4.4 Article

Synthesis and preliminary evaluation of a 99mTc-labeled folate-PAMAM dendrimer for FR imaging

期刊

CHEMICAL BIOLOGY & DRUG DESIGN
卷 89, 期 5, 页码 755-761

出版社

WILEY
DOI: 10.1111/cbdd.12899

关键词

folate receptor; KB tumor-bearing mice; PAMAM dendrimer; SPECT imaging; technetium-99m

资金

  1. National Key Basic Research Program of China [2014CB744503]
  2. National Natural Science Foundation of China [21271030, 81471707]
  3. Fundamental Research Funds for the Central Universities of China [20720150063, 2013SH009]

向作者/读者索取更多资源

Folate receptor is an ideal target for tumor-specific diagnostic and therapeutic. The aim of this study was to synthesize Tc-99m-labeled folate-polyamidoamine dendrimer modified with 2-hydrazinonicotinic acid (Tc-99m-HP(3)FA) for FR imaging. The Tc-99m-HP(3)FA conjugate was prepared using N-tris-(hydroxymethyl)-methylglycine and trisodium triphenylphosphine-3,3',3-trisulfonate as coligands. Physicochemical properties, in vitro cell uptake study, and in vivo micro-single-photon emission computed tomography/CT imaging were performed. The radiolabeled Tc-99m-HP(3)FA conjugate was prepared with high radiolabeling yield, good stability, and water solubility (logP = -1.70 +/- 0.21). In cell uptake study, the radiolabeled conjugate showed high uptakes in the FR-abundant KB cells and could be blocked significantly by excess folic acid. The 7721 cells which served as control group substantially had no uptakes. The results of micro-single-photon emission computed tomography/CT imaging exhibited that high accumulation of activity was found in FR-overexpressed KB tumor, and the tumor-to-muscle ratio was approximately 25.78, while, using free FA as inhibitor, the uptakes of Tc-99m-HP(3)FA in KB tumor and kidney were obviously inhibited. In summary, a new radiocompound was synthesized successfully with specific FR targeting ability. The feasibility of Tc-99m-HP(3)FA for early diagnosis of FR-positive tumors with non-invasive single-photon emission computed tomography imaging was demonstrated and the possibility of imaging-guided drug delivery based on multifunctional polyamidoamine will be studied in the future.

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