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To ensure proper dosage of a drug, analytical quantification of it in biofluid is necessary. Liquid chromatography mass spectrometry (LC-MS) is the conventional method of choice as it permits accurate identification and quantification. However, it requires expensive instrumentation and is not appropriate for bedside use. Using soluble epoxide hydrolase (sEH) inhibitors (EC5026 and TPPU) as examples, we report development of a nanobody-based enzyme-linked immunosorbent assay (ELISA) for such small molecules and its use to accurately quantify the drug chemicals in human samples. Under optimized conditions, two nanobody-based ELISAs were successfully established for EC5026 and TPPU with low limits of detection of 0.085 ng/mL and 0.31 ng/mL, respectively, and two order of magnitude linear ranges with high precision and accuracy. The assay was designed to detect parent and two biologically active metabolites in the investigation of a new drug candidate EC5026. In addition, the ELISAs displayed excellent correlation with LC-MS analysis and evaluation of inhibitory potency. The results indicate that nanobody-based ELISA methods can efficiently analyze drug like compounds. These methods could be easily implemented by the bedside, in the field in remote areas or in veterinary practice. This work illustrates that nanobody based assays offer alternative and supplementary analytical tools to mass spectrometry for monitoring small molecule medicines during clinical development and therapy. Attributes of nanobody based pharmaceutical assays are discussed.
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http://dx.doi.org/10.1016/j.jpha.2023.05.006 | DOI Listing |
Genetic studies have linked (encoding soluble epoxide hydrolase, sEH) and (encoding cyclooxygenase-2, COX-2) to Alzheimer's disease (AD). Elevated levels of sEH and COX-2 found in AD patients and animals suggest their involvement in neurodegeneration, glial activation, vascular dysfunction, and inflammation. This study evaluated the effects of a new dual sEH/COX-2 inhibitor, PTUPB, on cerebrovascular function and cognition in TgF344-AD rats.
View Article and Find Full Text PDFChem Biol Drug Des
September 2025
Department of Pharmacy, Birla Institute of Technology and Science (BITS) Pilani, Medchal, Telangana, India.
A novel series of triazole-linked indole derivatives was designed, synthesized, and evaluated as soluble epoxide hydrolase inhibitors (sEHIs) for their potential anticancer activity. These compounds exhibit strong binding affinity within the hydrophobic pockets of sEH, with compounds 9a and 9b emerging as the most potent inhibitors, achieving IC₅₀ values of 0.270 ± 0.
View Article and Find Full Text PDFACS Omega
August 2025
Institute of Chemistry, Universidade Federal do Rio Grande do Sul, Av. Bento Gonçalves, 9500, Porto Alegre, RS 91501-970, Brazil.
This review examines the role of ionic liquids (ILs) in the catalytic carbonation of epoxides for the synthesis of cyclic carbonates, focusing on the key factors that influence reaction efficiency. The nucleophilicity and basicity of the anions in IL catalysts are highlighted as critical components for promoting the cycloaddition reaction with CO. The solubility and ionicity of the ILs also significantly affect the reaction, with higher ionicity leading to better solubilization and catalytic performance.
View Article and Find Full Text PDFJ Transl Med
August 2025
School of Stomatology, Dalian Medical University, No. 9 West Section, Lvshun South Road, Dalian, 116044, P.R. China.
Background: Macrophage immunomodulation has emerged as a novel intervention and therapeutic strategy for temporomandibular joint osteoarthritis (TMJOA), potentially serving as a key approach for reducing synovial inflammation and promoting cartilage repair. The soluble epoxide hydrolase inhibitor (sEHi), TPPU, has shown potential therapeutic effects against inflammatory diseases and osteogenesis by elevating endogenous Epoxyeicosatrienoic acids (EETs). However, it remains largely unknown whether TPPU can reduce inflammation and cartilage degradation in the TMJOA.
View Article and Find Full Text PDFACS Med Chem Lett
August 2025
Smith, Gambrell & Russell LLP, 1105 W. Peachtree Street NE, Atlanta, Georgia 30309, United States.
Provided herein are novel spiropiperidine urea-derived compounds as soluble epoxide hydrolase inhibitors, pharmaceutical compositions, use of such compounds in treating diabetic retinopathy, and processes for preparing such compounds.
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