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dequalinium chloride (Naxyl / Fluomizin / Donaxyl)

✓ Approved

Medinova · 小分子 · 小分子

什么是 dequalinium chloride?

dequalinium chloride 是一种小分子,由Medinova研发。该药已获批,用于治疗相关适应症,给药途径:Intravaginal。

药物档案

商品名Naxyl, Fluomizin, Donaxyl
公司Medinova
药物类别小分子
给药途径Intravaginal
状态Approved

治疗适应症

dequalinium chloride 针对 4 个适应症,涉及 1 个治疗领域。

治疗领域疾病/病症分期
Infections and infestationsVaginal infection✓ Approved
Infections and infestationsStreptococcal infection✓ Approved
Infections and infestationsWound infection fungal✓ Approved
Infections and infestationsTrichomoniasis intestinal✓ Approved

相关研究文献

PubMedFrontiers in pediatrics2026-08-06

Resolution of recurrent pancreatitis and nutritional recovery with CFTR modulator therapy in CFTR-related disorder: a case report.

Jose Folashade A FA

Cystic fibrosis transmembrane conductance regulator (CFTR) modulators have transformed cystic fibrosis care, but their role in CFTR-related disorders is not well defined. This is a 19 year old man who presented with recurrent acute pancreatitis beginning at 12-14 years of age, with no history of sinusitis, pneumonia, or asthma. He had poor weight gain, indeterminate sweat chloride values (43-49 mmol/L), and carried a single F508del CFTR mutation. He experienced recurrent episodes of parotitis between 8 and 10 years of age. Despite preserved exocrine pancreatic function and the absence of pulmonary symptoms, he experienced persistent nutritional failure despite appetite stimulation (cyproheptadine and mirtazapine). At 18 years of age, elexacaftor/tezacaftor/ivacaftor (ETI) was initiated based on genotype eligibility and the patient's clinical phenotype. Over 19 months, he achieved complete resolution of pancreatitis and substantial weight gain (54.9-69.2 kg; BMI 19.1-23.7 kg/m2). Pulmonary function remained normal and sweat chloride decreased to 42 mmol/L. This case highlights the potential benefit of CFTR modulators in CFTR-related disorders and supports consideration of therapy in selected non-classic presentations. Although weight gain began after initiation of mirtazapine, it continued following ETI and was accompanied by improvement in gastrointestinal symptoms and resolution of pancreatitis episodes.

PMID 42558769
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PubMedNature2026-08-06

Upcycling of polyvinyl chloride into polyalphaolefin lubricants.

Munyaneza Nuwayo Eric E, Thompson Connor C, Civiello Abby A, DiMarco Adrian A et al.

Polyvinyl chloride (PVC) is a thermoplastic used ubiquitously in households and industry owing to its light weight, mechanical strength, durability, low cost and ultraviolet and fire resistance1,2. With a production volume of about 60 million tonnes annually2, post-consumer and post-industrial PVC waste pose marked environmental challenges, such as leaching chlorohydrocarbons and additives, which contaminate groundwater and soil1-4. To address the formidable challenge of recycling PVC and achieving carbon circularity, valorization into high-value products is essential to mitigate the associated costs and offer high financial incentives for reusing plastic waste5-14. Here we report a method for upcycling PVC into high-value lubricants with controllable viscosities. Using AlCl3 at a mild temperature of 70 °C, PVC undergoes dechlorination, alkylation and chain scission, producing vinyl-derived polyalphaolefins (vPAO). PVC serves as an effective template for the alkylation of α-olefins of various chain lengths, producing vPAO with limited short branches in the backbone without the need for metallocene catalysts essential to current PAO technology. The PVC-derived lubricants exhibit tunable molar masses, kinematic viscosities at 100 °C (KV100 ≈ 14.9-26.3 centistokes), a low coefficient of friction (COF ≈ 0.08-0.15) and a high viscosity index (VI up to 130). This work highlights an economical approach to using PVC as a low-cost feedstock to synthesize high-value lubricants with superior tribological properties, meeting the demand for sustainability in both the plastic and lubricant industries.

PMID 42557332
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PubMedJournal of hazardous materials2026-08-06

Hydrothermal carbonization coupled with steam gasification upcycles biomass-PVC waste into CO2-suppressed syngas.

Liu Quan Q, Zhang Guanyu G, Zhang Xuesong X, Han Lujia L

Thermochemical upcycling is a promising waste-to-energy pathway, but it faces technical challenges, particularly the heteroatom content in plastics and the high ash content in biomass. This study introduces an integrated hydrothermal carbonization-steam gasification (HTC-SG) strategy for the synergistic valorization of cow manure and polyvinyl chloride (PVC). Systematic experiments revealed that HTC treatment effectively dechlorinated PVC and removed ∼40% of ash through pH-dependent mineral dissolution. Subsequent steam gasification of hydrochar generated H2-rich syngas and significantly suppressed CO2 (min. 5.78 vol%). The carbonaceous char exhibited enhanced structural properties, including elevated carbon content (∼45%) and well-developed mesoporous architectures, indicating potential as functional carbon materials. Mechanistic analysis elucidated that inherent ash components, especially alkali and alkaline earth metals, regulated both gas composition and byproduct evolution by catalyzing char gasification, water-gas shift reactions, and tar cracking. Overall, the HTC-SG system provides an effective approach for co-processing biomass-plastic mixtures while contributing to sustainable waste management and renewable energy production.

PMID 42556161
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PubMedThe journal of physical chemistry. B2026-08-06

Deep Eutectic Solvents Containing Symmetric 1,3-Diether-2-propanol Hydrogen Bond Donors Based on Glycerol Skeletons.

Bhawna, Pandey Siddharth S, Qian Shuai S, Ezendu Sophia Chioma SC et al.

The unique properties, renewability, and market availability of glycerol (and related molecules) make it an attractive candidate for transformation in numerous applications. The present work utilizes molecules containing glycerol skeletons for the preparation of deep eutectic solvents (DESs). The field of chemical sciences is rapidly adopting DESs as an alternative medium. Not only are the components of DESs inexpensive and often greener than conventional alternatives, but there is a large variety of identified components that can be combined to form DESs with different physicochemical properties. This study examines a class of ternary DESs that are derived from H-bond donors (HBDs) based on a symmetric 1,3-diether-2-propanol motif obtained from the reaction of epichlorohydrin with small alcohols, with choline chloride (CC) acting as the H-bond acceptor. Here we study the density, dynamic viscosity, and refractive index (RI) of these ternary DESs within the temperature range 293.15-353.15 K. Featuring DTEP as an HBD2 component in DES- DTEP:CC:DFE exhibits a higher density compared to other DESs that have been prepared, which can be explained by the higher concentration of F atoms in its structural framework.

PMID 42560099
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PubMedBioorganic chemistry2026-08-06

Hypochlorite detection via the irreversible imine-bond cleavage by a practical fluorescent sensor: applications to smartphone-assisted environmental water and food bioimaging.

Lee Ayin A, Batsaikhan Otgontsetseg O, Lee Han-Seul HS, Kim Ki-Tae KT et al.

Abnormally high levels of hypochlorite (ClO-) can cause serious damage to environmental and biological systems, thereby highlighting the necessity for detectors capable of sensitive monitoring and quantification of ClO- in these systems. In this study, we synthesized and evaluated a practical and portable fluorescent turn-off sensor, BHMT-Cl ((E)-2-(2-(3-(benzo[d]thiazol-2-yl)-2-hydroxy-5-methylbenzylidene)hydrazineyl)-N,N,N-trimethyl-2-oxoethan-1-aminium chloride), for the detection of ClO-. BHMT-Cl exhibited selective and sensitive detection of ClO- in pure water via a green fluorescence turn-off, with a critically low detection limit of 2.78 μM. The sensing mechanism was elucidated to involve the cleavage of the imine bond in BHMT-Cl, supported by 1H NMR titration, ESI-mass analysis, FT-IR and DFT calculations. BHMT-Cl was readily applied for the sensitive detection and quantification of ClO- in diverse environmental water samples and demonstrated portability through smartphone-based analysis and test kits. In biological applications, BHMT-Cl enabled bioimaging of ClO- in zebrafish as well as in fungal and plant systems, confirming its broad applicability. Overall, BHMT-Cl showed strong potential as a versatile tool for monitoring ClO- in biological and environmental matrix.

PMID 42556267
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PubMedInternational journal of biological macromolecules2026-08-06

Microwave-assisted DES pretreatment of giant reed to produce lignocellulosic nanofibrils for transparent, hazy, and UV-blocking composite films.

Wang Junya J, Gao Peisen P, Zhang An A, Chen Sheng S et al.

Lignocellulosic nanofibrils (LCNFs) are promising bio-based nanofillers for constructing multifunctional polymer composite films, yet their efficient production from raw lignocellulosic biomass remains challenging. Herein, microwave-assisted deep eutectic solvent pretreatment (MW-DES) coupled with high-pressure homogenization (HPH) was used to produce LCNFs from giant reed (Arundo donax L.). An acidic benzyltrimethylammonium chloride/oxalic acid dihydrate (BTMAC/OAD) DES enabled rapid fractionation within 10-20 min by selectively removing hemicellulose and part of the lignin, yielding cellulose-rich solid residues (SRs) that were readily nanofibrillated. The obtained LCNFs exhibited high aspect ratios, with diameters mainly in the 2-12 nm range (all below 20 nm) and lengths typically ranging from approximately 300 to 600 nm. FTIR analysis supported the retention of residual lignin, whereas XRD confirmed the preservation of the cellulose I allomorph and an increase in apparent crystallinity relative to the raw material (RM). When incorporated into polyvinyl alcohol (PVA), the LCNFs imparted pronounced UV attenuation across 200-400 nm and tunable haze while maintaining high visible-light transparency and substantially improving mechanical strength. The best-performing film reached a tensile strength of 72.9 MPa, approximately 143% higher than neat PVA. This work demonstrates a rapid route to LCNFs and highlights their potential as multifunctional reinforcements for transparent, light-managing polymer composite films.

PMID 42556669
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