Chemotactic activity of venom from the brown recluse spider (Loxoscelles reclusa).
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Biomedical subjects
Publications and source records attributed to H M Gebel.
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Zymosan depletion of serum complement in guinea pigs rendered them highly resistant to lesion by Loxosceles reclusa spider venom. Guinea pigs deficient in C4 of the complement system are as sensitive to the venom as normal guinea pigs. The injection of 35 micrograms of whole recluse venom intradermally into guinea pigs lowered their complement level by 35.7%. Brown recluse spider venom in concentrations as slight as 0.02 micrograms protein/ml can totally inactivate one CH50 of guinea pig complement in vitro. Bee, scorpion, and other spider venoms had no influence on the hemolytic titer of complement. Fractionation of recluse spider venom by Sephadex G-200 filtration separated the complement-inactivating property of the venom into three major regions which could be distinguished on the basis of heat stability as well as size. None was neutralized by antivenom. Polyacrylamide gel electrophoresis of venom resolved the complement inactivators into five fractions. Complement inactivated by whole venom or the Sephadex fractions could be restored to hemolytic activity by supplements of fresh serum but not by heat-inactivated serum, pure C3, pure C5, or C3 and C5 in combination.
The idiotype-specific myeloma transplantation resistance induced in BALB/c mice by immunization with the DNP-binding IgAlambda2 protein produced by plasmacytoma MOPC-315 is ablated by post-immunization thymectomy. Sham-thymectomy has no effect. The ablative effect of thymectomy is observed is observed in mice challenged subcutaneously with MOPC-315 cells either 3 days after thymectomy, or after a rest period of 44 days after thymectomy. These observations suggest that short-lived, thymic-dependent suppressive factors may play a role in the idiotype-specific myeloma graft resistance.