usnic acid
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2022 ◽  
Author(s):  
Betül Çolak ◽  
Demet Cansaran-Duman ◽  
Gamze Guney Eskiler ◽  
Katalin Földes ◽  
Sevcan Yangın

2022 ◽  
Vol 71 (1) ◽  
pp. 127-134
Author(s):  
Maulidiyah Maulidiyah ◽  
Akhmad Darmawan ◽  
Wahyu Wahyu ◽  
Andi Musdalifah ◽  
La Ode Agus Salim ◽  
...  

2021 ◽  
Vol 14 (12) ◽  
pp. 1293
Author(s):  
Elżbieta Studzińska-Sroka ◽  
Aleksandra Majchrzak-Celińska ◽  
Przemysław Zalewski ◽  
Dominik Szwajgier ◽  
Ewa Baranowska-Wójcik ◽  
...  

Lichens are a source of chemical compounds with valuable biological properties, structurally predisposed to penetration into the central nervous system (CNS). Hence, our research aimed to examine the biological potential of lipophilic extracts of Parmelia sulcata, Evernia prunastri, Cladonia uncialis, and their major secondary metabolites, in the context of searching for new therapies for CNS diseases, mainly glioblastoma multiforme (GBM). The extracts selected for the study were standardized for their content of salazinic acid, evernic acid, and (−)-usnic acid, respectively. The extracts and lichen metabolites were evaluated in terms of their anti-tumor activity, i.e. cytotoxicity against A-172 and T98G cell lines and anti-IDO1, IDO2, TDO activity, their anti-inflammatory properties exerted by anti-COX-2 and anti-hyaluronidase activity, antioxidant activity, and anti-acetylcholinesterase and anti-butyrylcholinesterase activity. The results of this study indicate that lichen-derived compounds and extracts exert significant cytotoxicity against GBM cells, inhibit the kynurenine pathway enzymes, and have anti-inflammatory properties and weak antioxidant and anti-cholinesterase properties. Moreover, evernic acid and (−)-usnic acid were shown to be able to cross the blood-brain barrier. These results demonstrate that lichen-derived extracts and compounds, especially (−)-usnic acid, can be regarded as prototypes of pharmacologically active compounds within the CNS, especially suitable for the treatment of GBM.


2021 ◽  
Vol 192 ◽  
pp. 112948
Author(s):  
Agnieszka Galanty ◽  
Michał Węgrzyn ◽  
Paulina Wietrzyk-Pełka ◽  
Maria Fołta ◽  
Mirosław Krośniak ◽  
...  

Author(s):  
E. F. Semyonova ◽  
I. M. Teplitskaya ◽  
M. A. Goncharov ◽  
D. A. Goncharov

Based on the content analysis of the sources of patent and scientific literature on the biotechnology of lichens as a medicinal raw material, systematized modern information is provided, as well as original experimental data regarding the cultivation of botanical species of lichens of various ecological and geographical groups under controlled conditions. Since ancient times, lichens havebeen used as medicines and are included in the pharmacopoeias of various countries. At present, methodological approaches have been developed for the cultivation of lichens (genera Usnea, Rhinocarpon, Umbilicara ) and their components: phycobiont (genera Nostoc, Chlorella ), mycobiont ( Petrusaria pertiza, Leydea parasema, Alternaria sp.). The main biologically active compounds (usnic acid, lichenin, cetrarin, water-soluble vitamins, calcium oxalate) and the pharmacological effects caused by them (antimicrobial, stimulating appetite, enveloping, anti-inflammatory, anti-burn, regenerating). Biotechnological approaches can be implemented for species cloning, reproduction, creation of a bank of cell cultures of lichens and their components in order to preserve economically valuable producers in an active state and develop technologies for obtaining biomass and pharmacologically valuable biologically active compounds.


2021 ◽  
Author(s):  
Artem Rogachev ◽  
Vladimir Bykov ◽  
Klim Leonov ◽  
Olga Luzina ◽  
Andrey Pokrovsky ◽  
...  

2021 ◽  
Author(s):  
Aleksandr Filimonov ◽  
Olga Luzina ◽  
Nadezhda Dyrkheeva ◽  
Olga Lavrik ◽  
Nariman Salakhutdinov

2021 ◽  
Vol 22 (21) ◽  
pp. 11307
Author(s):  
Ondrej Chlumsky ◽  
Heidi J. Smith ◽  
Albert E. Parker ◽  
Kristen Brileya ◽  
James N. Wilking ◽  
...  

In the food industry, the increasing antimicrobial resistance of food-borne pathogens to conventional sanitizers poses the risk of food contamination and a decrease in product quality and safety. Therefore, we explored alternative antimicrobials N-acetyl-L-cysteine (NAC), rhamnolipids (RLs), and usnic acid (UA) as a novel approach to prevent biofilm formation and reduce existing biofilms formed by important food-borne pathogens (three strains of Salmonella enterica and two strains of Escherichia coli, Listeria monocytogenes, Staphylococcus aureus). Their effectiveness was evaluated by determining minimum inhibitory concentrations needed for inhibition of bacterial growth, biofilm formation, metabolic activity, and biofilm reduction. Transmission electron microscopy and confocal scanning laser microscopy followed by image analysis were used to visualize and quantify the impact of tested substances on both planktonic and biofilm-associated cells. The in vitro cytotoxicity of the substances was determined as a half-maximal inhibitory concentration in five different cell lines. The results indicate relatively low cytotoxic effects of NAC in comparison to RLs and UA. In addition, NAC inhibited bacterial growth for all strains, while RLs showed overall lower inhibition and UA inhibited only the growth of Gram-positive bacteria. Even though tested substances did not remove the biofilms, NAC represents a promising tool in biofilm prevention.


2021 ◽  
Vol 22 (21) ◽  
pp. 11336
Author(s):  
Nadezhda S. Dyrkheeva ◽  
Aleksandr S. Filimonov ◽  
Olga A. Luzina ◽  
Kristina A. Orlova ◽  
Irina A. Chernyshova ◽  
...  

Tyrosyl-DNA phosphodiesterase 1 (TDP1) catalyzes the cleavage of the phosphodiester bond between the tyrosine residue of topoisomerase 1 (TOP1) and the 3′ phosphate of DNA in the single-strand break generated by TOP1. TDP1 promotes the cleavage of the stable DNA–TOP1 complexes with the TOP1 inhibitor topotecan, which is a clinically used anticancer drug. This article reports the synthesis and study of usnic acid thioether and sulfoxide derivatives that efficiently suppress TDP1 activity, with IC50 values in the 1.4–25.2 μM range. The structure of the heterocyclic substituent introduced into the dibenzofuran core affects the TDP1 inhibitory efficiency of the compounds. A five-membered heterocyclic fragment was shown to be most pharmacophoric among the others. Sulfoxide derivatives were less cytotoxic than their thioester analogs. We observed an uncompetitive type of inhibition for the four most effective inhibitors of TDP1. The anticancer effect of TOP1 inhibitors can be enhanced by the simultaneous inhibition of PARP1, TDP1, and TDP2. Some of the compounds inhibited not only TDP1 but also TDP2 and/or PARP1, but at significantly higher concentration ranges than TDP1. Leader compound 10a showed promising synergy on HeLa cells in conjunction with the TOP1 inhibitor topotecan.


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