self-made radiation standard [self-ST] consisting of radioactive compounds and matrices), apparatus, or setting environment of the apparatus, correlation analysis was conducted under various conditions. Our results revealed that LLOQ can be calculated by simply using the correlation equation because a common relationship was observed between self-ST, which is used in QWBA, and com-ST. This methodology was thus considered valuable for ensuring LLOQ determination in QWBA.

