selleckchem bioactive library (Selleck Chemicals)
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Selleckchem Bioactive Library, supplied by Selleck Chemicals, used in various techniques. Bioz Stars score: 95/100, based on 107 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/compounds/Bioactive+Compound+Library-I/pmc12866977-68-5-5
Average 95 stars, based on 107 article reviews
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Docking Assay:Article Title: Chromobox 2 inhibition: A novel activity of alisertib, an Aurora A kinase inhibitor Article Snippet: .. A computational-based molecular docking screen was performed using the Article Title: Chromobox 2 inhibition: A novel activity of alisertib, an Aurora A kinase inhibitor Article Snippet: .. A) Molecular docking of the In Silico:Article Title: Duloxetine ameliorates cerebral ischemic injury by inhibiting autophagy. Article Snippet: To cite this article: Alice Viotti , Claudia Molinaro , Jessica Perego , Andrea Fossaghi , Chiara Parravicini , Eliana Laurenzano , Antonella Borreca , Marco Piccoli , Luigi Anastasia , Susanna Manenti , Annamaria Finardi , Alessandra Mandelli , Michela Matteoli , Ivano Eberini , Paola Panina , Gianvito Martino & Luca Muzio (05 Mar 2026): Duloxetine ameliorates cerebral ischemic injury by inhibiting autophagy, Autophagy, DOI: 10.1080/15548627.2026.2641616 Functional Assay:Article Title: Duloxetine ameliorates cerebral ischemic injury by inhibiting autophagy. 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Article Snippet: To cite this article: Alice Viotti , Claudia Molinaro , Jessica Perego , Andrea Fossaghi , Chiara Parravicini , Eliana Laurenzano , Antonella Borreca , Marco Piccoli , Luigi Anastasia , Susanna Manenti , Annamaria Finardi , Alessandra Mandelli , Michela Matteoli , Ivano Eberini , Paola Panina , Gianvito Martino & Luca Muzio (05 Mar 2026): Duloxetine ameliorates cerebral ischemic injury by inhibiting autophagy, Autophagy, DOI: 10.1080/15548627.2026.2641616 In Vitro:Article Title: Duloxetine ameliorates cerebral ischemic injury by inhibiting autophagy. Article Snippet: To cite this article: Alice Viotti , Claudia Molinaro , Jessica Perego , Andrea Fossaghi , Chiara Parravicini , Eliana Laurenzano , Antonella Borreca , Marco Piccoli , Luigi Anastasia , Susanna Manenti , Annamaria Finardi , Alessandra Mandelli , Michela Matteoli , Ivano Eberini , Paola Panina , Gianvito Martino & Luca Muzio (05 Mar 2026): Duloxetine ameliorates cerebral ischemic injury by inhibiting autophagy, Autophagy, DOI: 10.1080/15548627.2026.2641616 In Vivo:Article Title: Duloxetine ameliorates cerebral ischemic injury by inhibiting autophagy. Article Snippet: To cite this article: Alice Viotti , Claudia Molinaro , Jessica Perego , Andrea Fossaghi , Chiara Parravicini , Eliana Laurenzano , Antonella Borreca , Marco Piccoli , Luigi Anastasia , Susanna Manenti , Annamaria Finardi , Alessandra Mandelli , Michela Matteoli , Ivano Eberini , Paola Panina , Gianvito Martino & Luca Muzio (05 Mar 2026): Duloxetine ameliorates cerebral ischemic injury by inhibiting autophagy, Autophagy, DOI: 10.1080/15548627.2026.2641616 Biomarker Discovery:Article Title: Duloxetine ameliorates cerebral ischemic injury by inhibiting autophagy. 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As such, this version is no longer the Accepted Manuscript, but it is not yet the definitive Version of Record; we are providing this early version to give early visibility of the article. Article Title: ‘Smart’ hydrogel for the radiosensitization and sustained delivery of therapeutics triggered by irradiation Article Snippet: .. Compound from the Article Title: RNaseH2 inhibition potentiates temozolomide response in patient derived glioblastoma cells. Article Snippet: .. Within Compound library Number of compounds Asinex PPI (Non-Macrocyclic) 966 BioMol Kinase Inhibitor Library 70 BioMol Known bioactives 79 ChemBridge Diversity 17255 ChemDiv ChemBioNet 16,308 Enamine Diversity 27698 Enzo Chemical Genomics 207 Enzo Pathway Targeting 205 Enzo Receptor De-Orphaning 70 MedChemExpress Epigenetics 2186 Prestwick Chemical Library (Approved Drugs) Protein-Protein interactions:Article Title: RNaseH2 inhibition potentiates temozolomide response in patient derived glioblastoma cells. Article Snippet: .. Within Compound library Number of compounds Asinex PPI (Non-Macrocyclic) 966 BioMol Kinase Inhibitor Library 70 BioMol Known bioactives 79 ChemBridge Diversity 17255 ChemDiv ChemBioNet 16,308 Enamine Diversity 27698 Enzo Chemical Genomics 207 Enzo Pathway Targeting 205 Enzo Receptor De-Orphaning 70 MedChemExpress Epigenetics 2186 Prestwick Chemical Library (Approved Drugs) |

![Reaction schemes and LC-MS analysis of Pp UGTs reactions with diosgenin and pennogenin . ( a ) Biosynthesis of <t>trillin</t> mediated by UGT91BP2 and UGT703R1–3 through transferring glucose from UDP-glucose to the C-3 OH position of diosgenin. ( b ) Extracted ion chromatograms (EICs) of the in vitro enzyme activity assays of recombinant UGT91BP2 and UGT703R1–3 with UDP-glucose and diosgenin showing the formation of trillin, as compared to the authentic trillin standard. Control is the empty expression vector. ( c ) MS spectra of the enzymatic reaction products in hydrogen and sodium ion adducts compared to the fragmentation pattern of the trillin standard. The product molecular ions [M + H] + and [M +Na] + and the feature fragment ion [M + H − Glc] + with m / z 415.32 are marked. Of note, additional peaks observed in the diosgenin EIC ( m / z 415.32) for UGT703R1–3 might correspond to substrate isomeric impurities, in-source adducts, or minor non-enzymatic by-products; these peaks, which arose from the extracted ion flow of the substrate m / z , did not co-elute with the product, trillin , and therefore did not affect the interpretation of the product formation. ( d ) Biosynthesis of pennogenin 3- O -glucoside mediated by the UGT703R1–3 through transferring glucose from UDP-glucose to the C-3 OH position of pennogenin. ( e ) EICs of the in vitro enzyme activity assays of recombinant UGT91BP2 and UGT703R1–3 with UDP-glucose and pennogenin showing the formation of pennogenin 3- O -glucoside, compared to the control empty expression vector. ( f ) MS/MS spectra ([M + H – Glc] + and [M + H – Glc − H 2 O] + ) of the enzymatic reaction products.](https://pub-med-central-images-cdn.bioz.com/pub_med_central_ids_ending_with_3502/pmc13123502/pmc13123502__gr2.jpg)


