bioRxiv ScienceSearch

Biology subjects

Guimaraes, S. J. A.

Publications and source records attributed to Guimaraes, S. J. A..

2 recordsLinked to original sources

Penicillium purpurogenum exerts antitumor effects and ameliorates inflammations in Erlich mice model

BackgroundThe bioactive metabolites production contributes to the resistance of fungi towards adverse environmental conditions. Some metabolites often have interesting health-promoting activities. This study addressed the anti-tumoural properties of Penicillium purpurogenum isolated from a polluted lagoon in Northeastern Brazil. MethodsThe extract obtained from the polished environment strain P. purpurogenum was fermented, filtered, concentrated and lyophilized, giving rise to the Ethyl Acetate Extracellular Extract (EAE). The metabolites of the extracellular extract of P. purpurogenum were studied using direct infusion mass spectrometry. The solid Ehrlic tumor model was used to evaluate the extract antitumor activity. Female Swiss mice were divided in groups (n=10/group) as follow: Negative control (CTL-) treated with phosphate buffered solution; Positive Control (CTL+) treated with cyclophosphamide (25mg/mL); Extracts treatment at doses 4, 20 and 100mg/Kg; Animals without tumor or treatment (Sham); and animals without tumor treated with intermediate dose (EAE20). All treatments were performed intraperitoneally, daily during 15 days. After, the animals were eutanized and the tumor, lymphoid organs and serum were used for immunological, histological and biochemical parameters evaluation. ResultsThe extract was rich in meroterpenoids. All doses of the extract significantly reduced tumor size compared to CLT- and were associated with 100% survival. Histologically, the 20 and 100mg/kg doses reduced tumour-associated inflammation and tumour necrosis. The extract also reduced cellular infiltration of lymphoid organs and circulating TNF- levels when compared with CLT-. The extract did not induce weight loss and renal or hepatic toxic changes. ConclusionsThese results indicate that P. purpurogenum from a polluted marine environment produce hybrid natural products of the terpenoid pathway that exhibits immunomodulatory and antitumor properties in vivo. Thus, fungal fermentation is a biotechnological approach for the production of antitumour agents.

microbiology

Biosynthesis and chemical characterization of an intracellular red pigment of Talaromyces islandicus T101

The interest in red colorants by the food industry has been increasing recently due to its wide application in many foods and beverages, and also to the carcinogenic and teratogenic effects of some synthetic dyes. Many ascomycetous fungi are able to synthesize and produce pigments, rendering them as alternative sources of natural dyes that are independent of environmental conditions. Talaromyces islandicus TI01 was isolated from a marine-influenced environment that has been suffering for decades from anthropogenic actions in its body of water. Broth microdilution technique was performed to analyze the antimicrobial activity. For analysis of the cytotoxic activity, the MTT [3-(4,5-dimethylthiazol-2-yl) -2,5-diphenyltetrazolium bromide] assay was conducted. The chemical analysis of the extract was performed by LC/MS (liquid chromatography coupled to mass spectrometry). The minimum bactericidal concentration (MBC) of T. islandicus intracellular red pigmented extract (IRPE) for E. coli ATCC 25922 and S. aureus ATCC 25923 was 1000 g/ml. The minimum inhibitory concentration (MIC) for E. coli was 250 g/mL and for S. aureus 500 g/mL, respectively, whereas for C. tropicalis ATCC 1369 was 62.5 g/mL. IC50 for breast cancer cell line (MCF-7) was 45.43 {+/-} 1.657 g / mL. The major compounds present in the extract were: Luteoskyrin (1) and N-GABA-PP-V (6-[(Z)-2-Carboxyvinyl]-N-GABA-PP-V) (2). The results show that IRPE from T. islandicus TI01 has a prominent antibacterial activity against E. coli and S. aureus, making this pigment interesting for development of new food colorants and/or conservative agents, since these bacteria are food-borne pathogens.

microbiology