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NRF2 REGULATORS

Provided are aryl analogs?pharmaceutical compositions containing them and their use as NRF2 regulators.

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2,4-Disubstituted thiazoles as multitargated bioactive molecules

Thiazoles are important heterocyclics exhibiting boundaryless biological activities, such as antibacterial, antifungal, anti-inflammatory, antitumor, antitubercular, antidiabetic, antiviral, and antioxidant. Substituents on a particular position of the thiazole ring affect the biological outcomes to a great extent. Therefore, researchers have synthesized compounds containing the thiazole ring with variable substituents as target structures, and evaluated their biological activities. The present review describes the biological importance of recently developed 2,4-disubstituted thiazole derivatives. Moreover, we have thrown light on various targets of 2,4-disubstituted thiazoles through which they induce biological effects, which will be helpful to those who are working on the design and structure?activity relationship of bioactive molecules.

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Heterocyclic scaffolds and carbohydrate appendages in synthetic peptides: Review

This review presents a brief account of introduction of heterocyclic rings and carbohydrate appendages in peptide conjugates,and their effect on solution-phase self-assembling properties. Such scaffolds bring in geometrical considerations, metal binding sites and water solubility properties,for interesting applications of self-assembled soft matter.

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Discovery of Thiazolidin-2-one

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Opportunities and challenges of using five-membered ring compounds as promising antitubercular agents

Tuberculosis (TB), a chronic infectious disease, is one of the greatest risks to human beings and 10 million people were diagnosed with TB and 1.6 million died from this disease in 2017. In addition, with the emergence of multidrug-resistant tuberculosis (MDR-TB) and extensively drug-resistant tuberculosis (XDR-TB), the TB situation has become even worse, which has aggravated the mortality and spread of this disease. To overcome this problem, research into novel antituberculosis agents with enhanced activities against MDR-TB, reduced toxicity, and shortened duration of therapy is of great importance. Fortunately, many novel potential anti-TB drug candidates with five-membered rings, which are most likely to be effective against sensitive and resistant strains, have recently entered clinical trials. Different five-membered rings such as furans, pyranoses, thiazoles, pyrazolines, imidazoles, oxazolidinone, thiazolidins, isoxazoles, triazoles, oxadiazoles, thiadiazoles, and tetrazoles have been designed, prepared, and evaluated for their antimycobacterial activity against Mycobacterium tuberculosis. In this article, we highlight the recent advances made in the discovery of novel five-membered ring compounds and focus on their antitubercular activities, toxicity, structure?activity relationships, and mechanisms of action.

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Recent advances in the discovery of HIF-1alpha-p300/CBP inhibitors as anti-cancer agents

Hypoxia-inducible factor-1 (HIF-1), a heterodimeric (containing alpha and beta subunits) transcription factor, is involved in hypoxia response pathway that regulates the expression of many tumor-related genes. The stabilized HIF-1 heterodimer couples to the general co-activators p300/CBP (CREB binding protein), forming an active transcription factor to initiate hypoxic responses. Inhibiting the transcription factor-coactivator HIF-1alpha-p300/CBP interaction represents an attractive approach for blocking hypoxia pathway in tumors. Recently, diverse HIF-1alpha-p300/CBP inhibitors have been designed and their anti-tumor activities have been evaluated. The developments of inhibitors of HIF-1alpha-p300/CBP are discussed in this review. An outline of structures and biological activities of these inhibitors can be traced, along with the approaches for inhibitors discovery. The challenges in identifying novel and selective potent inhibitors of HIF-1alpha-p300/CBP are also put forward.

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In silico study directed towards identification of novel high-affinity inhibitors targeting an oncogenic protein: BRD4-BD1

Bromodomain-containing protein 4 (BRD4) is a member of the bromodomain and extra-terminal domain (BET) family of proteins. It epigentically regulates the transcription of growth-promoting genes and has become an attractive target for the development of anticancer and anti-inflammatory agents. In the current study, we performed an in silico screening of a small-molecule chemical library against the acetyl?lysine binding site of the first bromodomain (BD1) in BRD4 protein. Potential inhibitors identified through virtual screening were further studied through molecular dynamics simulations, water entrapment analysis and Molecular Mechanics (MM)/Poisson?Boltzmann surface area (PBSA) binding free energy calculations. Many of the identified compounds exhibit better G-score (?11.64 kcal?mol?1 to ?10.31 kcal?mol?1) and predicted binding affinity (?9.66 kcal?mol?1 to ?6.63 kcal?mol?1) values towards BRD4-BD1 than that of the reference compound (+)-JQ1. Molecular dynamics simulation studies show that in free-form BRD4 the reported conserved water molecules are not retained at their specific positoins due to flexibiliy in the ZA-loop. In BRD4?ligand complexes the number and positions of conserved water molecules depends on the bound ligand. Identified potential inhibitors bind stably at the acetyl?lysine binding pocket of BRD4 and form direct and water-mediated hydrogen bonds with higher occupancy which may contribute to ligand specificity towards BRD4-BD1. Further, through MM/PBSA we calculated the binding free energies of selected compounds, which shows that they have comparable energies to that of (+)-JQ1, while NSC744713 shows better binding free energy.

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Chemistry of 2-cyanomethylene-4-thiazolidinone

This article is a brief review about the synthesis and chemistry of 2-cyanomethylene-4-thiazolidinone 1. The most significant applications of 4-thiazolidinone 1 in heterocyclic synthesis are due to its two reactive methylenes. The endo-cyclic methylene protons are activated by the neighboring carbonyl moiety and the exo-cyclic methylene protons by the adjacent cyano group. Different types of reactions, such as alkylation, coupling, and Knoevenagel condensation, as well as cyclization reactions are illustrated for the synthesis of different classes of biologically important heterocyclic skeletons from this novel precursor.

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New salicylic acid and pyroglutamic acid conjugated derivatives confer protection to bread wheat against Zymoseptoria tritici

BACKGROUND: To promote sustainable agriculture and healthy food, research that contributes towards a new generation of eco-friendly phytosanitary compounds is increasingly encouraged. The plant hormone salicylic acid (SA) is known for its ability to induce resistance in plants against a wide range of pathogens, whereas pyroglutamic acid (PGA), a constrained analogue of gamma-aminobutyric acid, has never been studied in the context of plant protection. RESULTS: The present study investigated for the first time the protection efficacy of SA and PGA and five new conjugated derivatives against Zymoseptoria tritici, the main pathogen in wheat crops. SA and four derivatives showed significant disease severity reductions in planta (up to 49%). In vitro assays revealed that some molecules, including SA, displayed a small direct antifungal activity, whereas others, such as PGA, showed no effect. This finding suggests that, especially for molecules without any direct activity, the mode of action relies mainly on the induction of plant resistance. CONCLUSION: Further investigations are needed to identify the defence pathways involved in plant resistance mechanisms elicited or primed by the molecules. The manufacture of these products was easily achieved on a scale of tens of grams of raw materials, and is easily scalable. The synthetic pathway is simple, short and inexpensive. For all of these reasons, the production of the target molecules is attractive for producers, whereas the prospect of a generation of non-polluting compounds with lasting efficiency against Z. tritici in wheat comes at a key moment for the sustainability of agriculture.

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A FACILE SYNTHESIS OF 2-OXO-THIAZOLIDINES OF BIOLOGICAL INTEREST.

A facile procedure for the preparation in good yield of L-2-oxothiazolidine-4-carboxylic acid and other 2-oxothiazolidines of biological interest is described, involving reaction of suitable aminothiols with 1,1′-carbonyldiimidazole in an organic solvent.

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Synthesis and biological evaluation of novel Indolyl 4-thiazolidinones bearing thiadiazine nucleus

A series of Ethyl 2-[2-(2,5-disubstituted-1H-indol-3-yl)-4-oxothiazolid-3-ylamino]-5,6-dihydro-5-oxo-4H-1,3,4-thiadiazine-6-carboxylates (4a?g) were synthesized from cyclocondensation of Ethyl 2-{(2E)-2-[(2,5-disubstituted-1H-indol-3-yl) methy leno] hydrazine}-5-oxo-5,6-dihydro-4H-1,3,4-thiadiazine-6-carboxylates (3a?g) with thioglycolic acid in the presence of the catalytic amount of zinc chloride. The compounds 3a?g were obtained from the reaction of Ethyl 2-hydrazinyl-5,6-dihydro-5-oxo-4H-1,3,4-thiadiazine-6-carboxylate (2) with various substituted indole-3-carboxaldehydes 1a?g. Newly synthesized compounds were characterized by using IR, 1H NMR, Mass spectral and analytical data. Title compounds were evaluated for their in vitro antimicrobial activities against various microbial strains and selected compounds were tested for their analgesic and anti-inflammatory activities. Some of the newly synthesized Indolyl 4-thiazolidinone analogues displayed significant activity towards antimicrobial, analgesic and anti-inflammatory activities.

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