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Novel riboflavin derivatives and novel ruthenium (II) polyazaaromatic complexes with potential application in the treatment and diagnosis of leishmaniasis

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Author(s):
Alexandre Vieira Silva
Total Authors: 1
Document type: Doctoral Thesis
Press: São Paulo.
Institution: Universidade de São Paulo (USP). Conjunto das Químicas (IQ e FCF) (CQ/DBDCQ)
Defense date:
Examining board members:
Mauricio da Silva Baptista; Josef Wilhelm Baader; Noboru Hioka; Alvaro Takeo Omori; Cassius Vinicius Stevani
Advisor: Mauricio da Silva Baptista
Abstract

The leishmaniases belong to a group of infectious diseases caused by a parasite of the genus Leishmania. This disease manifests as the visceral or the cutaneous forms and the treatment of both types is based on chemotherapies with antimony drugs. The application of these drugs, however, presents drawbacks like several side effects and dissemination of parasites resistant to this conventional treatment. Thus, there is a growing need to develop new drugs, as well as new modalities of treatment and diagnosis. In this work, novel photosensitizers derived from riboflavin (vitamin B2) with potential application in the treatment of cutaneous leishmaniasis (by photodynamic therapy) were synthesized. Also, novel Ru (II) complexes with potential usage as luminescent sensors of antimony were synthesized. The riboflavin derivatives were obtained by using vitamin B2 as the starting material, and the chemical transformations were based on acylation of the hydroxyl groups from the ribityl side chain and alkylation of nitrogen 3 of the isoalloxazine ring system.These structural modifications yielded a library of photosensitizers containing hydrophilic, hydrophobic, amphiphilic or ionic moieties, which provide molecules for a study of the structure-activity relationship. By optimizing these synthetic routes, two novel cationic riboflavin derivatives were obtained in good yield (up to 68%). It has been shown that the chemical modifications performed have not significantly affected the photophysical properties of the riboflavin derivatives. All compounds are fluorescent and able to photosensitize singlet oxygen in yields similar to riboflavin itself (Φ&#916 ≈ 0,5). On the other hand, these structural modifications varied the physic-chemical properties related to solubility and partition coefficient of the derivatives. The obtained derivatives were tested against promastigotes of Leishmania major using blue LED (470 nm). The photosensitizers displayed low dark toxicity (EC50 (Effective Concentration 50%) > 100 µM for all the studied compounds) and all derivatives showed greater phototoxicity (EC50 up to 5µM) when compared to riboflavin (EC50 = 50µM). It was observed that the phototoxicity of the riboflavin derivatives is strongly associated with the lipophilicity of photosensitizer. A Ru (II) complex that responds in the presence of antimony was prepared from Ru(bpz)2Cl2 and a phenanthroline ligand containing a bithiophene group (bithiophen-imidazo-phen). This complex can be potentially applied in the construction of luminescent sensors of antimony. It has been demonstrated that the novel complex [Ru(bpz)2(bitiofeno-imidazo-fen)2+] displays low red luminescence due to the self-quenching promoted by the bithiophen moiety. However, preliminary studies have evidenced that, upon addition of SbCl3 or antimony tartrate to the media, the emission intensifies in the red region of the spectrum. Due to the formation of the chelate Sb-bithiophene, the elf-quenching of the electronic excited species occurs less efficiently. (AU)

FAPESP's process: 10/08068-5 - Synthesis, structural characterization and photobiological studies of riboflavin derivatives
Grantee:Alexandre Vieira Silva
Support Opportunities: Scholarships in Brazil - Doctorate