Synthesis and applications of novel resorcin[4]arene cavitands

dc.contributor.authorLeaym, Xiaoxuan
dc.date.accessioned2008-05-12T20:51:56Z
dc.date.available2008-05-12T20:51:56Z
dc.date.graduationmonthMayen
dc.date.issued2008-05-12T20:51:56Z
dc.date.published2008en
dc.description.abstractA series of methylene-bridged resorcin[4]arenes featuring electrochemically active and hydrophilic viologene-units chemically attached to their "rim"-regions have been synthesized. Depending on the choices of pendent groups (feet) and the numbers of positive charges on the "rim" (four or eight), moderate to very good solubilities in water were obtained. A fluorescent coumarin tag designed for the purpose of photophysical studies was chemically linked to the feet of some of the synthesized resorcin[4]arenes. These compounds were designed to act as guests in mycobacterial channel proteins (channel blockers). The proven host-guest interaction between resorcin[4]arenes and the mycobacterial porin MspA suggests potential application of my research in TB treatment. Both, hydrophilic nutrients and metabolites have to diffuse through the porin channels of mycobacteria because of the lack of an active transport mechanism. If these channels are successfully blocked, the mycobacteria have either to synthesize new channels, which make their outer membrane more susceptible to conventional antibiotics, or they become dormant. (3,3'-dimethyl)-4,4'-bipyridinium units are very suitable electron relays. They can be reduced stepwise to viologen monoradical cations and then to uncharged viologen diradicals which possess highly negative redox potentials, allowing them to reduce C-Cl bonds. Therefore, the deep cavitand viologen resorcin[4]arenas, are expected to bind and detoxify chlorinated hydrocarbons by reductive dechlorination. In this work, the step wise reduction process of viologen- resorcin[4]arenes and the formation of negative redox potentials of double-reduced viologen resorcin[4]arenes are demonstrated by electrochemistry studies. These results encourage future studies toward an efficient electrocatalytic system for the reductive dehalogenation of organic compounds. Besides highly charged resorcin[4]arene cavitands, the synthesis of a thiol-footed resorcin[4]arene was also attempted. The product was used for gold nanoparticle binding studies. The results of the photochemistry measurements provided a proof-of-concept for using the emission of gold nanoparticles in chemical sensors after covering their surfaces with thiol-footed resorcin[4]arenes. Two heterocylic resorcin[4]arene cavitands were synthesized for DNA-intercalation studies. The results of the photochemical measurements suggested binding between DNA and the heterocyclic resorcin[4]arenes and provided proof-of-principle for potential drug applications of this type of macrocycle.en
dc.description.advisorStefan H. Bossmannen
dc.description.degreeDoctor of Philosophyen
dc.description.departmentDepartment of Chemistryen
dc.description.levelDoctoralen
dc.description.sponsorshipNSF_EPSCoRen
dc.identifier.urihttp://hdl.handle.net/2097/745
dc.language.isoen_USen
dc.publisherKansas State Universityen
dc.subjectResorcinareneen
dc.subjectTB_Channel Blockeren
dc.subjectSupramolecular Chemistryen
dc.subjectPhysical Organic Chemistryen
dc.subjectOrganic Synthesisen
dc.subjectDNA-Intercalatoren
dc.subject.umiChemistry, Organic (0490)en
dc.subject.umiChemistry, Pharmaceutical (0491)en
dc.subject.umiChemistry, Physical (0494)en
dc.titleSynthesis and applications of novel resorcin[4]arene cavitandsen
dc.typeDissertationen

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