One novel complex of ()99mTc-salicylidene-tyrosine Schiff base was designed and synthesized, and its biodistribution was investigated. The theoretical simulation revealed that the cis- and trans-(isomers) might co...One novel complex of ()99mTc-salicylidene-tyrosine Schiff base was designed and synthesized, and its biodistribution was investigated. The theoretical simulation revealed that the cis- and trans-(isomers) might co-exist in aqueous solution. A yield higher than 90% under the optimal condition of synthesis was obtained. Good water-solubility was demonstrated. Very little uptakes in muscle, brain, heart and S-180 sarcoma, as well as very rapid blood clearance were revealed in mice. Good accumulation in bone was shown. At 1 h postinjection the bone uptake was 10.9%ID/g. At 3 and 5 h postinjection, bone-to-muscle ratios were 19.0 and 9.3, and bone-to-blood ratios were 31.6 and 28.9, respectively. The result indicates a bone imaging potency of the complex.展开更多
To investigate a new kind of tumor tracer ^99mTc-YIGSR developed from a five amino structure (YIGSR) of the Laminin -chain, which can bind to the laminin receptors of tumor specifically, and radiolabeled with MAG3. ...To investigate a new kind of tumor tracer ^99mTc-YIGSR developed from a five amino structure (YIGSR) of the Laminin -chain, which can bind to the laminin receptors of tumor specifically, and radiolabeled with MAG3. (1) Preparation of the ^99mTc-YIGSR probe: with S-Acetly-NH3- MAG3as the chelator and with proper reductants YIGSR was labeled with ^99mTc;(2) Cell culture and viability measurement: EAC was maintained in RPMI 1640 supplemented with calf serum; the trypan blue exclusion was applied to calculate the cell viability; (3) Study of the cell dynamic: The EAC's uptake of ^99mTc-YIGSR and ^99mTc-MIBI was observed at 37℃ and 22 ℃, respectively. (1) The labeling efficiencies of ^99mTc-YIGSR and^99mTc-MIBI were (62±3) % and (96±2) %, respectively; (2) The cell viability was declined with time of incubation; (3) At 37 ℃, the EAC'S uptake of ^99mTc YIGSR and^99mTc-MIBI reached the peak of (43. 16±2.4) % and (24.4±1.8) % at 60 min, respectively; and at 22 ℃, the highest uptake was (26.5±2. 1) % and (9.47±1.9) % at 60 min, respectively. The in vitro study suggests that ^99mTc-YIGSR is superior to ^99mTc-MIBI in cell uptake and has potential value in tumor imaging.展开更多
文摘One novel complex of ()99mTc-salicylidene-tyrosine Schiff base was designed and synthesized, and its biodistribution was investigated. The theoretical simulation revealed that the cis- and trans-(isomers) might co-exist in aqueous solution. A yield higher than 90% under the optimal condition of synthesis was obtained. Good water-solubility was demonstrated. Very little uptakes in muscle, brain, heart and S-180 sarcoma, as well as very rapid blood clearance were revealed in mice. Good accumulation in bone was shown. At 1 h postinjection the bone uptake was 10.9%ID/g. At 3 and 5 h postinjection, bone-to-muscle ratios were 19.0 and 9.3, and bone-to-blood ratios were 31.6 and 28.9, respectively. The result indicates a bone imaging potency of the complex.
文摘To investigate a new kind of tumor tracer ^99mTc-YIGSR developed from a five amino structure (YIGSR) of the Laminin -chain, which can bind to the laminin receptors of tumor specifically, and radiolabeled with MAG3. (1) Preparation of the ^99mTc-YIGSR probe: with S-Acetly-NH3- MAG3as the chelator and with proper reductants YIGSR was labeled with ^99mTc;(2) Cell culture and viability measurement: EAC was maintained in RPMI 1640 supplemented with calf serum; the trypan blue exclusion was applied to calculate the cell viability; (3) Study of the cell dynamic: The EAC's uptake of ^99mTc-YIGSR and ^99mTc-MIBI was observed at 37℃ and 22 ℃, respectively. (1) The labeling efficiencies of ^99mTc-YIGSR and^99mTc-MIBI were (62±3) % and (96±2) %, respectively; (2) The cell viability was declined with time of incubation; (3) At 37 ℃, the EAC'S uptake of ^99mTc YIGSR and^99mTc-MIBI reached the peak of (43. 16±2.4) % and (24.4±1.8) % at 60 min, respectively; and at 22 ℃, the highest uptake was (26.5±2. 1) % and (9.47±1.9) % at 60 min, respectively. The in vitro study suggests that ^99mTc-YIGSR is superior to ^99mTc-MIBI in cell uptake and has potential value in tumor imaging.