1
with time. The non-target tissue uptakes were very low. The signicant tumor localization, good retention and high target/non-target ratios of the complex exhibited favorable properties, suggesting 99m Tc-HYNIC- DG would be a promising candidate for tumor imaging. http://dx.doi.org/10.1016/j.nucmedbio.2014.05.042 37 Copolymer based radiotracers for liver ASGP-R targeted SPECT imaging Chang Liu a,b , Zhide Guo a , Pu Zhang a,b , Xianzhong Zhang a a CMITM, SKLVD, School of Public Health, Xiamen University, China b College of Chemistry, Beijing Normal University, China Asialoglycoprotein receptor (ASGP-R) is a well-known cell surface receptor specic for liver, present in normal mammalian hepatocyte membrane. Detection of its number and activity is an excellent method for evaluating the status and function of liver [1]. Copolymer based radiotracers with controllable ratio of targeting moiety (VLA) were developed as potential ASGP-R targeted imaging agents. P(VLA-co-VNI) were synthesized by free-radical copolymerization and lyophilized for 99m Tc instant kit labeling with high yield and RCP (N 99%) [2]. Static 3D SPECT/CT images were acquired at 1 h and 4 h after injection of 18 MBq series of 99m Tc-tracers in normal mice. The results showed that liver has specic high uptake at 1 h p.i. with good retention. (NSFC (21271030) and 973 Program of China (2014CB744503)). References [1] Yang WJ, et al. J Nucl Med 2011;52:97885. [2] Liu C, et al. Nucl Med Biol 2014 [accepted]. http://dx.doi.org/10.1016/j.nucmedbio.2014.05.122 38 New GRPR-antagonists mimicking [ 99m Tc]Demobesin 1 T. Maina a , A. Nikolopoulou a , R. Cescato b , D. Charalambidis a , B. Waser b , E. Ketani a , J.C. Reubi b , B.A. Nock a a NCSR Demokritos/GRNCSR Demokritos/GR b University of Bern/CHUniversity of Bern/CH We have previously reported on the GRPR-antagonist [ 99m Tc] Demobesin 1, [ 99m Tc]DB1 ( 99m Tc-[N4-dig-DPhe 6 ,Leu-NHEt 13 ]BBN(613)), which shows superior biological prole, and in particular a higher uptake in PC-3 xenografts in mice, than analogous agonist-based 99m Tc- radioligands. We now present a small library of [ 99m Tc]DB1 mimics by performing strategic structural modications in: a) the spacer ([ 99m Tc] DB2, [ 99m Tc]DB7 and [ 99m Tc]DB8), b) the C-terminus ([ 99m Tc]DB9 and [ 99m Tc]DB10) and c) the peptide chain ([ 99m Tc]DB11 and [ 99m Tc]DB12). The effects of these modications were studied in PC-3 cells and mouse models. All analogs showed sub-nM afnity for the human GRPR with DB8 and DB10 ranking rst in afnity. Both analogs behaved as potent GRPR-antagonists during an immunouorescence microscopybased receptor internalization assay. During incubation in PC-3 cells (2 h/ 37 °C) all 99m Tc-radiopeptides remained bound on the cell membrane, but [ 99m Tc]DB8 displayed the highest uptake by the cells. In mice bearing PC-3 tumors, all 99m Tc-radiopeptides showed GRPR-specic tumor uptake and rapidly cleared from background tissues, including the GRPR-rich pancreas, via the kidneys into urine. [ 99m Tc]DB8 displayed the highest tumor uptake (28.8 ± 4.1% ID/g at 1 h pi). Most importantly, the tumor uptake remained impressively high even after 24 h pi (16.3 ± 1.8% ID/g), well surpassing the tumor retention of the lead compound [ 99m Tc]DB1 (5.4 ± 0.7% ID/g at 24 h pi). http://dx.doi.org/10.1016/j.nucmedbio.2014.05.066 39 New [ 99m Tc(CO) 3 (NSN)] + chelate conjugated to a somatostatin receptor-seeking peptide George Makris a , Lauren Radford b , Fabio Gallazzi b , Silvia Jurisson b , Heather Hennkens b , Dionysia Papagiannopoulou a a Aristotle University of Thessaloniki, Greece b University of MO-Columbia, USA Chelating 99m Tc to a somatostatin receptor (SSTR)-seeking peptide may allow targeted delivery of this attractive diagnostic radionuclide to neuroendocrine cancers that over-express SSTRs. We present here the synthesis of a novel tridentate bifunctional chelator, 3-(2-aminoethylthio)-3-(1H-imidazol-4-yl)propanoic acid L, its pyr- rolidine amide derivative Lpyr, and the Lsst 2 -ANT bioconjugate, where the SSTR-seeking peptide sst 2 -ANT (4-NO 2 -Phe-c(DCys-Tyr- DTrp-Lys-Thr-Cys)-DTyr-NH 2 ) is linked to L via the N-terminus. The chelator L coordinates via the imidazole N, thioether S, and amine N donor atoms to yield cationic fac-[Tc/Re(CO) 3 (NSN)] + type com- plexes. The complexes ReL, ReLpyr and ReLsst 2 -ANT were synthe- sized in high yield and were characterized spectroscopically. The tracer complexes 99m TcL, 99m TcLpyr and 99m TcLsst 2 -ANT were synthesized quantitatively, and their identities were conrmed by HPLC co-elution with their Re analogues. In vitro stability studies of both 99m TcL and 99m TcLpyr in histidine and cysteine showed that the complexes remained intact (N 97%) after 24 h incubations. Furthermore, rat urine analysis of 99m TcLpyr showed that the radiocomplex was excreted intact after 46 h. Initial in vitro stability of 99m TcLsst 2 -ANT in histidine and cysteine was also high (N 90% intact over 24 h), demonstrating the potential of further evaluation of this new bioconjugate for targeting SSTR-rich neuroendocrine tumors. http://dx.doi.org/10.1016/j.nucmedbio.2014.05.074 40 Synthesis and biological evaluation of novel bone-seeking [Re/ 99m Tc(CO) 3 ] complexes George Makris a , Ioannis Pirmettis b , Minas S. Papadopoulos b , Dionysia Papagiannopoulou a a Aristotle University of Thessaloniki, Greece b INRASTES, NCSR Demokritos, Greece Radiolabelled bisphosphonates such us 99m Tc-MDP and 186 Re/ 188 Re- ΗΕDP bind to bone matrix carrying γ or β radiation and are used for bone imaging or bone pain palliation, respectively. In our work we Fig. 1. SPECT/CT images of 99m Tc-p(VLA-co-VNI)(Tricine)(TPPTS) with different ratio of VLA:VNI in normal mice. Abstracts 623

New [99mTc(CO)3(NSN)]+ chelate conjugated to a somatostatin receptor-seeking peptide

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with time. The non-target tissue uptakes were very low. The significanttumor localization, good retention and high target/non-target ratios ofthe complex exhibited favorable properties, suggesting 99mTc-HYNIC-DG would be a promising candidate for tumor imaging.

http://dx.doi.org/10.1016/j.nucmedbio.2014.05.042

37Copolymer based radiotracers for liver ASGP-R targetedSPECT imagingChang Liua,b, Zhide Guoa, Pu Zhanga,b, Xianzhong Zhanga

aCMITM, SKLVD, School of Public Health, Xiamen University, ChinabCollege of Chemistry, Beijing Normal University, China

Asialoglycoprotein receptor (ASGP-R) is a well-known cell surfacereceptor specific for liver, present in normal mammalian hepatocytemembrane. Detection of its number and activity is an excellent methodfor evaluating the status and function of liver [1]. Copolymer basedradiotracers with controllable ratio of targeting moiety (VLA) weredeveloped as potential ASGP-R targeted imaging agents. P(VLA-co-VNI)were synthesized by free-radical copolymerization and lyophilized for99mTc instant kit labeling with high yield and RCP (N99%) [2]. Static 3DSPECT/CT images were acquired at 1 h and 4 h after injection of 18 MBqseries of 99mTc-tracers in normalmice. The results showed that liver hasspecific high uptake at 1 h p.i. with good retention. (NSFC (21271030)and 973 Program of China (2014CB744503)).

References

[1] Yang WJ, et al. J Nucl Med 2011;52:978–85.[2] Liu C, et al. Nucl Med Biol 2014 [accepted].

http://dx.doi.org/10.1016/j.nucmedbio.2014.05.122

38New GRPR-antagonists mimicking [99mTc]Demobesin 1T. Mainaa, A. Nikolopouloua, R. Cescatob, D. Charalambidisa,B. Waserb, E. Ketania, J.C. Reubib, B.A. Nocka

aNCSR “Demokritos”/GRNCSR “Demokritos”/GRbUniversity of Bern/CHUniversity of Bern/CH

We have previously reported on the GRPR-antagonist [99mTc]Demobesin 1, [99mTc]DB1 (99mTc-[N4′-dig-DPhe6,Leu-NHEt13]BBN(6–13)), which shows superior biological profile, and in particular a higheruptake in PC-3 xenografts inmice, than analogous agonist-based 99mTc-radioligands. We now present a small library of [99mTc]DB1 mimics byperforming strategic structural modifications in: a) the spacer ([99mTc]DB2, [99mTc]DB7 and [99mTc]DB8), b) the C-terminus ([99mTc]DB9 and[99mTc]DB10) and c) the peptide chain ([99mTc]DB11 and [99mTc]DB12).

The effects of these modifications were studied in PC-3 cells and mousemodels. All analogs showed sub-nM affinity for the human GRPR withDB8 and DB10 ranking first in affinity. Both analogs behaved as potentGRPR-antagonists during an immunofluorescence microscopy–basedreceptor internalization assay. During incubation in PC-3 cells (2 h/37 °C) all 99mTc-radiopeptides remained bound on the cell membrane,but [99mTc]DB8 displayed the highest uptake by the cells. In micebearing PC-3 tumors, all 99mTc-radiopeptides showed GRPR-specifictumor uptake and rapidly cleared from background tissues, includingthe GRPR-rich pancreas, via the kidneys into urine. [99mTc]DB8displayed the highest tumor uptake (28.8 ± 4.1% ID/g at 1 h pi). Mostimportantly, the tumor uptake remained impressively high even after24 h pi (16.3 ± 1.8% ID/g), well surpassing the tumor retention of thelead compound [99mTc]DB1 (5.4 ± 0.7% ID/g at 24 h pi).

http://dx.doi.org/10.1016/j.nucmedbio.2014.05.066

39New [99mTc(CO)3(NSN)]+ chelate conjugated to a somatostatinreceptor-seeking peptideGeorge Makrisa, Lauren Radfordb, Fabio Gallazzib, Silvia Jurissonb,Heather Hennkensb, Dionysia Papagiannopouloua

aAristotle University of Thessaloniki, GreecebUniversity of MO-Columbia, USA

Chelating 99mTc to a somatostatin receptor (SSTR)-seekingpeptide may allow targeted delivery of this attractive diagnosticradionuclide to neuroendocrine cancers that over-express SSTRs. Wepresent here the synthesis of a novel tridentate bifunctional chelator,3-(2-aminoethylthio)-3-(1H-imidazol-4-yl)propanoic acid L, its pyr-rolidine amide derivative Lpyr, and the Lsst2-ANT bioconjugate,where the SSTR-seeking peptide sst2-ANT (4-NO2-Phe-c(DCys-Tyr-DTrp-Lys-Thr-Cys)-DTyr-NH2) is linked to L via the N-terminus. Thechelator L coordinates via the imidazole N, thioether S, and amine Ndonor atoms to yield cationic fac-[Tc/Re(CO)3(NSN)]+ type com-plexes. The complexes ReL, ReLpyr and ReLsst2-ANT were synthe-sized in high yield and were characterized spectroscopically. Thetracer complexes 99mTcL, 99mTcLpyr and 99mTcLsst2-ANT weresynthesized quantitatively, and their identities were confirmed byHPLC co-elution with their Re analogues. In vitro stability studies ofboth 99mTcL and 99mTcLpyr in histidine and cysteine showed that thecomplexes remained intact (N97%) after 24 h incubations. Furthermore,rat urine analysis of 99mTcLpyr showed that the radiocomplex wasexcreted intact after 4–6 h. Initial in vitro stability of 99mTcLsst2-ANT inhistidine and cysteine was also high (N90% intact over 24 h),demonstrating the potential of further evaluation of this newbioconjugate for targeting SSTR-rich neuroendocrine tumors.

http://dx.doi.org/10.1016/j.nucmedbio.2014.05.074

40Synthesis and biological evaluation of novel bone-seeking[Re/99mTc(CO)3] complexesGeorge Makrisa, Ioannis Pirmettisb, Minas S. Papadopoulosb,Dionysia Papagiannopouloua

aAristotle University of Thessaloniki, GreecebINRASTES, NCSR “Demokritos”, Greece

Radiolabelled bisphosphonates such us 99mTc-MDP and 186Re/188Re-ΗΕDP bind to bone matrix carrying γ or β radiation and are used forbone imaging or bone pain palliation, respectively. In our work we

Fig. 1. SPECT/CT images of 99mTc-p(VLA-co-VNI)(Tricine)(TPPTS) with different ratioof VLA:VNI in normal mice.

Abstracts 623