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Chapter 15: Cyclic peptides as privileged structures
Book PartAbstract:Palabras claves:Autores:Alberício F., B. G. De la Torre, Cherkupally P., Govender T., Jad Y.E., Kruger H.G., Ramesh S.Fuentes:scopusChemical platforms for peptide vaccine constructs
Book PartAbstract: Knowledge of the sequences and structures of proteins from pathogenic microorganisms has been put toPalabras claves:Chemical approaches, MAPS, Peptide epitopes, Synthesis, VaccineAutores:Alberício F., B. G. De la Torre, Cherkupally P., Govender T., Kruger H.G., Ramesh S.Fuentes:scopusAn efficient solid-phase strategy for total synthesis of naturally occurring amphiphilic marine siderophores: Amphibactin-T and moanachelin ala-B
ArticleAbstract: Microorganisms such as bacteria, fungi and some plants secrete an abundance of suites of low moleculPalabras claves:Autores:Alberício F., B. G. De la Torre, Cherkupally P., Govender T., Kruger H.G., Ramesh S.Fuentes:scopusAn improved and efficient strategy for the total synthesis of a colistin-like peptide
ArticleAbstract: Polymyxins have re-emerged as the last-line therapy for treatment against extremely multi-drug resisPalabras claves:Antimicrobial peptide, colistin, Convergent method, SynthesisAutores:Alberício F., B. G. De la Torre, Govender T., Kruger H.G., Ramesh S.Fuentes:scopus2-Methyltetrahydrofuran and cyclopentyl methyl ether for green solid-phase peptide synthesis
ArticleAbstract: 2-MeTHF and CPME were evaluated as greener alternatives for the most employed solvents in peptide syPalabras claves:2-methyltetrahydrofuran, Cyclopentyl methyl ether, Green solvents, Peptide synthesis, Solid-phase peptide synthesisAutores:Acosta G.A., Alberício F., B. G. De la Torre, El-Faham A., Govender T., Jad Y.E., Khattab S.N., Kruger H.G.Fuentes:scopus6-(bromomaleimido)hexanoic acid as a connector for the construction of multiple branched peptide platforms
ArticleAbstract: We report on a novel and user-friendly platform based on a bromomaleimide moiety to obtain branchedPalabras claves:Autores:Alberício F., B. G. De la Torre, Cherkupally P., Govender T., Kruger H.G., Ramesh S.Fuentes:scopusA Facile Synthesis of NODASA-Functionalized Peptide
ArticleAbstract: Herein, we report a mild and efficient synthesis of a NODASA-functionalized peptide, which was initiPalabras claves:bifunctional chelators, NODASA, NOTA, peptide, PetAutores:Alberício F., Arvidsson P.I., B. G. De la Torre, Chinthakindi P.K., Dutta J., Govender T., Kruger H.G., Naicker T.Fuentes:scopusActive targeting of CD4<sup>+</sup>T lymphocytes by PEI-capped, peptide-functionalized gold nanoparticles
ArticleAbstract: Active targeting is a promising approach for the treatment of viral infections. In particular, site-Palabras claves:active targeting, anti-CD4 peptide, gold nanoparticle, hiv, UptakeAutores:Alberício F., B. G. De la Torre, Kruger H.G., Ncobeni N., Parboosing R.Fuentes:scopusGreen Solid-Phase Peptide Synthesis (GSPPS) 3. Green Solvents for Fmoc Removal in Peptide Chemistry
ArticleAbstract: DMF (N,N-dimethylformamide) is the most widely used solvent for Fmoc-SPPS, which is the conventionalPalabras claves:Fmoc, Green solvents, Peptide aggregation, Protecting groups, Solid-phase peptide synthesis, valerolactoneAutores:Alberício F., B. G. De la Torre, El-Faham A., Govender T., Jad Y.E., Kruger H.G.Fuentes:scopusGreen Solid-Phase Peptide Synthesis 2. 2-Methyltetrahydrofuran and Ethyl Acetate for Solid-Phase Peptide Synthesis under Green Conditions
ArticleAbstract: N,N-Dimethylformamide (DMF), N-methyl-2-pyrrolidone, and dichloromethane (DCM) are the most widely uPalabras claves:2-MeTHF, Green Chemistry, Peptide aggregation, Polyethylene glycol resins, Solid-phase peptide synthesis, solid-phase synthesisAutores:Acosta G.A., Alberício F., B. G. De la Torre, El-Faham A., Govender T., Jad Y.E., Kruger H.G.Fuentes:scopus