Drug Database
AS

astromicin sulfate (astromicin sulfate / Astromicin)

✓ Approved

Kyowa Kirin Co., Ltd. · therapeutic agent

What is astromicin sulfate?

astromicin sulfate is a therapeutic agent developed by Kyowa Kirin Co., Ltd.. It is approved for therapeutic indications via unknown.

Drug Profile

Brand Namesastromicin sulfate, Astromicin
CompanyKyowa Kirin Co., Ltd.
RouteUnknown
StatusApproved

Therapeutic Indications

astromicin sulfate is developed for 1 unique indication across 1 therapeutic area.

Therapeutic AreaConditionPhase
Infections and infestationsSalmonellosis✓ Approved

Related Research Articles

PubMedGenes & diseases2026-09-20

High-throughput chemical screen identifies epothilone B in modulating inflammatory bowel disease by triggering neutrophil apoptosis.

He Zhenting Z, Deng Ziling Z, Zhang Huan H, Xiang Yiming Y et al.

Inflammatory bowel disease (IBD) is a chronic inflammatory condition of the gastrointestinal tract characterized by a complex interplay of genetic, environmental, and immunological factors. Neutrophils, as a key component of the innate immune system, play a critical role in IBD pathogenesis due to their dysregulated infiltration, impaired apoptosis, and resultant epithelial damage during the disease process. Conventional approaches aimed at suppressing neutrophil activity have achieved only modest clinical efficacy and highlight the need for strategies that recalibrate neutrophil responses without compromising their essential antimicrobial functions. In this study, we employed high-throughput chemical screening using neutrophil-specific transgenic zebrafish larvae to identify compounds capable of modulating neutrophil homeostasis, and subsequently evaluating their efficacy in a dextran sodium sulfate (DSS)-induced IBD model. We identified epothilone B (Epo B), a traditional chemotherapeutic drug, as a potential therapeutic candidate for IBD. Our findings demonstrate that Epo B protects against IBD by promoting intestinal epithelial recovery, alleviating inflammatory responses, and rebalancing the gut microbiota. Mechanistically, Epo B selectively stimulates neutrophil apoptosis by targeting and enhancing Caspase-3 cleavage, thereby inhibiting neutrophilic inflammation. This study underscores the utility of in vivo high-throughput drug screening in IBD and highlights Epo B as a promising candidate for drug repurposing in IBD treatment, offering a novel therapeutic strategy by targeting neutrophil apoptosis.

PubMedWater research2026-09-19

Genesis and distribution of geogenic arsenic-contaminated groundwater under variable reducing conditions: Why bioenergetic constraints matter.

Liang Qianyong Q, Pi Kunfu K, Xie Xianjun X, Zou Wenjuan W et al.

Geogenic arsenic (As)-contaminated groundwater frequently occurs under Fe(III)- and sulfate-reducing aquifer conditions, yet its genesis and distribution cannot be explained by classical redox cascading theory. Spatial heterogeneity in dissolved organic matter (DOM) composition imposes bioenergetic constraints on microbiological electron partitioning, particularly for low-energy yield pathways (e.g., sulfate reduction). Nonetheless, the mechanisms regulating electron partitioning and As mobilization/immobilization dynamics remain elusive. By quantifying microbially available Gibbs free energy change, this research elucidates the bioenergetic control of electron partitioning under variable reducing conditions. When the Gibbs free energy change of sulfate reduction (ΔGr,SO42-) became less negative than -6.5 kJ/mol e⁻ (i.e., less exergonic), sulfate reduction was suppressed despite the presence of sulfate and electron donors, limiting sulfide production and As immobilization. Under lower energy conditions, groundwater As speciation was dominated by As(V), indicating inhibited As reductive transformation. Dynamic S-Fe redox interactions further controlled the balance between As mobilization and immobilization and thus its distribution in groundwater. When the bioenergetic advantage of Fe(III) reduction over sulfate reduction fell below -20.9 kJ/mol e⁻, DOM-donated electrons were preferentially partitioned toward Fe(III) reduction, thereby promoting As release. By grounding redox competition in bioenergetics, this study consolidates a hydrobiogeochemical framework for interpreting and predicting As cycling and distribution in free energy constrained groundwater environments.

PubMedWater research2026-09-19

High-efficiency simultaneous ammonia and nitrate removal in iron-sulfur coupled system under carbon limitation: Multi-omics insights into metabolic regulation and microbial interactions.

Miao Haohao H, Zeng Wei W, Hao Xiaojing X, Wang Ye Y et al.

Iron‑sulfur coupling is a promising process for efficient nitrate removal, but its potential for simultaneous ammonia removal remains poorly recognized. This study established a biofilter (ISBF) using sponge iron and elemental sulfur as mixed fillers. Over 228 days of operation, ISBF achieved excellent nitrate (98.1%) and ammonia (89.7%) removal within 2 h. In-situ batch tests and ¹⁵N isotope tracing revealed synergistic nitrogen removal via autotrophic denitrification (56.6%), Feammox (9.1%), and Anammox (30.9%). X-ray diffraction confirmed FeOOH formation within biofilm, providing highly available substrates for iron metabolism. The analysis of microbial and functional genes revealed that Ca. Brocadia was enriched (3.57% and 26.67% at genomic and transcriptional levels, respectively) with high expression of hzsA (cDNA/DNA: 0.73-0.88). The bottom region of ISBF drove multi-pathway nitrogen removal, and middle/upper zones promoted complete denitrification and sulfate reduction, thereby improving nitrogen loss and reducing sulfate pollution. Batch tests and multi-omics analyses suggested that Ca. Brocadia possessed the potential for dual Feammox-Anammox metabolism, thereby facilitating its enrichment and maintenance of activity under NO₂⁻-deficient startup conditions. The Thiobacillus-dominated denitrification consortia exhibited a high narG and low nirKS expression pattern, implying a robust capacity for NO₂⁻ accumulation and supporting efficient nitrogen removal through anammox metabolism. Additionally, the increased abundance of genes involved in the electron transfer process suggested that ISBF could efficiently regulate multi-pathway synergistic nitrogen removal and ensure functional robustness. Therefore, this study provides novel insights for achieving simultaneous nitrate and ammonia removal under carbon limitation.

PubMediScience2026-09-19

Multiscale damage evolution and chemo-mechanical constitutive modeling of acid-corroded sandstone.

Hao Li L, Yifan Zeng Z, Qiang Wu W, Yifan Cheng C et al.

This study investigated time-dependent chemo-mechanical deterioration of fine-grained sandstone exposed to dilute sulfuric acid representing the proton-sulfate component of acid mine drainage. Specimens were corroded for 0-20 days and examined by X-ray diffraction, scanning electron microscopy, endpoint solution chemistry, and triaxial compression at 20, 30, and 40 MPa. Results showed cumulative carbonate dissolution, cement degradation, microstructural deterioration, and mechanical weakening. After 20 days, Ca2+ and Mg2+ concentrations reached 156 and 25.3 mg/L, while peak strength decreased by 33.3%, 26.6%, and 29.9%, respectively. A nested Mohr-Coulomb comparison yielded F(4,5) = 1.284 and p = 0.388, supporting downward envelope translation but not statistically detectable slope variation. A time-dependent damage model reproduced pre-peak responses across all 15 conditions, with R 2 = 0.767-0.961. The framework links mineral alteration and microstructural damage to mechanical degradation but requires further validation for multicomponent field acid mine drainage and long-term engineering service.

PubMedNutrition and food science2026-09-19

Impact of one-year soy protein supplementation on serum metabolomic profiles: results from a randomized, placebo-controlled trial in prostate cancer patients.

Kato Ikuko I, Emani Sai Shiva Bhaskar SSB, Xu Raobo R, Yin Xinmin X et al.

This study aims to investigate global metabolomic effects of soy protein supplementation. This study was designed as an exploratory study based on residual specimens from a randomized placebo-controlled trial. The authors investigated changes in serum metabolomic and lipidomic profiles of prostate cancer patients who were assigned to soy protein (19.2g/day, 41mg isoflavones, n = 10) or a casein-based placebo (19.8g/day n = 11) for up to one year following prostatectomy. A total of 63 serum samples collected at baseline, 6 and 12months were analyzed by untargeted, global metabolomics. Partial least squares discriminant analysis, based on 493 polar metabolites and 4,706 lipids, showed clear separation of changes in metabolomic profiles between the soy and placebo groups. However, the only metabolite that was significantly different after multiple comparison adjustment was daidzein 4'-sulfate (p = 0.036). A few other metabolites/lipids were weakly associated with soy supplementation; betaine and C18-ceramide derivative increased and L-α-aminoadipic acid and a linolenic acid derivative decreased, compared with the placebo. The present study demonstrates that physiologically relevant dietary levels of soy protein supplementation close to real-life levels of consumption lead to a shift in global metabolomic profiles.

PubMedMechanisms of ageing and development2026-09-19

Endogenous Androgens, Physical and Cognitive Function in Healthy Midlife Men: A Systematic Review.

Keren Dan D, Hayek Roee R, Toledano Yoel Y, Strauss Tzipi T et al.

In men, androgens begin to decline during midlife, yet their functional implications in this period remain unclear. This review synthesizes evidence linking androgens with physical and cognitive performance in healthy middle-aged men. This systematic review followed PRISMA 2020 guidelines. PubMed, Scopus, and Embase were searched (2010-2026) for observational studies assessing testosterone and objective physical or cognitive outcomes in men aged 45-64 years or broader midlife-inclusive samples. Data extraction and quality appraisal were performed independently by two reviewers. Sixteen studies were included. Small positive associations with physical performance were observed mainly between free/bioavailable testosterone and grip-strength, with less consistent mobility findings. Midlife-focused analyses showed more consistent associations than broader age-range studies. Cognitive findings varied across domains and assessment tools. Visuospatial abilities showed the most consistent associations with testosterone, whereas verbal and episodic memory demonstrated mixed results. Dehydroepiandrosterone-sulfate showed small consistent associations with executive function and processing speed. Heterogeneity in assays and measures limited comparability. Subtle associations between endogenous-androgens and functional performance can be detected in healthy middle-aged men. However, these relationships are small, domain-specific, and obscured by methodological variability. Sensitive performance assessments and standardized hormonal evaluation are needed to clarify whether androgen profiles identify early functional vulnerability.

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