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1.
Clin Ther ; 43(11): 1934-1947.e4, 2021 11.
Article in English | MEDLINE | ID: mdl-34600734

ABSTRACT

PURPOSE: A number of single-inhaler, fixed-dose, triple combinations are available for the management of chronic obstructive pulmonary disease and/or asthma. One of these is the extrafine formulation beclomethasone dipropionate, formoterol fumarate, glycopyrronium bromide (BDP/FF/GB). Given that differences in ethnicity can result in differences in systemic exposure, we evaluated the relative pharmacokinetic (PK) profiles of BDP/FF/GB in Japanese vs Caucasian healthy volunteers to assess the need for dose adjustment. METHODS: This randomized, double-blind, single-dose, 4-way crossover study recruited healthy men and women 20 to 55 years of age; for each Japanese person a Caucasian was enrolled who matched in terms of sex, age, and weight. Study treatments included BDP/FF/GB 200/12/25 and 400/12/25 µg (therapeutic), 800/48/100 µg (supratherapeutic), and placebo. PK blood samples were taken up to 24 hours for evaluation of BDP, beclomethasone 17-monopropionate (B17MP, an active metabolite of BDP), and formoterol and up to 48 h for GB. The primary objective was to characterize the PK profiles of BDP, FF, and GB after administration of a single dose of BDP/FF/GB in Caucasian and Japanese healthy volunteers in terms of the AUC0-t and Cmax of B17MP, formoterol, and GB. FINDINGS: Of the 32 recruited participants (16 Japanese and 16 Caucasian ), 30 completed the study. A clear plasma exposure dose-response relationship was found for all 4 molecules. B17MP Cmax geometric mean ratios for Japanese vs Caucasian participants for the 3 study treatments ranged from 1.17 to 1.26, and AUC0-t ratios ranged from 1.16 to 1.22; thus, the findings were comparable between the ethnicities. Formoterol exposure was higher in Japanese than Caucasian participants (Cmax, 1.22-1.53; AUC0-t, 1.23-1.40). The GB Cmax with BDP/FF/GB 400/12/25 µg (1.09) and AUC0-t values for all three doses (0.98-1.17) were comparable in the 2 populations, but Cmax with 200/12/25 and 800/48/100 µg were higher in Japanese participants (1.32 and 1.42, respectively). Pharmacodynamic (cortisol, potassium, glucose, blood pressure, heart rate, and QT interval with the Fridericia correction) and safety profile results were similar in the 2 ethnicities, with most patients not experiencing any adverse events. IMPLICATIONS: Exposure to BDP/FF/GB pressurized metered dose inhaler at therapeutic and supratherapeutic doses was associated with higher plasma levels in Japanese versus Caucasian healthy volunteers. These PK differences did not translate into meaningful differences in the safety or pharmacodynamic parameters assessed in this study and were consistent with the results of other long-term (52-week) published studies. Dose adjustments in Japanese people are not deemed necessary. CLINICALTRIALS. GOV IDENTIFIER: NCT03859414.


Subject(s)
Glycopyrrolate , Pulmonary Disease, Chronic Obstructive , Administration, Inhalation , Beclomethasone/therapeutic use , Bronchodilator Agents/therapeutic use , Cross-Over Studies , Double-Blind Method , Drug Combinations , Ethnicity , Female , Formoterol Fumarate/therapeutic use , Humans , Japan , Male , Metered Dose Inhalers , Nebulizers and Vaporizers , Pulmonary Disease, Chronic Obstructive/drug therapy
2.
Free Radic Biol Med ; 35(1): 68-77, 2003 Jul 01.
Article in English | MEDLINE | ID: mdl-12826257

ABSTRACT

The SW620IR1 cell line was derived from SW620 human colon cells surviving to ionizing radiations. It shows an increased radiosensitivity and a higher yield of spontaneous chromosomal aberrations. In order to check whether altered reactive oxygen intermediates (ROI) metabolism is involved in this inherited phenotype, we compared the two cell lines for their radiation-induced modifications at the level of ROI production, antioxidant activities, and chromosomal aberrations. Compared to SW620, SW620IR1 cells exhibit a higher and more persistent ROI induction after various doses of ionizing radiations and a higher yield of dicentric chromosomes. They are also characterized by lower basal activities of glutathione peroxidase and manganese-containing superoxide dismutase, and lower ability to induce these antioxidant defenses after irradiation. Resumption of cell growth after irradiation coincides with maximal induction of antioxidant activities and normalization of ROI concentration. However, at that time radiation-induced chromosomal aberrations are not completely eliminated, leading to the proliferation of genetically unstable cells. These results indicate that the inherited sensitivity of SW620IR1 cells is associated with altered antioxidant activities resulting in higher and more prolonged oxidative stress after radiation exposure. They also suggest that the normalization of ROI levels allows these p53 mutant cells to resume proliferation although high levels of DNA damages are still persisting, thereby explaining the chromosomal instability observed as a delayed effect of radiation exposure.


Subject(s)
Antioxidants/metabolism , Chromosome Aberrations , Colon/radiation effects , Oxidative Stress , Radiation Tolerance/genetics , Reactive Oxygen Species/metabolism , Catalase/metabolism , Cells, Cultured , Colon/cytology , Colonic Neoplasms/metabolism , Colonic Neoplasms/pathology , Dose-Response Relationship, Radiation , Glutathione Peroxidase/metabolism , Humans , Karyotyping , Radiation, Ionizing , Superoxide Dismutase/metabolism
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