Skip to Main Content
Article navigation

We show that the IgD-induced augmentation of the immune response to trinitrophenylated keyhole limpet hemocyanin can be transferred to syngeneic mice with spleen cells from IgD-injected donors. The augmenting activity is present in the Lyt-1+2-, L3T4+ T cell population and is absent from B cells. The ability of transferred T cells to augment the immune response correlates with the presence of a high frequency of Lyt-1+2- T cells that form rosettes with IgD-coated sheep erythrocytes (T delta cells). Such rosette-forming cells can also be induced by incubation of spleen cells from normal donors in IgD-coated petri dishes. Injection of normal spleen cells exposed to IgD-coated petri dishes together with antigen also augments the immune response of recipients. The existence of a regulatory circuit based upon interactions between T delta cells, antigen, B cell surface IgD, and serum IgD, is proposed.

This content is only available as a PDF.
You do not currently have access to this content.
Don't already have an account? Register

or Create an Account

Close Modal
Close Modal

Gift article access

As a benefit of your subscription, you can share temporary access to restricted articles.

Each link will stop working after 30 days or 10 uses. You may create up to 10 links in a 30 day period.

Please sign in to your personal account to gift article access.

Register

Gift article access

As a benefit of your subscription, you can share temporary access to restricted articles.

Each link will stop working after 30 days or 10 uses. You may create up to 10 links in a 30 day period.

Gift articles remaining: --

Gift article access

Each link will stop working after 30 days or 10 uses. You may create up to 10 links in a 30 day period.

Gift articles remaining: --

Gift article access

As a benefit of your subscription, you can share temporary access to restricted articles.

Each link will stop working after 30 days or 10 uses.

You have reached the limit of 10 links within a 30 day period.