Nuklearmedizin 1977; 16(03): 100-103
DOI: 10.1055/s-0037-1620616
Originalarbeiten – Original Articles
Schattauer GmbH

Kinetics of Various 99mTc-Sn-Pyrophosphate Compounds in the Rat

I. In Vivo Studies
C. Schümichen
1   From the Zentrum für Radiologie, Abt. Klinische Nuklearmedizin, Klinikum der Universität Freiburg, FRG
,
J. Waiden
1   From the Zentrum für Radiologie, Abt. Klinische Nuklearmedizin, Klinikum der Universität Freiburg, FRG
,
G. Hoffmann
1   From the Zentrum für Radiologie, Abt. Klinische Nuklearmedizin, Klinikum der Universität Freiburg, FRG
› Institutsangaben
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Publikationsverlauf

Received:18. April 1977

Publikationsdatum:
10. Januar 2018 (online)

Summary

The kinetic data of two different 99mTc-Sn-pyrophosphate compounds (compound A and B) were evaluated in non-adult rats. Only compound A concentrated in bone. Both compounds dispersed rapidly in the intravascular as well as the extravascular space. The plasma protein bond of both compounds increased with time after injection and impaired both the renal clearance of both compounds and the bone clearance of compound A. The renal clearance of both compounds was somewhat above that of 5 1Cr-EDTA. It is concluded that compound A and B is mainly excreted by glomerular filtration. About one fourth of the glomerular filtrate of compound B is reabsorbed and accumulated by the tubular cells.

 
  • References

  • 1 Schümichen C, Rörvik-Schümichen K, Hoffmann G. 99mTc-Sn-pyrophosphate compiexes, an investigation of its possible structures. Nucl.-Med 1974; XIII: 252-257.
  • 2 Oberhausen E. Bestimmung der Nierenclearance mit dem Ganzkörperzähler. Güssinger Symposium 1968, in: Nierenclearance (Hrsg. R. Höfer) Nuklearmedizin (Hoechst) S. 111
  • 3 Ratte, Maus. Berlin 1961
  • 4 Schümichen C, Nakken K F. A comparison of the bone seeking properties of short chained 99mTc-Sn-polyphosphates. Nucl.-Med 1974; XIII: 139-143.
  • 5 Cambie J L. Chemical anatomy, physiology and pathology of extracellular fluid. Harvard University Press; Cambridge (Mass.): 1960