Small peptide radiopharmaceuticals in the imaging of acute thrombus

被引:22
作者
Blum, JE
Handmaker, H
机构
[1] CIGNA Med Grp, Pulm Dis Sect, Phoenix, AZ 85006 USA
[2] Univ Arizona, Coll Med, Tucson, AZ 85721 USA
[3] Healthcare Technol Grp, Phoenix, AZ USA
关键词
deep vein thrombosis(DVT); integrin system; platelet receptors; GPIIb/IIIa; apcitide;
D O I
10.2174/1381612023393891
中图分类号
R9 [药学];
学科分类号
1007 ;
摘要
Until recently, imaging acute thrombus, especially the very prevalent condition of acute deep vein thrombosis relied on conventional imaging techniques utilizing either ultrasonography or contrast venography. The former procedure is limited by accuracy and the latter by technical considerations. Newer modalities such as magnetic resonance and computed tomographic scanning are yet to be validated in a prospective manner. Recent advances in the understanding of the pathogenesis of acute clot at the molecular level have suggested new avenues for detection of the acute thrombotic process based on the biomolecular behavior of components of the clotting process including the formed element of the blood, the platelet. Expression of a receptor on platelets unique to acute thrombosis and synthesis of small peptide ligands with high specificity for that receptor have suggested a new venue for evaluation of acute venous thrombotic disorders. The challenges of ligand synthesis for the integrin glycoprotein receptors on platelets are discussed along with the difficulties of incorporation of a convenient nuclide for imaging purpose, 99mTc. The absence of specificity for acute clot in established "gold standard" tests including contrast venography suggests that small peptide directed ligand-receptor imaging may provide superior information based on the biomolecular behavior of the clotting process.
引用
收藏
页码:1815 / 1826
页数:12
相关论文
共 52 条
[31]   Pathophysiology and diagnosis of deep venous thrombosis [J].
Line, BR .
SEMINARS IN NUCLEAR MEDICINE, 2001, 31 (02) :90-101
[32]   Deep venous thrombosis with suspected pulmonary embolism: Detection with combined CT venography and pulmonary angiography [J].
Loud, PA ;
Katz, DS ;
Bruce, DA ;
Klippenstein, DL ;
Grossman, ZD .
RADIOLOGY, 2001, 219 (02) :498-502
[33]  
MARTZDORFF AC, 1992, GERIATRICS, V47, P48
[34]   VENOUS STASIS IN THE LOWER EXTREMITIES [J].
MCLACHLIN, AD ;
MCLACHLIN, JA ;
JORY, TA ;
RAWLING, EG .
ANNALS OF SURGERY, 1960, 152 (04) :678-685
[35]  
MONTREAL M, 1993, J INTERN MED, V233, P233
[36]   Lower-limb deep venous thrombosis: Direct MR imaging of the thrombus [J].
Moody, AR ;
Pollock, JG ;
O'Connor, AR ;
Bagnall, M .
RADIOLOGY, 1998, 209 (02) :349-355
[37]   STRUCTURE-ACTIVITY-RELATIONSHIPS OF DOUBLE-STRAND RGD PEPTIDES AS GPIIB/IIIA RECEPTOR ANTAGONISTS [J].
OJIMA, I ;
DONG, Q ;
EGUCHI, M ;
OH, Y ;
AMANN, CM ;
COLLER, BS .
BIOORGANIC & MEDICINAL CHEMISTRY LETTERS, 1994, 4 (14) :1749-1754
[38]   Scintigraphic detection of acute experimental endocarditis with the technetium-99m labelled glycoprotein IIb/IIIa receptor antagonist DM P444 [J].
Oyen, WJG ;
Boerman, OC ;
Brouwers, FM ;
Barrett, JA ;
Verheugt, FWA ;
Ruiter, DJ ;
Corstens, FHM ;
van der Meer, J .
EUROPEAN JOURNAL OF NUCLEAR MEDICINE, 2000, 27 (04) :292-299
[39]   The structure and function of platelet integrins [J].
Parise, L. V. .
CURRENT OPINION IN CELL BIOLOGY, 1989, 1 (05) :947-952
[40]   Thrombus imaging using technetium-99m-labeled high-potency GPIIb/IIIa receptor antagonists. Chemistry and initial biological studies [J].
Pearson, DA ;
ListerJames, J ;
McBride, WJ ;
Wilson, DM ;
Martel, LJ ;
Civitello, ER ;
Dean, RT .
JOURNAL OF MEDICINAL CHEMISTRY, 1996, 39 (07) :1372-1382