DMB-3115 is a biosimilar to ustekinumab (Stelara®). We conducted a randomized controlled study to determine the similarity of bioavailability between DMB-3115 and Stelara (distributed in Japan) in healthy Japanese participants. Healthy Japanese male participants aged 18 to 55 years were randomly assigned in a 1:1 ratio to receive a single subcutaneous injection (45 mg) of DMB-3115 or Stelara. Participants were followed for 112 days. The primary pharmacokinetic (PK) endpoints were area under the concentration–time curve from time zero to the final sampling time point t (AUCt) and maximum serum concentration (Cmax). This study was conducted between April 11, 2022 and November 22, 2022. A total of 150 participants (75 in each group) received the study drug and were included in the safety analysis, whereas 147 participants (74 in the DMB-3115 group and 73 in the Stelara group) with properly measured PK data were included in the PK analysis. The 90
AimsTo demonstrate pharmacokinetic equivalence of CT-P39 administered via auto-injector (CT-P39 AI) and European Union-approved reference omalizumab via pre-filled syringe (EU-OMA PFS) in healthy Japanese adults.Participants & MethodsThis open-label, Phase 1 study randomized participants (1:1) to a single 150 mg/mL dose of CT-P39 AI or EU-OMA PFS. The primary endpoint was pharmacokinetic equivalence per area under the concentration-time curve from time zero to infinity (AUC0-inf) and maximum serum concentration (Cmax). Equivalence was concluded if the 90% confidence intervals (CIs) for the ratios of geometric least-squares means (gLSMs) were contained within the predefined 80-125% equivalence margin. Secondary endpoints comprised additional pharmacokinetics, pharmacodynamics, safety, and immunogenicity.ResultsOverall, 65 and 64 individuals were randomized to CT-P39 AI and EU-OMA PFS, respectively. Pharmacokinetic equivalence between CT-P39 AI and EU-OMA PFS was demonstrated for both AUC0-inf (ratio of gLSMs [90% CI] 101.66 [95.31-108.45]) and Cmax (93.91 [87.20-101.14]). Thirty-nine (60.0%; CT-P39 AI) and 32 (50.8%; EU-OMA PFS) participants experienced treatment-emergent adverse events (TEAEs) with no serious TEAEs. Secondary endpoints were comparable between groups.ConclusionsCT-P39 AI was pharmacokinetically equivalent to EU-OMA PFS following a single dose in healthy Japanese individuals; pharmacodynamics, safety, and immunogenicity were comparable.
CT-P47 is a candidate biosimilar of tocilizumab. This 12-week, randomized, double-blind, parallel-design, phase 1 study aimed to demonstrate pharmacokinetic (PK) equivalence of CT-P47 and reference tocilizumab. Participants were healthy Japanese adults aged 18-55 years. Participants were randomized (1:1:1) to receive a single intravenous dose (8 mg/kg) of CT-P47, EU-approved tocilizumab (EU-tocilizumab), or US-licensed tocilizumab (US-tocilizumab). Primary PK endpoints were area under the concentration-time curve (AUC) from time zero to infinity, AUC from time zero to the last quantifiable concentration, and maximum serum concentration. Additional PK variables, safety, and immunogenicity were evaluated. The study was conducted from January 20 to May 26, 2023, in three centers in Japan. In total, 133 male participants were randomized (n = 45 to CT-P47, n = 44 to EU-tocilizumab, and n = 44 to US-tocilizumab). For all primary PK variables, 90% confidence intervals of the ratio of geometric least squares means were within the predefined equivalence margin of 0.80-1.25. Secondary PK variables were similar across groups. The most common treatment-emergent adverse event (TEAE) was neutrophil count decreased, occurring in 15 (33.3%), 13 (30.2%), and 12 (27.3%) participants in the CT-P47, EU-tocilizumab, and US-tocilizumab groups, respectively. There were no serious TEAEs, deaths, or study drug discontinuations due to TEAEs. Few participants were anti-drug antibody (ADA)- or neutralizing antibody (NAb)-positive. At the end of study, four (8.9%), one (2.3%), and two (4.5%) participants in the CT-P47, EU-tocilizumab, and US-tocilizumab groups, respectively, were ADA-positive; two (4.4%), zero (0%), and one (2.3%) in the respective groups were NAb-positive. CT-P47 demonstrated PK equivalence and comparable safety to EU- and US-tocilizumab.
Aim To report a Phase I study of subcutaneous glucagon receptor (GCGR)/glucagon-like peptide-1 receptor (GLP-1R) dual agonist BI 456906 versus placebo in healthy Japanese men with overweight/obesity.Materials and methods We investigated multiple rising doses of BI 456906 escalated over 16 weeks (maximum doses: 1.8 mg once weekly [dose group {DG} 1], 4.8 mg once weekly [DG 2] and 2.4 mg twice weekly [DG 3]) in Japanese men with a body mass index of 23 to 40 kg/m(2).Results Thirty-six participants were treated (n = 9 per DG and placebo). Overall, 10 participants (37.0%) treated with BI 456906 withdrew from dose escalation due to adverse events (amylase increase, n = 1; decreased appetite, n = 9), and the proportion of participants was higher in DG 2 (n = 6, 66.7%) versus DGs 1 and 3 (both n = 2, 22.2%). No participants receiving placebo withdrew from dose escalation. BI 456906 exposure increased with dose and dose escalation in each DG. Treatment with BI 456906 decreased placebo-corrected bodyweight after 16 weeks (placebo +1.06%): DG 1, -5.57%; DG 2, -12.37%; DG 3, -9.62%. Paracetamol absorption decreased in Week 1 for DGs 2 and 3, indicating transient delayed gastric emptying. BI 456906 reduced plasma alanine and glucagon levels, indicating indirect target engagement at GCGRs and GLP-1Rs. Drug-related adverse events were reported for all participants receiving BI 456906 and four receiving placebo, the most frequent being decreased appetite (n = 24, 66.7%).Conclusions BI 456906 showed no unexpected tolerability concerns and it reduced placebo-corrected bodyweight by up to 12.37% in Japanese men with overweight/obesity after 16 weeks of treatment.
BACKGROUND AND OBJECTIVE:Upacicalcet sodium hydrate is a novel small-molecule calcimimetic and has potential as a therapeutic agent for secondary hyperparathyroidism. We assessed the pharmacokinetics, pharmacodynamics, safety, and tolerability of a single intravenous dose of upacicalcet in Japanese healthy adults.METHOD:This was a single-center, double-blinded, randomized, placebo-controlled, dose-escalation study. For each cohort, eight subjects were randomly assigned at a ratio of 3:1 to receive a single injection of placebo or upacicalcet 0.01, 0.1, 1.0, or 2.5 mg.RESULT:The plasma concentration of upacicalcet increased in a dose-dependent manner. Upacicalcet rapidly disappeared from plasma after administration. The half-life of upacicalcet was approximately 1-2 h. The major excretion route of upacicalcet was via urine. Serum intact parathyroid hormone decreased in accordance with the upacicalcet dose, from the lowest dose of 0.01 mg. Gastrointestinal disorders occurred in one patient in the 1.0 mg group and in five patients in the 2.5 mg group. All adverse events were nonserious, and no symptomatic hypocalcemia occurred.CONCLUSION:This study showed that upacicalcet acted as a calcimimetic and was excreted in the urine unchanged with little metabolism. Moreover, upacicalcet is a small molecule and has a small volume of distribution. In addition, less than 50% of upacicalcet binds to human plasma proteins. These findings suggest that upacicalcet administered to patients undergoing hemodialysis might be expected to have a long excretion period and sustained pharmacological effect.
Abstract Background FKB327 has been developed as a biosimilar of the adalimumab reference product (RP). We compared the pharmacokinetics (PK), safety, and immunogenicity of FKB327 with those of the adalimumab RP after a single dose by subcutaneous (SC) injection in Japanese male participants. Methods Two randomized, single-blind, single-dose studies were conducted in healthy Japanese male participants to compare PK characteristics between FKB327 and the RP. Study 1 included 130 participants who were randomized in a 1:1 ratio to receive a subcutaneous injection of 40 mg of either FKB327 or the RP into the abdomen. In Study 2, another 130 subjects were randomized in a 1:1 ratio to receive either drug as in Study 1, but the drug administration site was changed to the thigh. The primary PK endpoints of both studies were area under the concentration-time curve from time zero to the last measurable concentration (AUC0-t) and maximum serum concentration; area under the concentration-time curve from time zero to 360 h was also evaluated as one of the primary endpoints in Study 1. Biosimilarity in terms of pharmacokinetics was determined if the 90% confidence interval of the mean difference in geometric mean ratio of all primary PK parameters was within the prespecified equivalence criteria (0.80–1.25). Immunogenicity and safety were also evaluated as secondary endpoints. Results The serum concentration-time profiles were comparable between the FKB327 and the RP treatment groups in both studies. Primary PK parameters were within the prespecified bioequivalence range in Study 2, although AUC0-t was slightly outside the upper side of the range in Study 1. No differences in safety profile were observed in these studies. The incidence of anti-drug antibodies (ADAs) and impact of ADAs on PK profile were similar among the treatment groups in both studies. Conclusion Biosimilarity between FKB327 and the RP after a single 40-mg SC injection was confirmed in healthy Japanese male participants by modifying the study design. Trial registration jRCT2071200058 (https://jrct.niph.go.jp/en-latest-detail/jRCT2071200058, https://rctportal.niph.go.jp/en/detail?trial_id=jRCT2071200058) and jRCT2071200057 (https://jrct.niph.go.jp/en-latest-detail/jRCT2071200057, https://rctportal.niph.go.jp/en/detail?trial_id=jRCT2071200057). Retrospectively registered 25/11/2020.
The concentration of cerebrospinal fluid total protein (CSF-TP) is important for the diagnosis of neurological emergencies. Recently, some Western studies have shown that the current upper reference limit of CSF-TP is quite low for older patients. However, little is reported about the concentration of CSF-TP in the older Asian population. In this study, we retrospectively analyzed the CSF-TP concentrations in healthy older Japanese volunteers. CSF samples in 69 healthy Japanese volunteers (age range: 55–73 years) were collected by lumbar puncture, and the data of CSF were retrospectively analyzed. The mean (standard deviation) CSF-TP was 41.7 (12.3) mg/dL. The older group (≥65 years old) had higher CSF-TP concentration than the younger group (55–64 years old). The 2.5th percentile and 97.5th percentile of CSF-TP were estimated as 22.5 and 73.2 mg/dL, respectively, which were higher than the current reference range in Japan (10–40 mg/dL). Conclusions: The reference interval of CSF-TP in the older population should be reconsidered for the precise diagnosis of neurological emergencies.