Background and Objective:Cap-dependent endonuclease (CEN) inhibitors are a promising novel class of antiviral agents for influenza treatment. This phase I study aimed to evaluate the mass balance, excretion pathways, and pharmacokinetics of pixavir marboxil (TG-1000), a novel CEN inhibitor prodrug, in healthy humans. Methods:Six healthy Chinese male participants received a single oral dose of 40 mg (100 μCi) [14C]pixavir marboxil. Blood, urine, and fecal samples were collected at predefined intervals up to 384 h post-dose. Total radioactivity was determined using oxidative combustion and liquid scintillation counting. Pharmacokinetic parameters were calculated using non-compartmental analysis, and metabolite profiling was conducted using high-performance liquid chromatography coupled with radiochemical detection and high-resolution mass spectrometry. Results:Intact pixavir marboxil was undetectable in plasma. Systemic exposure primarily consisted of its active metabolite, pixavir (TG-0527), and a subsequent glucuronide conjugate, TG-0600771. The geometric mean areas under the curve ( A U C 0 - ∞ ) for total radioactivity, pixavir, and TG-0600771 in six participants were 4,220 hng Eq./mL, 2,490 hng/mL, and 981 hng/mL, respectively. The administered radioactive dose demonstrated a mean cumulative recovery of 91.29%, with 85.62% recovered in feces and 5.68% in urine. Metabolite profiling identified pixavir and TG-0600771 as the major metabolites, with no major cytochrome P450 (CYP)-mediated oxidative metabolites observed in plasma. The single dose of [14C]pixavir marboxil was safe and well-tolerated. Conclusion:Pixavir marboxil exhibits a favorable pharmacokinetic profile characterized by rapid systemic conversion to its active metabolite, CYP-independent metabolism, and predominantly non-renal clearance. These favorable pharmacokinetic characteristics support a well-characterized disposition profile with limited reliance on CYP-mediated metabolism and renal excretion of active pixavir. Trial Registration:This study was registered with Drug Clinical Trial Registration and Information Disclosure Platform, National Medical Products Administration (NMPA), number CTR20231822 (http://www.chinadrugtrials.org.cn/).
PURPOSE:This Phase I drug-drug interaction study in healthy Chinese male subjects evaluated: (1) the perpetrator effects of D-1553 (garsorasib) on cytochrome P450 enzymes (CYP3A4, CYP1A2), hepatic (OATP1B1/1B3), renal uptake transporters (OAT1/3), and efflux transporter P-glycoprotein (P-gp); and (2) the victim potential with itraconazole (200 mg daily) or omeprazole (20 mg daily). METHODS:The study comprised three cohorts. Cohort 1 received D-1553 tablets (400 mg twice daily) co-administered with a cocktail of probe substrates: midazolam, caffeine, rosuvastatin, furosemide, and digoxin. Cohort 2 received D-1553 co-administered with the strong CYP3A4 and P-gp inhibitor itraconazole. Cohort 3 received D-1553 co-administered with the proton-pump inhibitor omeprazole. A total of 45 healthy male subjects were enrolled in the study, and 44 subjects were included in the safety and pharmacokinetic (PK) analyses. Plasma concentrations of D-1553 and concomitant drugs were quantified using validated liquid chromatography-tandem mass spectrometry (LC-MS/MS) methods. Tolerability was also evaluated. RESULTS:In the substrate cocktail assessment, D-1553 significantly inhibited CYP3A4 (midazolam AUC ratio: 2.04) but not CYP1A2 (caffeine AUC ratio: 1.18), and reduced exposures of rosuvastatin and furosemide (AUC ratio: 0.59 and 0.41, respectively), likely via intestinal OATP2B1 inhibition. Meanwhile, no clinically relevant effect on P-gp was shown (digoxin AUC ratio: 1.19). Co-administration with itraconazole increased D-1553 exposure (AUC ratio: 1.46), whereas omeprazole decreased its exposure (AUC ratio: 0.85). All AEs were mild and no serious AEs were reported. CONCLUSION:D-1553 acts as a moderate inhibitor of CYP3A4 and a weak inhibitor of P-gp, while reducing the absorption of specific transporter substrates, likely via intestinal OATP2B1. Co-administration with strong CYP3A4 inhibitors moderately increases D-1553 exposure, whereas acid-reducing agents like omeprazole have no clinically relevant effect. These findings provide a targeted scientific basis for guiding the clinical co-administration of D-1553 with concomitant medications.
Amino acid sufficiency is critical for T cell metabolic reprogramming, yet how T cells maintain amino acid homeostasis remains poorly defined. Here, we identify the CORVET and HOPS (CORVET/HOPS) tethering complexes as essential upstream regulators. In activated T cells, they sustain intracellular amino acid levels by promoting macropinocytosis to acquire extracellular nutrients. This function enables dual signaling outcomes: suppression of the integrated stress response (ISR) and activation of mTORC1, which together license metabolic plasticity and effector function. Genetic ablation of core subunits (VPS18 or VPS11) of CORVET/HOPS induces severe amino acid scarcity, triggers pathological ISR activation, and impairs mTORC1 signaling, leading to reduced peripheral T cell numbers and abrogating both inflammatory and protective immunity in vivo. These defects are mechanistically linked: BIM deletion or enforced mTORC1 activity rescues the survival and proliferative failures, respectively, of CORVET/HOPS-deficient T cells. Our work establishes CORVET/HOPS as fundamental couplers linking nutrient acquisition to immune signaling, revealing a targetable node for immuno-metabolic therapy.
PURPOSE:TPN171, a novel, highly selective, and potent phosphodiesterase type 5 (PDE5) inhibitor, is currently under clinical development for the treatment of pulmonary arterial hypertension (PAH) and erectile dysfunction (ED). The drug is mainly metabolized by the cytochrome P450 (CYP) enzyme 3A4. We evaluated the pharmacokinetic (PK) profile and safety of TPN171, both alone and in combination with itraconazole (a CYP3A4 potent inhibitor) or rifampin (a CYP3A4 potent inducer), in healthy Chinese volunteers. METHODS:In this open-label, fixed-sequence study, TPN171 (10 mg) was administered orally once daily on Days 1 and 6 in Cohort 1, followed by oral itraconazole (200 mg) once daily from Days 3 to 6. Cohort 2 received oral TPN171 (20 mg) once daily on Days 1 and 10, with concurrent oral rifampin (600 mg) once daily administered from Days 3 to 10. Twenty-four healthy subjects were enrolled (12 per cohort). The PK parameters of TPN171 were estimated through noncompartmental analysis with its plasma concentration detection. Comparisons of the maximum plasma concentration (Cmax) and the area under the concentration-time curve extrapolated to infinity (AUC0-∞) for TPN171 were conducted between conditions with and without coadministration of itraconazole or rifampin. FINDINGS:The Cmax and AUC0-∞ for TPN171 were increased by 76.00% (least squares geometric mean ratios (LSGMR), 176.00% [90% CI, 160.37%-193.15%]) and 185.67% (LSGMR, 285.67% [90% CI, 261.87%-311.64%]) when combined with itraconazole versus TPN171 alone. The Cmax and AUC0-∞ of TPN171 were reduced by 74.53% (LSGMR, 25.47% [90% CI, 21.98%-29.50%]) and 90.14% when combined with rifampin versus TPN171 alone (LSGMR, 9.86% [90% CI, 9.08%-10.71%]). Spontaneous penile erection was the most frequently reported adverse event, occurring in 17 (70.83%) of the 24 subjects. IMPLICATIONS:CYP3A4 potent inhibitors and inducers can significantly affect the exposure level of TPN171, especially the inducers. Therefore, when taking TPN171, it is recommended to avoid concomitant administration with CYP3A4 potent inhibitors or potent/moderate inducers, or adjust the dosage of TPN171.
ABSTRACT This study aimed to evaluate the effects of the concomitant administration of TPN171 and alcohol on hemodynamic and pharmacokinetic characteristics in healthy Chinese male subjects. Fifteen eligible subjects were randomly assigned to one of three sequences, each comprising three treatments: Treatment A (placebo +0.5 g/kg alcohol), Treatment B (TPN171 + 0.5 g/kg alcohol), and Treatment C (TPN171 + placebo). Enrolled subjects were administered with 10 mg TPN171 and/or 0.5 g/kg alcohol in fasting state in a randomized crossover design. Blood pressure, pulse rate (PR), blood samples, and breath alcohol test were measured at designated time points for hemodynamic and pharmacokinetic analyses. Compared with 10 mg TPN171 alone, administration of 10 mg TPN171 + 0.5 g/kg alcohol significantly lowered the area under the effect–time curve from 0 to 4 h (AUEC0‐4h) of systolic blood pressure (95% confidence interval [CI]: −29.75 to −0.83, p = 0.039) and significantly increased AUEC0–4h of PR (95% CI: 7.47–28.92, p = 0.003). Compared with 0.5 g/kg alcohol alone, administration of 10 mg TPN171 + 0.5 g/kg alcohol contributed to significantly higher maximal increase of PR (95% CI: 2.78–9.44, p = 0.002) and AUEC0‐4h of PR (95% CI: 1.08–24.52, p = 0.035). Alcohol had no influence on the pharmacokinetics of TPN171, and vice versa. Though the concomitant administration of TPN171 and alcohol induced a more pronounced increase in PR, this did not result in clinical symptoms or heart rate increase‐related adverse events, indicating that the combined use was generally safe and well‐tolerated.
Purpose: To study the pharmacokinetic characteristics of progesterone (GenSci070) in healthy Chinese postmenopausal women volunteers and to evaluate the bioequivalence and safety of GenSci070 and reference formulation. Methods: In this randomized, open-label, single-center, single-dose, 2-period, 2-sequence, 2-way crossover study, 50 postmenopausal healthy women were recruited and received a single subcutaneous injection of test (GenSci070) or reference formulation 25 mg, respectively. Plasma progesterone concentrations were measured using liquid chromatography-tandem mass spectrometry, and pharmacokinetic parameters were calculated by non- compartmental analysis method using Phoenix WinNonlin 8.3.1 software to evaluate the bioequivalence. The safety profile was evaluated by adverse events, physical examination, vital signs, laboratory tests, 12-lead ECG, etc. Findings: The geometric mean ratios (90% CIs) for Cmax, AUC0-t, and AUC0-infinity of the test and reference formulations were 92.70% (87.29%-98.44%), 96.26% (94.02%-98.55%), and 95.46% (93.27%-97.71%), respectively. They were all within the acceptable bioequivalence range of 80% to 125%. Thirty-one treatment-emergent adverse events occurred in 22 participants (44.0%) who received test formulation and 21 treatment-emergent adverse events occurred in 16 participants (32.0%) who received reference formulation, all events were mild. Implications: The water-soluble progesterone injection (GenSci070) demonstrated bioequivalence to the marketed progesterone injection (Lubion) and exhibited a good safety profile in this study.
ABSTRACT SC1011 (sufenidone) is a novel pyridone derivative with therapeutic potential for idiopathic pulmonary fibrosis (IPF). Two Phase 1 studies evaluated the safety and pharmacokinetics of single (SAD) and multiple ascending doses (MAD) of SC1011 immediate‐release (IR) and modified‐release (MR) oral formulations in healthy adult subjects. In Phase 1a, subjects were randomized to receive oral SC1011 IR or placebo in SAD (50 mg‐300 mg) or MAD (100 mg and 200 mg) twice daily for 7 days. The Phase 1b study consisted of three treatment groups that received 100, 150, or 200 mg SC1011 MR twice daily for 7 days. SC1011 IR was absorbed rapidly (mean time to maximum concentration, Tmax ≤ 1 h) and eliminated rapidly (mean terminal half‐life, t1/2: 1.23–2.64 h) following 50–300 mg single‐dose administrations. Reduced maximum plasma concentration (Cmax), delayed Tmax, and comparable total exposure were observed with the MR formulation compared with the IR formulation. Both formulations demonstrated dose‐proportional pharmacokinetics at the applied dose ranges, and no obvious accumulation of systemic exposure was observed upon repeated administration. All treatment‐emergent adverse events (TEAEs) with both formulations were mild or moderate in severity, and gastrointestinal reactions were the most frequently reported TEAEs. The tolerability of SC1011 was markedly improved with the MR formulation. Exposure–adverse event (AE) analysis with the most frequent AEs identified Cmax rather than total exposure as a good predictor of AEs. Compared to the IR formulation, SC1011 MR demonstrated improved exposure and tolerability, supporting its further development in patients with IPF.
Objective:This Phase I study evaluated the safety, tolerability, pharmacokinetics (PK) and pharmacodynamics (PD) of BGT-002, a novel ATP-citrate lyase (ACLY) inhibitor, in healthy Chinese adults. Methods:This study included three parts: Part I (single-ascending-dose study), Part II (multiple-ascending-dose study), and Part III (food effect study). A total of 104 healthy subjects were enrolled in the study and were given BGT-002 tablet or placebo per protocol requirements. Blood samples were collected for pharmacokinetic and pharmacodynamic analysis. Safety was assessed by clinical examinations and adverse events. Results:In Part I, BGT-002 demonstrated rapid absorption with a Tmax of 0.67 to 1.75 hours, and slow elimination with a T1/2 of 24.53 to 72.86 hours, prolonged with increased dosages. Cmax and AUC0-∞ ranged from 1.55 to 48.39 μg/mL, and 31.09 to 2930.69 h·μg/mL, respectively. In Part II, the accumulation index (Rac) of Cmax and AUCtau following 14 days of consecutive administration were 3.53 to 3.62 and 5.29 to 5.59, respectively, with a dose-proportionality PK profile. The levels of total cholesterol (TC), non-high-density lipoprotein cholesterol (non-HDL-C), and low-density lipoprotein cholesterol (LDL-C) were maximally decreased by 15.80%, 18.50%, and 22.37%, respectively. In Part III, the geometric mean ratio (90% CI) of fed to fasting condition in Cmax and AUC0-∞ of BGT-002 were 73.11% and 98.36%, respectively, indicating a minor food effect on the absorption rate. Across the study, two cases of Grade 3 adverse events (elevated blood triglycerides) were reported, both of which were assessed as not related to BGT-002. No serious adverse events were observed. Conclusion:BGT-002 demonstrated favorable safety, tolerability, and lipid-lowering effects, supporting its potential for further clinical development. Clinical Trial Registration:ChiCTR2200057793(https://www.chictr.org.cn/showproj.html?proj=160210); ChiCTR2300067474(https://www.chictr.org.cn/showproj.html?proj=182183); ChiCTR2300067472(https://www.chictr.org.cn/showproj.html?proj=184079).
Heart failure is the most costly cardiovascular disorder. New treatments are urgently needed. This study aims to evaluate the safety, pharmacokinetics, and pharmacodynamic profile of HEC95468, a soluble guanylate cyclase (sGC) stimulator, in healthy volunteers. Sixty-two, eighteen, and forty-eight participants were enrolled in the single ascending dose (SAD) study, the food effect (FE) study, and the multiple ascending dose (MAD) study, respectively. The study conforms to good clinical practice and the Declaration of Helsinki. Overall, HEC95468 was safe and tolerable; a higher proportion of HEC95468-treated participants reported mild headaches, dizziness, decreased blood pressure, increased heart rate, and gastrointestinal-related treatment-emergent adverse events (TEAEs), similar to the sGC stimulators riociguat and vericiguat. In terms of pharmacokinetic parameters, the maximum observed plasma concentration (Cmax) and the area under the concentration-time curve (AUC0-t) were dose-proportional over the dose range. Moderate accumulation was observed after multiple administrations of HEC95468. Systolic blood pressure (SBP) and diastolic blood pressure decreased, while 3′,5′-cyclic guanosine monophosphate (cGMP) concentration in plasma increased and heart rate was induced. Vasoactive hormones (renin, angiotensin II, and norepinephrine) in plasma were compensatorily elevated after oral administration. These data supported further clinical trials of HEC95468 in the treatment of heart failure and pulmonary arterial hypertension.Systematic Review Registration:http://www.chinadrugtrials.org.cn, identifier CTR20210064.
AbstractThis study evaluated the safety, tolerability, pharmacokinetics (PK), pharmacodynamics (PD), and food effects (FE) of SC0062, a highly active endothelin‐A (ETA) receptor antagonist, in healthy subjects. The primary objectives of this first‐in‐human phase I study, comprised of single‐ascending‐dose, multiple‐ascending‐dose, and FE parts, were to characterize the safety and tolerability of SC0062, and FE. The secondary objectives were to determine the PK behavior of SC0062 and its major active metabolite M18, whereas exploratory objectives focused on PD effects, principally effects on endothelin‐1 (ET‐1) and total bile acids (TBA). Single doses of 10 to 100 mg and multiple daily doses of 20 and 50 mg for 6 days were well tolerated. SC0062 was rapidly absorbed and plasma exposure of SC0062 and M18 increased disproportionately with dose, achieving steady state by day 3, with accumulation ratios of 1.22 and 1.89 on day 6 for SC0062 and M18, respectively. The geometric mean (geometric standard deviation) terminal elimination half‐life (t1/2) values of SC0062 and M18 were 7.25 (1.70) h and 13.73 (1.32) h, respectively. Plasma ET‐1 concentrations were dose‐proportional, whereas plasma TBA concentrations behaved erratically. Following a single 50 mg dose of SC0062 after a high‐fat meal, Cmax values for SC0062 and M18 increased by 41% and 32%, respectively, and median Tmax values for SC0062 were 3 h longer than fasting values; exposure was unaffected. These favorable safety, PK, and PD results provide a foundation for further studies of SC0062 in pulmonary arterial hypertension, chronic kidney disease, and other relevant indications.
AIMS:This study aimed to assess the safety, pharmacokinetics and pharmacodynamics of noiiglutide (SHR20004), a novel glucagon-like peptide-1 receptor agonist, in Chinese obese participants without diabetes mellitus (DM). MATERIALS AND METHODS:This phase 1, randomised, double-blind, placebo-controlled study enrolled adult participants with body mass index (BMI) ≥28 kg/m2. The study used a titration method, each subject received daily noiiglutide injection for 3-6 weeks, until reaching the final dose of 0.18, 0.24, 0.30 or 0.36 mg per day. Each dose group consisted of 10 participants, with eight receiving noiiglutide and two receiving placebos. Safety assessments were conducted throughout the study, and pharmacokinetics and pharmacodynamics were evaluated. RESULTS:Most treatment-emergent adverse events were of mild to moderate in severity, with no serious adverse event or adverse event led to withdraw. Blood concentration of noiiglutide reached a steady state after daily administration for 4 days, with no significant accumulation. Mean elimination half-life (t1/2) was between 9.90 and 11.8 h at steady state. At the end of treatment, the mean weight loss compared to baseline for the placebo group and each treatment group was -1.89, -3.26, -5.45, -4.35 and -7.46 kg respectively. The weight and BMI reductions observed in each noiiglutide treatment group were greater than those in the placebo group and exhibited an increasing trend with extended administration duration. CONCLUSIONS:Daily administration of noiiglutide using a titration method was well tolerated by Chinese obese participants without DM and showed potential therapeutic effect for weight loss.
Abstract This study aimed to assess the safety, pharmacokinetics, and food impact on sudapyridine (WX‐081), a novel drug designed to inhibit mycobacterium ATP synthase, with clinical applications for drug‐resistant tuberculosis (TB) treatment. The research comprised two arms: a single ascending dose (SAD) arm (30 to 600 mg, N = 52) and a multiple ascending dose (MAD) arm (200 to 400 mg, N = 30). The influence of food was evaluated using a 400 mg dose within an SAD cohort. Plasma concentrations of WX‐081 and M3 (main metabolite of WX‐081) were analyzed using a validated liquid‐chromatography tandem mass spectrometry method. In the SAD arm, mean residence time (MRT0‐t), terminal half‐life, and clearance of WX‐081 ranged from 18.87 to 52.8 h, 31.39 to 236.57 h, and 6.4 to 80.34 L/h, respectively. The area under the curve from time zero to the last measurable timepoint (AUC0‐t) of WX‐081 showed dose‐proportional increases in the SAD arm. The disparity between fasted and fed states of WX‐081 was significant (p < 0.05), with fed dosing resulting in a 984.07% higher AUC0‐t and 961.55% higher maximum plasma concentration. In both the SAD and MAD arms, one case each exhibited a 1 degree atrioventricular block. No QTc elongation was observed, and adverse events were not dose‐dependent. Favorable exposure, tolerability, safety, and an extended MRT0‐t suggest that WX‐081 holds promise as a phase II development candidate for drug‐resistant TB treatment.
The present study evaluated the safety, tolerability, and pharmacokinetics of fluoropezil (DC20), a novel acetylcholinesterase inhibitor under development for the treatment of Alzheimer's disease (AD) in otherwise healthy young and elderly Chinese subjects. The study of young subjects included the multiple ascending dose (MAD) arm (2 and 6 mg, N = 24) and the food effect arm (4 mg, N = 12) and was followed by the study of elderly subjects who were given (2 and 4 mg, N = 11). The noncompartmental analysis method was used to determine the pharmacokinetic parameters. The pharmacokinetics of fed versus fasted dose administration in the same subjects was assessed by 90% confidence interval. In the MAD arm, the accumulation ratios of DC20 in vivo were 2.29 and 2.15, respectively. In the food effect arm, compared with fasting administration, an area under the concentration-time curve from zero to t after a standard and high-fat diet orally administered slightly increased by about 19% and 29%, and the time to maximum concentration (T-max) was delayed by around 1 h. For elderly study subjects, T-max was 1.5 and 1.25 h, and terminal half-life (t(1/2)) was 77.1 and 74.2 h, respectively. There were no serious adverse events (AEs), whereas gastrointestinal reactions were the most common AEs associated with the study drug. We predicted the safety risks of DC20 in the clinical treatment of AD, which were well-tolerated by the healthy young and elderly subjects. The elimination of DC20 from the body was slower in elderly subjects than in young subjects. This study was approved by the Center for Drug Evaluation, National Medical Products Administration (CTR20181428, CTR20190664, CTR20191878, and CTR20192724).
This study aimed to evaluate the pharmacokinetic (PK) similarity of the proposed biosimilar HS628 compared with the reference tocilizumab (Actemra®) and also to demonstrate similar safety and immunogenicity profiles in healthy Chinese male subjects. Eighty eligible subjects were randomized into two treatment groups in a 1:1 ratio to receive a single intravenous infusion of HS628 or tocilizumab at 4 mg/kg over 60 min. Blood samples were collected at the scheduled time points for PK and immunogenicity analysis. PK biosimilarity was determined using the standard bioequivalence criteria 80%–125%. A total of 77 subjects received the study drug and completed the study. The main PK parameters were similar for the test and reference groups. The ratio of geometric least‐squares means (GMR) and its 90% CIs for AUC0–t, AUC0–∞, and Cmax between the test group and reference group were 1.06 (1.00–1.12), 1.07 (1.00–1.14), and 1.04 (0.99–1.10), respectively, which were fully within the predefined bioequivalent range of 80%–125%. The incidence of treatment‐emergent adverse events (TEAEs) was similar for HS628 and tocilizumab (p > 0.05). The most common TEAEs were decreased fibrinogen, decreased neutrophils, pharyngalgia, oral ulcer, decreased leukocytes, and increased erythrocyte sedimentation rate. The results of the present study provide strong evidence to support the PK similarity and bioequivalence of HS628 and tocilizumab. The safety and immunogenicity profiles of HS628 were also shown to be similar to those of the reference tocilizumab.
Abstract Background Acetylcholinesterase (AChE) inhibitors attempt to reduce the breakdown of acetylcholine levels in the brain of patients with Alzheimer’s disease (AD) by inhibiting the responsible enzyme AChE in the synaptic cleft. This study evaluated the safety, tolerability, and pharmacokinetics of fluoropezil (DC20), a novel AChE inhibitor under development for the treatment of AD in healthy young and elderly Chinese subjects. Methods The study on young subjects were divided into two arms: the multiple ascending-dose (MAD) arm (double-blind, randomized, placebo-controlled, multiple ascending-dose, 2 and 6 mg, N = 24), and the food effect arm (three-period, self-crossover, open-labeled, fasting/standard diet/high-fat diet administration, 4 mg, N = 12). A two-period, self-crossover, open-labeled, single ascending-dose study was designed for elderly subjects (2 and 4 mg, N = 11). Results For young subjects’ study: In the MAD arm, the accumulation ratios of DC20 in vivo were 2.29 and 2.15, respectively. In the food effect arm, compared with fasting administration, area under the concentration-time curve from zero to t (AUC0-t) orally after a standard diet and high-fat diet slightly increased by about 19% and 29% and the Tmax were delayed by around 1 hour. For elderly subjects’ study, Tmax were 1.5 and 1.25 hour, t1/2 were 77.1 and 74.2 hour, respectively. After oral administration of DC20 in healthy young and elderly subjects, no serious adverse events occurred, the most common adverse events associated with the study drug were gastrointestinal reactions. Conclusion We predicted the safety risks of DC20 in the clinical treatment of AD, which were well tolerated by the healthy young and elderly subjects. The elimination of DC20 from the body was slower in elderly subjects than in young subjects. Trial registration numbers: CTR20181428, CTR20190664, CTR20191878, CTR20192724 approved by the Center for Drug Evaluation, National Medical Products Administration.
膜性肾病(MN)是肾内科难治疾病之一,分为原发性膜性肾病(PMN)和继发性膜性肾病(SMN).肾活检显示,MN发生率达到了22%左右.目前尚缺乏对MN的具体诊断,因此有必要进一步探讨其发病机制和生物标记物.本文从免疫异常、遗传因素、环境因素方面探究MN的发病机制.抗磷脂酶A2受体(PLA2R)是甘露糖受体家族的跨膜糖蛋白成员,他在人类肾脏中表达最强烈.尽管抗PLA2R检测MN的特异度基本上是100%,但在一定程度上模糊了PMN和SMN疾病的区别.因此本文除了着重综述PLA2R以外,还综述了其他几种新发现的生物标记物,旨在进一步为临床诊断与治疗提供帮助.
VV116 (JT001) is an oral drug candidate of nucleoside analog against SARS-CoV-2. The purpose of the three phase I studies was to evaluate the safety, tolerability, and pharmacokinetics of single and multiple ascending oral doses of VV116 in healthy subjects, as well as the effect of food on the pharmacokinetics and safety of VV116. Three studies were launched sequentially: Study 1 (single ascending-dose study, SAD), Study 2 (multiple ascending-dose study, MAD), and Study 3 (food-effect study, FE). A total of 86 healthy subjects were enrolled in the studies. VV116 tablets or placebo were administered per protocol requirements. Blood samples were collected at the scheduled time points for pharmacokinetic analysis. 116-N1, the metabolite of VV116, was detected in plasma and calculated for the PK parameters. In SAD, AUC and C max increased in an approximately dose-proportional manner in the dose range of 25–800 mg. T 1/2 was within 4.80–6.95 h. In MAD, the accumulation ratio for C max and AUC indicated a slight accumulation upon repeated dosing of VV116. In FE, the standard meal had no effect on C max and AUC of VV116. No serious adverse event occurred in the studies, and no subject withdrew from the studies due to adverse events. Thus, VV116 exhibited satisfactory safety and tolerability in healthy subjects, which supports the continued investigation of VV116 in patients with COVID-19.
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Purpose: TPN171H is a novel, potent and selective phosphodiesterase type 5 (PDE5) inhibitor for the treatment of pulmonary arterial hypertension (PAH). The objective of this study was to evaluate the safety, tolerability, and pharmacokinetics of TPN171H in healthy subjects after single and multiple dosing, in addition, to investigate the food effect on pharmacokinetics and safety of TPN171H. Methods: The entire study was comprised of three parts: Part I (single ascending-dose study), Part II (food effect study), and Part III (multiple ascending-dose study). A total of 63 healthy subjects were enrolled in the study. TPN171H tablet or placebo was administered per protocol requirements. Blood samples were collected at the designated time points for pharmacokinetic analysis. Safety was assessed by clinical examinations and adverse events. Results: In Part I, AUC and C-max were proved to be linear within the 5-30 mg dose range. T1/2 of TPN171H was 8.02-10.88 h. In Part II, we figured out that TPN171H administration under fed condition could decrease C-max, prolong T-max, but had no effect on AUC. In Part III, the accumulation ratio at steady- state for AUC and C-max indicated that TPN171H has a slight accumulation upon repeated dosing. Subjects were generally tolerable after TPN171H administration. Compared with other PDE5 inhibitors, TPN171H was found to have no impact on blood pressure and color discrimination. Conclusion: TPN171H was safe and generally tolerated in healthy subjects. Based on the half-life, food effect, and safety profile of TPN171H, we recommend a once-daily, post-meal administration of TPN171H in subsequent clinical studies in healthy subjects and patients with PAH.