4.7 Article

Preclinical Characterization of 5-Amino-4-Oxo-[6-11C] Hexanoic Acid as an Imaging Probe to Estimate Protoporphyrin IX Accumulation Induced by Exogenous Aminolevulinic Acid

Journal

JOURNAL OF NUCLEAR MEDICINE
Volume 55, Issue 10, Pages 1671-1677

Publisher

SOC NUCLEAR MEDICINE INC
DOI: 10.2967/jnumed.114.145086

Keywords

5-aminolevulinic acid; photodynamic therapy; sonodynamic therapy; aminolevulinic acid dehydratase; C-11-MALA

Funding

  1. MEXT [KAKENHI 23510289, 24591803, 25861136]
  2. Japan Society for the Promotion of Science
  3. Grants-in-Aid for Scientific Research [26670642, 25861136, 24591803] Funding Source: KAKEN

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Preoperative noninvasive imaging to estimate the quantity and spatial distribution of protoporphyrin IX (PpIX) accumulation in tumors induced by 5-aminolevulinic acid (ALA) administration is expected to improve the efficacy of ALA-based fluorescence-guided resection and photo- and sonodynamic therapies. PpIX synthesis from exogenous ALA has been reported to be regulated by ALA influx or ALA dehydratase (ALAD) activity, which catalyzes the first step of the synthesis. In this study, we characterized the properties of a C-11-labeled ALA analog, 5-amino-4-oxo-[6-C-11]hexanoic acid (C-11-MALA), as a PET tracer to estimate PpIX accumulation. Methods: In vitro uptake of C-11-MALA and H-3-ALA was determined in 5 tumor cell lines after 10-min incubation with each tracer at 37 degrees C. The expression levels of ALAD were determined by Western blot analysis. In vivo distribution and dynamic PET studies were conducted in tumor-bearing mice. In vitro and in vivo accumulation of ALA-induced PpIX was determined by measuring fluorescence in extracts of cells or tumors. Results: In vitro uptake of C-11-MALA in 5 tumor cell lines was correlated with ALAD expression levels and PpIX accumulation. In vivo biodistribution and dynamic PET studies showed that C-11-MALA was rapidly incorporated into tumors, and the tumor-to-muscle ratio of C-11-MALA at 1 min after injection was significantly correlated with that of H-3-ALA. 11,C-MALA in tumors was continuously decreased thereafter, and the elimination rate of C-11-MALA from AsPC-1 tumors with the highest ALAD expression level was slower than from other tumors with lower expression levels. These results suggest that the influx and intracellular retention of C-11-MALA reflect ALA influx and ALAD expression levels, respectively. Tumor accumulation of C-11-MALA at 60 min after injection was strongly correlated with PpIX accumulation in tumor tissues. Conclusion: C-11-MALA PET has the potential to noninvasively estimate the quantitative and spatial accumulation of exogenous ALA-induced PpIX.

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