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CD4 and CD7 molecules as targets for drug delivery from antibody bearing liposomes
H Suzuki1, O Zelphati, G Hildebrand
1Centre d'Immunologie INSERM-CNRS de Marseille-Luminy, France.
Abstract:
We have examined two T lymphocyte cell surface molecules, CD4 and CD7, as targets for specific delivery of drugs from antibody-directed liposomes. The efficiency of uptake by peripheral lymphocytes, thymocytes, and two CEM sublines (CEM.MRS and CEM-T4) of anti-CD4 and anti-CD7 liposomes containing methotrexate was evaluated by the methotrexate-mediated inhibition of the incorporation of d-[3H]Urd into DNA. This was compared with similar liposomes targeted to MHC-encoded HLA class I molecules, which are known to be efficiently taken up by T cells. Despite the lower expression of CD7 molecules relative to HLA class I on most cell lines, CD7 was shown to be a good target for drug delivery. The results of an internalization study using radiolabeled Protein A showed that a higher proportion of CD7 molecules was internalized than HLA class I molecules. CD4-targeted liposomes, in contrast, were relatively ineffective for drug delivery for lymphoid cells, and only partially inhibited CEM-T4 cells. The lack of toxicity correlated with poor internalization of the target molecule on most cell lines. The drug effect of anti-CD4 liposomes was more pronounced on HeLa-T4, which is an epithelial cell line transfected with the CD4 gene. In contrast to lymphoid cells, these cells efficiently internalized CD4 molecules. PMA is known to down-regulate surface expression of CD4 molecules on various T cells. Internalization of CD4 was induced by PMA, but PMA failed to induce cytotoxicity of CD4-targeted liposomes for CEM.MRS. The internalized drug was probably degraded rapidly because internalized anti-CD4 antibody-bound Protein A was degraded very rapidly.
Insights
CD7-targeted liposomes show promise for drug delivery to T lymphocytes, demonstrating efficient uptake and internalization. Conversely, CD4-targeted liposomes were less effective for lymphoid cells due to poor internalization, though effective in engineered cell lines.
Area of Science:
- Immunology
- Drug Delivery
- Cell Biology
Background:
- Antibody-directed liposomes offer targeted drug delivery.
- CD4 and CD7 are T lymphocyte cell surface molecules.
- HLA class I molecules are efficiently internalized by T cells.
Purpose of the Study:
- To evaluate CD4 and CD7 as targets for antibody-directed liposome drug delivery.
- To compare the efficacy of CD4 and CD7 targeting with HLA class I targeting.
- To assess drug uptake and internalization efficiency in various T cell lines.
Main Methods:
- Liposomes containing methotrexate were targeted to CD4, CD7, and HLA class I molecules.
- Drug delivery efficacy was measured by inhibition of DNA synthesis (d-[3H]Urd incorporation).
- Internalization of targeted molecules was studied using radiolabeled Protein A.
Main Results:
- CD7 was identified as a suitable target, with higher internalization than HLA class I molecules.
- CD4-targeted liposomes showed limited efficacy in lymphoid cells due to poor internalization.
- CD4 targeting was effective in HeLa-T4 cells (CD4-transfected epithelial line) with efficient internalization.
- Phorbol 12-myristate 13-acetate (PMA) induced CD4 internalization but not cytotoxicity in CEM.MRS cells.
Conclusions:
- CD7 is a viable target for antibody-directed liposome drug delivery to T lymphocytes.
- CD4 targeting is less effective for lymphoid cells but shows potential in engineered cell lines.
- Internalization efficiency is critical for the efficacy of antibody-directed liposome drug delivery.