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Jeffrey Edelman

Publications and source records attributed to Jeffrey Edelman.

3 recordsLinked to original sources

A functional radioreceptor assay of alpha-V-beta-3 (alphavbeta3) inhibitors in plasma: application as an ex vivo pharmacodynamic model.

Development of alphavbeta3-integrin inhibitors has been hampered by a lack of pharmacodynamic endpoints to identify doses that inhibit alphavbeta3 in vivo. To address this need, we developed an alphavbeta3 radioreceptor assay (RRA) that could be performed in 100% plasma. The RRA was based on 125I-echistatin binding to plate-immobilized alphavbeta3. Small molecule alphavbeta3 inhibitors efficiently competed echistatin binding to alphavbeta3 when the assay was carried out in buffer. However, when carried out in 100% plasma, the RRA revealed a 45 to >3000-fold loss in compound potencies. The losses in potency reflected, in part, the high plasma protein binding by the compounds examined. The RRA was adapted as an ex vivo pharmacodynamic model. Echistatin binding was measured in the presence of plasma harvested at timed intervals from rats dosed with select compounds. Using this pharmacodynamic model, compound and dose selection was optimized for further testing in models of corneal angiogenesis. Moderate anti-angiogenic activity was achieved when rats were dosed sufficient to achieve sustained (>50%) plasma inhibition through the trough interval. Thus, the RRA provided a simple technique to rank order compound potency in plasma, and could find general use as an ex vivo pharmacodynamic assay to select compounds and doses for preclinical and clinical proof-of-principle studies.

Angiogenesis Inhibitors↗

Adenoviral p53 gene therapy in squamous cell cancer of the head and neck region.

Treatment options for recurrent head and neck squamous cell carcinoma are limited. Morbidity and mortality are largely related to local recurrence. Experimental investigation of adenoviral p53 gene therapy is being explored as a new therapeutic modality for patients with recurrent squamous cell carcinoma in the head and neck region. The function of the p53 gene is to maintain the genetic integrity of the cell and induce apoptosis when DNA damage is irreparable. Phase I trial results indicate that multiple injections of up to 2.5 x 10(12) viral particles per injection administered during a 3-week cycle are well tolerated and demonstrate evidence of local regional control. Dose-related activity correlating with transient survival advantage is demonstrated in a meta-analysis of phase II trials. This review will summarize phase I and II trial results. Conclusions drawn from these studies justify the currently ongoing phase III investigation.

Adenoviridae↗