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S C Heald

Publications and source records attributed to S C Heald.

20 records · Page 2Linked to original sources

The labeling of high affinity sites of antibodies with 99mTc.

Labeling of F(ab')2 with 99mTc was investigated. The best labeling procedure for F(ab')2 was then applied to IgG and Fab. Stannous ion was used as the reducing agent for 99mTcO-4 and free DTPA was used as a competing reagent to prevent colloid formation and loosely bound 99mTc. The competition reactions revealed two 99mTc binding sites for F(ab')2 and IgG. One is a high capacity, low affinity site. This accounts for 76 and 84% of total IgG and F(ab')2 binding sites. The labeling of these sites can be prevented if the antibody is labeled in the presence of free DTPA. The second site is a low capacity, high affinity site. The labeling of these sites cannot be prevented by free DTPA. Fab, unlike IgG and F(ab')2, does not have an appreciable percentage of high affinity sites. The determination of sulfhydryl groups using Ellman's reagent indicates the production of 5.5, 4.2 and 0.9 sulfhydryl groups when IgG, F(ab')2 and Fab were exposed to 56 micrograms/mL SnCl2 X 2H2O. These sulfhydryl groups may be the source of the high affinity binding. Biodistribution in mice for 99mTc labeled F(ab')2 and F(ab')2-DTPA, both prepared in the presence of excess free DTPA, was similar to that of F(ab')2-DTPA-111In.

Binding, Competitive↗

Relative reactivity of DTPA, immunoreactive antibody-DTPA conjugates, and nonimmunoreactive antibody-DTPA conjugates toward indium-111.

Anti-human serum albumin antibody (Ab) was reacted with cyclic DTPA dianhydride (cDTPAA) at various cDTPAA/Ab molar ratios between 1 and 40. Using a carrier In titration method for DTPA and DTPA-antibody conjugate (Ab-DTPA), we determined that the above reactions produced between 0.1 and 11 DTPA molecules per either immunoreactive antibody (sAb) or nonimmunoreactive antibody (nAb). The percentage of sAb remaining after the above reactions was between 88 and 62%. The reaction of no-carrier-added 111In with the reaction mixture from cDTPAA/Ab molar ratios of 1 to 40 gave radiochemical yields less than or equal to 25% for the respective Ab-DTPA. The rest of the 111In activity was associated with free DTPA. Our results indicate that Ab-DTPA containing greater than 1 DTPA molecule per Ab is more reactive than that containing less than 1 DTPA but is about as reactive as free DTPA. This allows us to label in the presence of free DTPA and consequently prevent colloid formation. The percentage of 111In activity incorporated into sAb-DTPA from the reactions at these molar ratios was similar to that found from the uv analysis. This indicates that the reactivity of sAb-DTPA and nAB-DTPA from the same conjugation reaction is similar. As a result, we were able to conjugate about one DTPA molecule to the Ab without causing deactivation of the Ab and label it with 111In in the presence of excess DTPA. We obtained a specific activity of 6 muCi 111In per microgram of Ab using research grade 111In without further purification.

Antibodies↗