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Biomedical subjects

Richard Geary

Publications and source records attributed to Richard Geary.

4 recordsLinked to original sources

Maternal and fetal distribution of a phosphorothioate oligonucleotide in rats after intravenous infusion.

BACKGROUND: Fetal uptake of an antisense oligonucleotide was evaluated after intravenous (i.v.) dosing of ISIS 2105, a 20-base phosphorothioate oligonucleotide, in timed-pregnant Sprague-Dawley rats. METHODS: To maximize the potential for fetal exposure, ISIS 2105 was administered as a 3-hr infusion at 6.6 mg/kg/hr with a total dose of 20 mg/kg, or as a continuous 7-day infusion at 0.35 mg/kg/hr with a total dose of 59 mg/kg. This dosing regime is higher than a patient would be expected to receive in the clinical use of oligonucleotides. Infusions were delivered through a jugular vein cannula by syringe pump on gestation day (GD) 19 (3-hr exposure) or by osmotic pumps implanted subcutaneously (s.c.) starting on GD 12 (7-day exposures). RESULTS: After a 3-hr infusion, maternal and fetal plasma concentrations of ISIS 2105 were >100 microg/ml and <0.07 microg/ml, respectively with a maternal fetal ratio of >1,000. Maternal regions of the placenta had twice the oligonucleotide concentration compared to fetal regions of the placenta (6 microg/g vs. 3 microg/g). After this acute exposure the concentrations in fetal kidney and liver were approximately 140- and 500-fold less than the maternal kidney and liver respectively. After 7-day infusion maternal plasma concentrations were 0.82 microg/ml and fetal concentrations were <0.22 microg/ml. By capillary gel electrophoresis (CGE) only the fetal liver consistently had quantifiable oligonucleotide concentrations (range=1.01-4.95 microg/g) compared to a mean concentration of 50.11+/-1.71 microg/g in the maternal liver a maternal to fetal ratio of approximately 10:50 after 7 days of infusion. CONCLUSIONS: There was a low level of transfer from dam to fetus, consistent with a slow equilibrium but the permeability of placenta to this 6 kDa polyanionic compound seemed to be limited even at supraclinical doses.

Animals↗

Methoxyethyl-modified intercellular adhesion molecule-1 antisense phosphorothiateoligonucleotides inhibit allograft rejection, ischemic-reperfusion injury, and cyclosporine-induced nephrotoxicity.

BACKGROUND: The addition of phosphorothioate (PS) groups to natural phosphodiester (PD) antisense oligodeoxynucleotides (oligo) prevents their in vivo hydrolysis by nucleases allowing an RNase-dependent elimination of targeted mRNA. To further improve oligo function 2'-methoxyethyl (ME) groups were attached to selected nucleotides at the 3'-end because ME groups block RNase activity. METHODS/RESULTS: ME modification of PS- or PD/PS-oligo targeting human intracellular adhesion molecule (ICAM)-1 mRNA significantly increased the degree and duration of the in vitro inhibitory effects without compromising selectivity and specificity. A 7-day intravenous or oral therapy with rat ME/PS-modified ICAM-1 antisense oligo extended the survivals of kidney allografts. In addition, ME/PS-modified ICAM-1 antisense oligo reduced ischemic-reperfusion injury in kidneys, as measured by glomerular filtration rate, creatinine levels, and infiltration with leukocytes. Finally, a 14-day treatment with cyclosporine (CsA)-induced nephrotoxicity in syngeneic kidney transplants correlated with both increased ICAM-1 protein expression and infiltration with leukocytes. Graft perfusion and treatment of recipients with ICAM-1 antisense ME/PS-oligo alleviated the nephrotoxic effect and decreased ICAM-1 expression and leukocyte infiltration. CONCLUSIONS: ME/PS-modified ICAM-1 antisense oligo is very effective in inhibiting the ICAM-1-dependent mechanism of graft infiltration and tissue damage involved in allograft rejection, ischemic-reperfusion injury, and CsA-induced nephrotoxicity.

Animals↗

A phase I/II study of LY900003, an antisense inhibitor of protein kinase C-alpha, in combination with cisplatin and gemcitabine in patients with advanced non-small cell lung cancer.

PURPOSE: Protein kinase C-alpha has been implicated in malignant transformation and proliferation. Based on in vivo superadditive interaction between the protein kinase C-alpha antisense oligonucleotide LY900003 (Affinitak, ISIS 3521) and cisplatin, we designed this phase I/II trial of LY900003 with cisplatin/gemcitabine. EXPERIMENTAL DESIGN: The safety of the combination, as well as potential pharmacokinetic interactions, was evaluated in the phase I portion of the trial. The phase II portion evaluated the antitumor activity of the combination in previously untreated patients with stage IIIB/IV non-small-cell lung cancer (NSCLC). RESULTS: Seven patients received 18 cycles of the combination during the phase I portion. Dose-limiting toxicity was only observed in one of six evaluable patients (grade 3 fatigue). However, due to a relatively high frequency of thrombocytopenia, cisplatin 80 (mg/m2) and gemcitabine (1,000 mg/m2) were recommended for the phase II portion. Antitumor activity was observed in two patients (one with NSCLC and one with pancreatic carcinoma), and prolonged stabilization was observed in two others. No pharmacokinetic interactions occurred. In the phase II portion, 55 NSCLC patients received the combination at two gemcitabine doses [1,000 mg/m2, n=44 (original cohort); 1,250 mg/m2, n=11 (expanded cohort)]. Fourteen of 39 evaluable patients in the original cohort had a response rate (1 complete response and 13 partial responses; response, 36%), whereas 2 of 9 evaluable patients in the expanded cohort experienced partial response (combined response rate, 33%). The median time to treatment failure was 3.9 months, whereas the median time response to progression for the 48 patients with evaluable response was 4.4 months (confidence interval, 3.5-5.5 months). Intent to treat median survival time was 8.9 months. Forty-eight percent of the patients experienced catheter-related events. CONCLUSIONS: LY900003 can be administered safely in combination with cisplatin and gemcitabine and is associated with antitumor activity in patients with advanced NSCLC. Better characterization of subsets of patients most likely to benefit from this combination therapy is needed.

Adult↗

Curing-light intensity and depth of cure of resin-based composites tested according to international standards.

BACKGROUND: Several factors control the light curing of a resin-based composite: the composition of the composite, the shade of the composite, the wavelength and bandwidth of the curing light, the distance of the light from the composite, the intensity of the curing light and the irradiation time. The authors investigated the depth of cure of several shades of five brands of resin-based composites when irradiated via light in the 400- to 515-nanometer wavelength bandwidth at the International Organization for Standardization, or ISO, recommended intensity of 300 milliwatts per square centimeter. The resin-based composites were irradiated for the times recommended by the products' manufacturers. METHODS: The authors used a curing light adjusted to emit 300 mW/cm2 in the 400-nm to 515-nm wavelength bandwidth to polymerize five samples of each composite brand type and shade. They measured depth of cure using a scraping method described in the ISO standard for resin-based composites. Depth of cure was defined as 50 percent of the length of the composite specimen after uncured material was removed by manual scraping. The authors determined a mean from the five samples of each composite brand and shade. RESULTS: Thirteen (62 percent) of 21 composite materials met the ISO standard depth-of-cure requirement of 1.5 millimeters. Six of the eight remaining materials met the depth-of-cure requirement when the authors doubled the irradiation time recommended by the product manufacturers. CONCLUSIONS AND CLINICAL IMPLICATIONS: Curing lights with an intensity of 300 mW/cm2 appear to effectively cure most resin-based composite materials when appropriate curing times are used, which, in some cases, are longer than those recommended by the manufacturers. Dentists should verify the depth of cure of a composite material as a baseline measure, and then check depth of cure periodically to confirm light and material performance. The ISO depth-of-cure measurement method can be used for this purpose.

Composite Resins↗