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Chiral Inversion of Pharmaceutical Drugs - Mini Review.
Aboul-Enein HY, Kannappan V, Kanthiah S. Aboul-Enein HY, et al. Comb Chem High Throughput Screen. 2023;26(15):2577-2582. doi: 10.2174/1386207326666230102123655. Comb Chem High Throughput Screen. 2023. PMID: 36593698 Review.
2-Arylpropionic acid nonsteroidal anti-inflammatory drugs (NSAIDs) provide one of the most demonstrated pharmaceutical examples of chiral inversion. Chiral inversion depends on various factors (viz. biological-, solvent-, light-, temperature-induced, etc.) and the e …
2-Arylpropionic acid nonsteroidal anti-inflammatory drugs (NSAIDs) provide one of the most demonstrated pharmaceutical examples of chiral
Polysaccharide and Cyclodextrin-Based Monolithic Chiral Stationary Phases and its Application to Chiral Separation.
Aboul-Enein HY, Kannappan V, Kanthiah S. Aboul-Enein HY, et al. Comb Chem High Throughput Screen. 2023;26(15):2583-2597. doi: 10.2174/1386207326666230208094859. Comb Chem High Throughput Screen. 2023. PMID: 36752297 Review.
The recent development of monolithic chiral stationary phases (CSPs) for liquid chromatography (LC) is mainly focused on reducing backpressure, maximizing flow rates, faster run time, column efficiency, and stability. ...In addition, the paper highlights various studies on …
The recent development of monolithic chiral stationary phases (CSPs) for liquid chromatography (LC) is mainly focused on reducing bac …
Impact of cyclofructan derivatives as efficient chiral selector in chiral analysis: An overview.
Aboul-Enein HY, Kannappan V, Kanthiah S. Aboul-Enein HY, et al. Chirality. 2022 Feb;34(2):364-373. doi: 10.1002/chir.23396. Epub 2021 Nov 21. Chirality. 2022. PMID: 34806232 Review.
The development of chiral selectors for the separation and analysis of chiral molecules has been an evolving process happening over three decades, since the introduction of the first chiral stationary phase (CSP) in 1938. The main impetus for designing new …
The development of chiral selectors for the separation and analysis of chiral molecules has been an evolving process happening …
Multilayer photonic films based on interlocked chiral-nematic cellulose nanocrystals in starch/chitosan.
Babaei-Ghazvini A, Acharya B, Korber DR. Babaei-Ghazvini A, et al. Carbohydr Polym. 2022 Jan 1;275:118709. doi: 10.1016/j.carbpol.2021.118709. Epub 2021 Sep 28. Carbohydr Polym. 2022. PMID: 34742434
In this study, a new approach to employ and control cellulose nanocrystal (CNC) chiral nematic structure as a biodegradable, intelligent material was investigated. ...This method increased the mechanical properties of produced films and created a selective reflection band …
In this study, a new approach to employ and control cellulose nanocrystal (CNC) chiral nematic structure as a biodegradable, intellig …
Enhanced Deuteron Coalescence Probability in Jets.
Acharya S, Adamová D, Adler A, Aglieri Rinella G, Agnello M, Agrawal N, Ahammed Z, Ahmad S, Ahn SU, Ahuja I, Akindinov A, Al-Turany M, Aleksandrov D, Alessandro B, Alfanda HM, Alfaro Molina R, Ali B, Alici A, Alizadehvandchali N, Alkin A, Alme J, Alocco G, Alt T, Altsybeev I, Anaam MN, Andrei C, Andronic A, Anguelov V, Antinori F, Antonioli P, Apadula N, Aphecetche L, Appelshäuser H, Arata C, Arcelli S, Aresti M, Arnaldi R, Arneiro JGMCA, Arsene IC, Arslandok M, Augustinus A, Averbeck R, Azmi MD, Badalà A, Bae J, Baek YW, Bai X, Bailhache R, Bailung Y, Balbino A, Baldisseri A, Balis B, Banerjee D, Banoo Z, Barbera R, Barile F, Barioglio L, Barlou M, Barnaföldi GG, Barnby LS, Barret V, Barreto L, Bartels C, Barth K, Bartsch E, Bastid N, Basu S, Batigne G, Battistini D, Batyunya B, Bauri D, Bazo Alba JL, Bearden IG, Beattie C, Becht P, Behera D, Belikov I, Bell Hechavarria ADC, Bellini F, Bellwied R, Belokurova S, Belyaev V, Bencedi G, Beole S, Bercuci A, Berdnikov Y, Berdnikova A, Bergmann L, Besoiu MG, Betev L, Bhaduri PP, Bhasin A, Bhat MA, Bhattacharjee B, Bianchi L, Bianchi N, Bielčík J, Bielčíková J, Biernat J, Bigot AP, Bilandzic A, Biro G, Biswas S, Bize N, Blair JT, Blau D,… See abstract for full author list ➔ Acharya S, et al. Phys Rev Lett. 2023 Jul 28;131(4):042301. doi: 10.1103/PhysRevLett.131.042301. Phys Rev Lett. 2023. PMID: 37566840
Stereoselective total synthesis of Patulolide C.
Pratapareddy B, Sreenivasulu R, Rao MVB, Raju RR. Pratapareddy B, et al. Nat Prod Res. 2020 Oct;34(19):2760-2764. doi: 10.1080/14786419.2019.1586695. Epub 2019 Jun 28. Nat Prod Res. 2020. PMID: 31250664
Stereoselective total synthesis of Patulolide C has been accomplished from easily available and inexpensive (S)-chiral epoxide. The key steps involved in the concise synthesis of Patulolide C utilizes ring opening of chiral epoxide, cleavage of 1,2-diol, deprotectio …
Stereoselective total synthesis of Patulolide C has been accomplished from easily available and inexpensive (S)-chiral epoxide. The k …
Carbohydrate Derived Organogelators and the Corresponding Functional Gels Developed in Recent Time.
Basu N, Chakraborty A, Ghosh R. Basu N, et al. Gels. 2018 May 30;4(2):52. doi: 10.3390/gels4020052. Gels. 2018. PMID: 30674828 Free PMC article. Review.
Sugars, being easily available, inexpensive, and nontoxic natural resources with multi functionality and well-defined chirality are attractive starting materials for the preparation of sugar-based gelators. ...
Sugars, being easily available, inexpensive, and nontoxic natural resources with multi functionality and well-defined chirality are a …
Measurement of the Lifetime and Λ Separation Energy of _{Λ}^{3}H.
Acharya S, Adamová D, Adler A, Aglieri Rinella G, Agnello M, Agrawal N, Ahammed Z, Ahmad S, Ahn SU, Ahuja I, Akindinov A, Al-Turany M, Aleksandrov D, Alessandro B, Alfanda HM, Alfaro Molina R, Ali B, Ali Y, Alici A, Alizadehvandchali N, Alkin A, Alme J, Alocco G, Alt T, Altsybeev I, Anaam MN, Andrei C, Andronic A, Anguelov V, Antinori F, Antonioli P, Anuj C, Apadula N, Aphecetche L, Appelshäuser H, Arata C, Arcelli S, Aresti M, Arnaldi R, Arsene IC, Arslandok M, Augustinus A, Averbeck R, Azmi MD, Badalà A, Baek YW, Bai X, Bailhache R, Bailung Y, Bala R, Balbino A, Baldisseri A, Balis B, Banerjee D, Banoo Z, Barbera R, Barile F, Barioglio L, Barlou M, Barnaföldi GG, Barnby LS, Barret V, Barreto L, Bartels C, Barth K, Bartsch E, Baruffaldi F, Bastid N, Basu S, Batigne G, Battistini D, Batyunya B, Bauri D, Bazo Alba JL, Bearden IG, Beattie C, Becht P, Behera D, Belikov I, Bell Hechavarria ADC, Bellini F, Bellwied R, Belokurova S, Belyaev V, Bencedi G, Beole S, Bercuci A, Berdnikov Y, Berdnikova A, Bergmann L, Besoiu MG, Betev L, Bhaduri PP, Bhasin A, Bhat MA, Bhattacharjee B, Bianchi L, Bianchi N, Bielčík J, Bielčíková J, Biernat J, Bigot AP, Bilandzic A, Biro G, Biswas S, Bize N, Bl… See abstract for full author list ➔ Acharya S, et al. Phys Rev Lett. 2023 Sep 8;131(10):102302. doi: 10.1103/PhysRevLett.131.102302. Phys Rev Lett. 2023. PMID: 37739380
Actin cytoskeleton self-organization in single epithelial cells and fibroblasts under isotropic confinement.
Jalal S, Shi S, Acharya V, Huang RY, Viasnoff V, Bershadsky AD, Tee YH. Jalal S, et al. J Cell Sci. 2019 Mar 7;132(5):jcs220780. doi: 10.1242/jcs.220780. J Cell Sci. 2019. PMID: 30787030 Free PMC article.
Epithelial-mesenchymal transition pushed actin cytoskeleton development from circular towards radial patterns but remained insufficient to cause chirality. Knockout of cytokeratins also did not promote actin chirality development in keratinocytes. ...Both the nucleu …
Epithelial-mesenchymal transition pushed actin cytoskeleton development from circular towards radial patterns but remained insufficient to c …
ψ(2S) Suppression in Pb-Pb Collisions at the LHC.
Acharya S, Adamová D, Adler A, Aglieri Rinella G, Agnello M, Agrawal N, Ahammed Z, Ahmad S, Ahn SU, Ahuja I, Akindinov A, Al-Turany M, Aleksandrov D, Alessandro B, Alfanda HM, Alfaro Molina R, Ali B, Alici A, Alizadehvandchali N, Alkin A, Alme J, Alocco G, Alt T, Altsybeev I, Anaam MN, Andrei C, Andronic A, Anguelov V, Antinori F, Antonioli P, Apadula N, Aphecetche L, Appelshäuser H, Arata C, Arcelli S, Aresti M, Arnaldi R, Arsene IC, Arslandok M, Augustinus A, Averbeck R, Azmi MD, Badalà A, Bae J, Baek YW, Bai X, Bailhache R, Bailung Y, Balbino A, Baldisseri A, Balis B, Banerjee D, Banoo Z, Barbera R, Barile F, Barioglio L, Barlou M, Barnaföldi GG, Barnby LS, Barret V, Barreto L, Bartels C, Barth K, Bartsch E, Baruffaldi F, Bastid N, Basu S, Batigne G, Battistini D, Batyunya B, Bauri D, Bazo Alba JL, Bearden IG, Beattie C, Becht P, Behera D, Belikov I, Bell Hechavarria ADC, Bellini F, Bellwied R, Belokurova S, Belyaev V, Bencedi G, Beole S, Bercuci A, Berdnikov Y, Berdnikova A, Bergmann L, Besoiu MG, Betev L, Bhaduri PP, Bhasin A, Bhat MA, Bhattacharjee B, Bianchi L, Bianchi N, Bielčík J, Bielčíková J, Biernat J, Bigot AP, Bilandzic A, Biro G, Biswas S, Bize N, Blair JT, Blau D, … See abstract for full author list ➔ Acharya S, et al. Phys Rev Lett. 2024 Jan 26;132(4):042301. doi: 10.1103/PhysRevLett.132.042301. Phys Rev Lett. 2024. PMID: 38335364
29 results