HEDTMP (N-(2-hydroxyethyl) ethlenediamine-1,1,2-tri(methylene phosphonic acid)) was labeled with 153Sm. The formation condition, stability, rabbit bone imaging and mouse bio-distribution of 153Sm -HEDTMP were investig...HEDTMP (N-(2-hydroxyethyl) ethlenediamine-1,1,2-tri(methylene phosphonic acid)) was labeled with 153Sm. The formation condition, stability, rabbit bone imaging and mouse bio-distribution of 153Sm -HEDTMP were investigated. The results showed that weak basic media and high ligand’s concentration were favorable to form 153Sm-HEDTMP, and neutral or weak basic media increase the stability of 153Sm-HEDTMP. And the higher the con- centration of HEDTMP was, the more stable the labeling complex was. Bio-distribution study indicated the uptake of 153Sm-HEDTMP in skeleton was high ((25.68±1.22)ID%/g bone at 3 h post injection and (16.56±1.01)ID%/g bone at 48 h post injection), while the non-target tissue uptake and retention were relatively low, so 153Sm-HEDTMP is a promising bone tumor therapeutic agent.展开更多
Tin-117m(t1/2 14d; γ 159keV, 86%) is an ideal tracer for studyingbiological behavior of tin compounds as well as for developing clinically-useful radio-pharmaceuticals. It had been reported that Sn-117m[4+] DTPA has ...Tin-117m(t1/2 14d; γ 159keV, 86%) is an ideal tracer for studyingbiological behavior of tin compounds as well as for developing clinically-useful radio-pharmaceuticals. It had been reported that Sn-117m[4+] DTPA has unexpectedlyhigh bone uptake and bone-to-blood ratio, and is potentially useful as an agent forskeletal scintigraphy and radiotherapy of bone tumors. In this work, HEDTMP [N-(2-hydroxyethyl) ethlenediamine-1,1,2-tri (methylene phosphonic acid)] was synthesized.Let it form complex with 117mSn. The formation conditions, stability and distributioncoefficient between oil and water of the complex were investigated.展开更多
Tin is an essential ingredient of most technetium-99m radiopharmaceuticals but its in-vivo distribution and long-term fate are not well understood. This work describes distribution in mice of several tin-117m labeled ...Tin is an essential ingredient of most technetium-99m radiopharmaceuticals but its in-vivo distribution and long-term fate are not well understood. This work describes distribution in mice of several tin-117m labeled compounds. The results indicate that stannic-HEDTMP appears to be the best overall bone localizing agent with very low blood, muscle, kidney, or liver uptake, and its binding to bone is higher than that of tin-117m-DTPA, which make it potentially useful as an agent for skeletal scintigraphy and radiotherapy of bone tumors.展开更多
文摘HEDTMP (N-(2-hydroxyethyl) ethlenediamine-1,1,2-tri(methylene phosphonic acid)) was labeled with 153Sm. The formation condition, stability, rabbit bone imaging and mouse bio-distribution of 153Sm -HEDTMP were investigated. The results showed that weak basic media and high ligand’s concentration were favorable to form 153Sm-HEDTMP, and neutral or weak basic media increase the stability of 153Sm-HEDTMP. And the higher the con- centration of HEDTMP was, the more stable the labeling complex was. Bio-distribution study indicated the uptake of 153Sm-HEDTMP in skeleton was high ((25.68±1.22)ID%/g bone at 3 h post injection and (16.56±1.01)ID%/g bone at 48 h post injection), while the non-target tissue uptake and retention were relatively low, so 153Sm-HEDTMP is a promising bone tumor therapeutic agent.
文摘Tin-117m(t1/2 14d; γ 159keV, 86%) is an ideal tracer for studyingbiological behavior of tin compounds as well as for developing clinically-useful radio-pharmaceuticals. It had been reported that Sn-117m[4+] DTPA has unexpectedlyhigh bone uptake and bone-to-blood ratio, and is potentially useful as an agent forskeletal scintigraphy and radiotherapy of bone tumors. In this work, HEDTMP [N-(2-hydroxyethyl) ethlenediamine-1,1,2-tri (methylene phosphonic acid)] was synthesized.Let it form complex with 117mSn. The formation conditions, stability and distributioncoefficient between oil and water of the complex were investigated.
文摘Tin is an essential ingredient of most technetium-99m radiopharmaceuticals but its in-vivo distribution and long-term fate are not well understood. This work describes distribution in mice of several tin-117m labeled compounds. The results indicate that stannic-HEDTMP appears to be the best overall bone localizing agent with very low blood, muscle, kidney, or liver uptake, and its binding to bone is higher than that of tin-117m-DTPA, which make it potentially useful as an agent for skeletal scintigraphy and radiotherapy of bone tumors.