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Stuart Young

Publications and source records attributed to Stuart Young.

3 recordsLinked to original sources

Design of the Del-1 for therapeutic angiogenesis trial (DELTA-1), a phase II multicenter, double-blind, placebo-controlled trial of VLTS-589 in subjects with intermittent claudication secondary to peripheral arterial disease.

The objective of this phase II investigation is to assess the safety and efficacy of a plasmid mediated approach to induce angiogenesis/arteriogenesis with the angiomatrix protein Del-1 (developmentally regulated endothelial locus 1), in subjects with intermittent claudication (IC) secondary to peripheral arterial disease (PAD). VLTS-589 is an investigational nonviral therapeutic comprising a plasmid-expressing Del-1 formulated with poloxamer 188 (facilitating agent). One hundred subjects with bilateral PAD and IC will be randomized after careful screening to bilateral intramuscular delivery of VLTS-589 or placebo. A total of 84 mg of plasmid or placebo will be delivered as 42 intramuscular injections (2 ml per injection, 21 injections or 42 ml in each extremity of either plasmid or placebo) in both lower extremities. The subjects in the study will be followed at regular intervals for a year after study drug administration (days 30, 90, 180, and 365) with the primary endpoint being the safety and tolerability of VLTS-589 and change in peak walking time (PWT) at day 90. The secondary endpoints include percent and absolute change in resting ankle brachial Index, claudication onset time, and quality of life measured at various time points. DELTA-1 represents the largest plasmid-based gene transfer trial designed to test the efficacy of a Del-1 as a therapeutic approach in patients with IC caused by PAD. The novel aspects of the protocol include the usage of a Del-1 plasmid-polaxamer formulation to enhance gene transfer at doses that are an order of magnitude different than other comparable trials in a unique bilateral intramuscular dosing pattern to maximize transfection/clinical efficacy and general applicability to patients with PAD.

Adult↗

A new assay for thyrotropin receptor autoantibodies.

A new procedure for measuring patient serum thyrotropin receptor (TSHR) autoantibodies is described in which the autoantibodies inhibit binding of a human monoclonal thyroid stimulating antibody M22 (labeled with biotin) to TSHR-coated enzyme-linked immunosorbent assay (ELISA) plate wells. In the assay, M22-biotin binding is detected by addition of streptavidin peroxidase. The M22 based assay was more sensitive than a similar ELISA based on inhibition of TSH-biotin binding to TSHR coated wells with 1 U/L of NIBSC 90/672 giving approximately 35% inhibition in the M22-based system compared to approximately 15% inhibition in the TSH-based ELISA. This had an important impact on the precision of the 2 assays with the M22-based ELISA showing an interassay coefficient of variation (CV) of 10% at 1 U/L whereas the TSH-based ELISA had an interassay CV of 20% at 1 U/L. Analysis of sera from 307 control subjects without a diagnosis of Graves' disease indicated that only 2 (0.65%) gave inhibition of M22 binding values of greater than 10% (11% and 12% inhibition). In the case of sera from 108 patients with Graves' disease (treated and untreated) 103 (95%) gave inhibition of M22 binding values of 14% or greater. Receiver operating characteristic (ROC) plot analysis showed that 100% specificity for TSHR autoantibody detection in Graves' disease was obtained at 95% sensitivity for the M22-based ELISA and 89% sensitivity for the TSH-biotin-based ELISA. Inhibition of M22 binding to the TSHR was closely correlated to inhibition of TSH binding in the 108 Graves' sera (r = 0.99). However, inhibition of M22 binding was almost always greater resulting in improved sensitivity and precision.

Adult↗