• 제목/요약/키워드: Bifunctional chelating agent

검색결과 5건 처리시간 0.026초

Preparation and characterization of Ga-68-deferoxamine to test the feasibility as a bifunctional chelating agent or a renal imaging radiopharmaceutical

  • Kim, Young Ju;Lee, Yun-Sang;Jeong, Jae Min
    • 대한방사성의약품학회지
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    • 제1권1호
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    • pp.31-37
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    • 2015
  • Chelating agents 1,4,7-triazacyclononanetriacetic acid (NOTA), 1,4,7,10-tetraazacyclododecane-1,4,7,10-tetraacetic acid (DOTA) and 30-amino-3,14,25-trihydroxy-3,9,14,20,25-penta-azatriacontane-2,10,13,21,24-pentaone (desferrioxamine, DFO) were labeled with $^{68}Ga$ and tested in vitro properties to check the feasibility of using DFO as a bifunctional chelating agent or renal imaging agent. The chelating agents of concentration $2{\mu}M$ were labeled with $^{68}Ga$ in 0.1 M HCl at pH 1.7-10.3 at room temperature and $80^{\circ}C$ and the optimal pH for labeling each chelating agent was found. And then, the chelating agents were labeled with $^{68}Ga$ in various concentration of chelating agents at optimal pH. The labeled chelating agents were subject to stability test in human serum and to binding studies to human red blood cell (RBC) and plasma protein. The optimal pH's of NOTA, DOTA and DFO for $^{68}Ga$-labeling were 4.4, 3.6 and 5.6, respectively. DFO ($10{\mu}M$) showed high labeling efficiency (>97%) at pH 5.6. All the labeled chelating agents showed high stability in human serum. $^{68}Ga$-DFO showed low RBC binding but significant amount was bound to plasma protein. The results demonstrated that $^{68}Ga$-DFO can be used as a bifunctional chelating agent but not as a renal imaging agent.

$Site-Specific^{99m}$Tc-Labeling of Antibody Using Dihydrazinoph-thalazine (DHZ) Conjugation to Fc Region of Heavy Chain

  • Jeong, Jae-Min;Lee, Jae-Tae;Paik, Chang-Hum;Kim, Dae-Kee;Lee, Dong-Soo;Chung, June-Key;Lee, Myung-Chul
    • Archives of Pharmacal Research
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    • 제27권9호
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    • pp.961-967
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    • 2004
  • The development of an antibody labeling method with $^{99m}$Tc is important for cancer imaging. Most bifunctional chelate methods for $^{99m}$Tc labeling of antibody incorporate a $^{99m}$Tc chelator through a linkage to lysine residue. In the present study, a novel site-specific $^{99m}$Tc labeling method at carbohydrate side chain in the Fc region of 2 antibodies (T101 and rabbit anti-human serum albumin antibody (RPAb)) using dihydrazinophthalazine (DHZ) which has 2 hydrazino groups was developed. The antibodies were oxidized with sodium periodate to pro-duce aldehyde on the Fc region. Then, one hydrazine group of DHZ was conjugated with an aldehyde group of antibody through the formation of a hydrazone. The other hydrazine group was used for labeling with $^{99m}$Tc. The number of conjugated DHZ was 1.7 per antibody. $^{99m}$Tc labeling efficiency was 46-85% for T101 and 67∼87% for RPAb. Indirect labeling with DHZ conjugated antibodies showed higher stability than direct labeling with reduced antibodies. High immunoreactivities were conserved for both indirectly and directly labeled antibodies. A biodistribution study found high blood activity related to directly labeled T1 01 at early time point as well as low liver activity due to indirectly labeled T101 at later time point. However, these findings do not affect practical use. No significantly different biodistribution was observed in the other organs. The research concluded that DHZ can be used as a site-specific bifunctional chelating agent for labeling antibody with $^{99m}$Tc. Moreover, $^{99m}$Tc labeled antibody via DHZ was found to have excellent chemical and biological properties for nuclear medicine imaging.edicine imaging.

항체의 Cyclic DTPA를 이용한 $^{99m}Tc$ 표지시 Polymer 형성과 체내 동태 변화 (Polymer Formation and Altered Biodistribution of IgG Labeled with $^{99m}Tc$ and Cyclic DTPA)

  • 임상무;우광선;정위섭;오옥두
    • 대한핵의학회지
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    • 제27권2호
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    • pp.270-276
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    • 1993
  • $Technetium-^{99m}$ labeling method using bifunctional chelating agent cyclic DTPA has been evaluated with human polyclonal nonspecific IgG. IgG was conjugated with cyclic DTPA with various molar ratio. Reduction of $^{99m}Tc$ was done with $Na_2S_2O_4$ with various molar excess. Labeling efficiency and identification of polymer was confirmed with HPLC using TSK4000 SW column. Polymer was purified with 100 cm Sepharose 6LB column. Cultured $1{\times}10^9$ Staphylococcus aureus were injected into rat thigh 24 hours later labeled IgG was injected, and in vivo distribution was observed 4 and 24 hours thereafter. Reduction of $^{99m}Tc$ was optimal with the 10000-50000 times molar excess of $Na_2S_2O_4$. Polymer formation increased with increasing mloar excess of cyclic DTPA to IgG. Three step labeling-labeling DTPA conjugated IgG after reduction of $^{99m}Tc$-made more polymer than two two step labeling-simultaneous mixing DTPA conjugated IgG, $^{99m}Tc$ and $Na_2S_2O_4$. $^{99m}Tc$ blood clearance and lower uptake in the abscess and other organs. IgG conjugated with 200 times molar excess of cyclic DTPA showed slower blood clearance with 200 times molar excess of cyclic DTPA showed slower blood clearance than that of 200 times molar excess of cyclic DTPA showed slower blood clearance than that of 20 times molar excess. In the $^{99m}Tc$ labeling of IgG with cyclic DTPA for the immunoscintigraphy, obtimal labeling condition should be chosen, and effect of the $^{99m}Tc$ labeled IgG polymer should be considered.

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양전자 방출핵종 $^{68}$Ga을 이용한 NOTA와 DOTA의 표지 및 시험관내 특성 연구 (Radiolabeling of NOTA and DOTA with Positron Emitting $^{68}$Ga and Investigation of In Vitro Properties)

  • 정재민;김영주;이윤상;이동수;정준기;이명철
    • Nuclear Medicine and Molecular Imaging
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    • 제43권4호
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    • pp.330-336
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    • 2009
  • 목적: $^{68}$Ge/$^{68}$Ga-제너레이터에서 생산되는 PET용 방사성동위원소인 $^{68}$Ga을 NOTA와 DOTA에 표지하는 조건을 확립하고 이의 안정성 및 단백질 결합 특성을 연구하였고, 여러 가지의 금속이온 공존시 표지효율에 미치는 영향도 관찰하였다. 대상 및 방법: 여러 가지 농도의 NOTA 3HCl과 DOTA 4HCl에 $^{68}$Ge/$^{68}$Ga-제너레이터에서 0.1 M HCl로 용출한 $^{68}$GaCl$_3$ 6.66$\sim$272.8 MBq 1.0 mL와 합치고 초산나트륨 또는 탄산나트륨 완충액을 사용하여 다양한 pH 조건에서 반응하였다. 다양한 금속이온(CuCl$_2$, FeCl$_2$, InCl$_3$, FeCl$_3$), GaCl$_3$, MgCl$_2$, CaCl$_2$)과 0.373 mM NOTA를 $^{68}$Ga(6.77$\sim$8.58 MBq)으로 표지할 때 표지효율을 관찰하였다. $^{68}$Ga의 표지효율은 ITLC-SG고정상으로 하고 아세톤과 생리식염수를 이동상으로 하여 측정하였다. 최적의 pH 조건에서 $^{68}$Ga-NOTA와 $^{68}$Ga-DOTA를 표지한 후 4 시간 동안 안정성을 확인하고, 사람 혈청에서의 단백질 결합능을 평가하였으며, 지용성 정도를 측정하기 위하여 octhanol distribulion 실험을 실시하여 log P값을 구하였다. 결과: $^{68}$Ga-NOTA와 $^{68}$Ga-DOTA의 치적 표지 pH 조건은 각각 pH 6.5와 3.5였고, NOTA는 실온에서 표지가 잘 되었으나 DOTA는 가열이 필요하였다. MgCl$_2$와 CaCl$_2$의 존재는 $^{68}$Ga-NOTA의 표지 효율에 영향을 미치지 않았으나 CuCl$_2$, FeCl$_2$, InCl$_3$, FeCl$_3$, GaCl$_3$이 존재할 경우에는 표지효율이 감소하였다. $^{68}$Ga-NOTA와 $^{68}$Ga-DOTA는 실온에 그대로 두거나 사람혈청과 37$^{\circ}C$에 두었을 때 4 시간 이상 안정하였고, 사람 혈청 단백질 결합능은 2.04$\sim$3.32%로 낮았으며, log P 값은 -3.07로 수용성을 보였다. 결론: $^{68}$Ga의 표지에는 NOTA가 DOTA에 비하여 이상적인 양기능성 킬레이트제로 쓰일 수 있음을 알았다. 또한 $^{68}$Ga-NOTA는 금속이온 존재시 표지효율이 떨어질 수 있지만 안정하고 낮은 단백질 결합을 보였다.