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1.
Pharmaceuticals (Basel) ; 17(5)2024 May 14.
Artigo em Inglês | MEDLINE | ID: mdl-38794200

RESUMO

Osteoarthritis (OA) remains a chronic incurable condition, presenting substantial challenges in treatment. This study explores a novel strategy by investigating the concurrent use of cuminaldehyde, a natural compound, with indomethacin in animal models of MIA-induced OA. Our results demonstrate that the co-administration of cuminaldehyde and indomethacin does indeed produce a superior effect when compared to these compounds individually, significantly enhancing therapeutic outcomes. This effect is evidenced by a marked reduction in pro-inflammatory cytokines IL-6 and IFN-γ, alongside a significant increase in the anti-inflammatory cytokine IL-10, compared to treatments with each compound alone. Radiographic analyses further confirm the preservation of joint integrity and a reduction in osteoarthritic damage, highlighting the association's efficacy in cartilage-reducing damage. These findings suggests that the association of cuminaldehyde and indomethacin not only slows OA progression but also offers enhanced cartilage-reducing damage and fosters the production of protective cytokines. This study underscores the potential benefits of integrating natural products with pharmaceuticals in OA management and stresses the importance of further research to fully understand the mechanisms underlying the observed potentiated effects.

2.
Front Chem ; 12: 1358539, 2024.
Artigo em Inglês | MEDLINE | ID: mdl-38357296

RESUMO

Tuberculosis (TB) has claimed more lives over the course of two millennia than any other infectious disease worldwide. In 2021, the World Health Organization (WHO) estimated that 10.6 million people were diagnosed with TB, resulting in the deaths of 1.4 million HIV-negative individuals. The emergence of multidrug-resistant TB (MDR-TB), defined as resistance to at least rifampicin (RIF) and isoniazid (INH), and extensively drug-resistant TB (XDR-TB), poses the primary challenge to overcome in the coming years. We have recently conducted an extensive analysis of investments and research endeavours in the field, with the overarching objective of achieving the established milestone of TB eradication by the year 2030. Over the past several years, there has been notable progress in advancing a multitude of promising compounds, each possessing distinct mechanisms of action, into clinical phases of development. However, it is worth noting that strains of mycobacteria resistant to current antitubercular drugs have already emerged for some of these compounds The exploration of the innovative Proteolytic Target Chimeras (PROTACs) protein degradation approach has emerged as a viable avenue for the discovery of novel antimicrobials. While the ubiquitin system is exclusive to eukaryotic cells, certain bacteria use a similar degradation system that relies on the recognition of phosphorylated arginine residues (pArg) by the ClpC:ClpP (ClpCP) protease, thereby leading to protein degradation. In this opinion article, we have described and analized the advances in the use of PROTACs that leverage bacterial proteolytic machinery (BacPROTACs) to design new antitubercular agents. Scope Statement. The development of novel pharmaceuticals for tuberculosis treatment is deemed urgently necessary due to the emergence of resistant strains. In this context, the introduction of new technologies capable of alleviating the disease and attaining the objectives outlined by the World Health Organization is imperative. Among the innovative strategies, the degradation of proteins that are crucial for the survival of the bacillus holds promise for generating new medications, particularly those that are effective at treating latent (non-replicating) Mycobacterium tuberculosis. Within this perspective, we present the advancements and obstacles encountered in the exploration of new BacPROTAC compounds, with the intention of encouraging research and illuminating challenges associated with the implementation of BacPROTACs to address to the global tuberculosis crisis.

3.
J Clin Endocrinol Metab ; 109(4): e1323-e1327, 2024 Mar 15.
Artigo em Inglês | MEDLINE | ID: mdl-37757837

RESUMO

Acromegaly treatment has greatly evolved in recent decades, but there are still patients whose acromegaly is not controlled with currently available treatments, and there is a need to improve the treatment burden. Fortunately, there are new treatments under development that may increase treatment efficacy and convenience.


Assuntos
Acromegalia , Humanos , Acromegalia/etiologia , Acromegalia/terapia , Octreotida , Somatostatina/uso terapêutico , Peptídeos Cíclicos , Fator de Crescimento Insulin-Like I
4.
Viruses ; 15(11)2023 Nov 09.
Artigo em Inglês | MEDLINE | ID: mdl-38005911

RESUMO

Antiretroviral Therapy (ART) is an effective treatment for human immunodeficiency virus (HIV) which has transformed the highly lethal disease, acquired immunodeficiency syndrome (AIDS), into a chronic and manageable condition. However, better methods need to be developed for enhancing patient access and adherence to therapy and for improving treatment in the long term to reduce adverse effects. From the perspective of drug discovery, one promising strategy is the development of anti-HIV prodrugs. This approach aims to enhance the efficacy and safety of treatment, promoting the development of more appropriate and convenient systems for patients. In this review, we discussed the use of the prodrug approach for HIV antiviral agents and emphasized nucleoside reverse transcriptase inhibitors. We comprehensively described various strategies that are used to enhance factors such as water solubility, bioavailability, pharmacokinetic parameters, permeability across biological membranes, chemical stability, drug delivery to specific sites/organs, and tolerability. These strategies might help researchers conduct better studies in this field. We also reported successful examples from the primary therapeutic classes while discussing the advantages and limitations. In this review, we highlighted the key trends in the application of the prodrug approach for treating HIV/AIDS.


Assuntos
Síndrome da Imunodeficiência Adquirida , Fármacos Anti-HIV , Infecções por HIV , Pró-Fármacos , Humanos , Inibidores da Transcriptase Reversa/farmacologia , Inibidores da Transcriptase Reversa/uso terapêutico , Fármacos Anti-HIV/uso terapêutico , Pró-Fármacos/farmacologia , Nucleosídeos/uso terapêutico , Síndrome da Imunodeficiência Adquirida/tratamento farmacológico , Infecções por HIV/tratamento farmacológico , HIV , Transcriptase Reversa do HIV
5.
Int J Mol Sci ; 24(10)2023 May 16.
Artigo em Inglês | MEDLINE | ID: mdl-37240165

RESUMO

When an epidemic started in the Chinese city of Wuhan in December 2019, coronavirus was identified as the cause. Infection by the virus occurs through the interaction of viral S protein with the hosts' angiotensin-converting enzyme 2. By leveraging resources such as the DrugBank database and bioinformatics techniques, ligands with potential activity against the SARS-CoV-2 spike protein were designed and identified in this investigation. The FTMap server and the Molegro software were used to determine the active site of the Spike-ACE2 protein's crystal structure. Virtual screening was performed using a pharmacophore model obtained from antiparasitic drugs, obtaining 2000 molecules from molport®. The ADME/Tox profiles were used to identify the most promising compounds with desirable drug characteristics. The binding affinity investigation was then conducted with selected candidates. A molecular docking study showed five structures with better binding affinity than hydroxychloroquine. Ligand_003 showed a binding affinity of -8.645 kcal·mol-1, which was considered an optimal value for the study. The values presented by ligand_033, ligand_013, ligand_044, and ligand_080 meet the profile of novel drugs. To choose compounds with favorable potential for synthesis, synthetic accessibility studies and similarity analyses were carried out. Molecular dynamics and theoretical IC50 values (ranging from 0.459 to 2.371 µM) demonstrate that these candidates are promising for further tests. Chemical descriptors showed that the candidates had strong molecule stability. Theoretical analyses here show that these molecules have potential as SARS-CoV-2 antivirals and therefore warrant further investigation.


Assuntos
COVID-19 , SARS-CoV-2 , Humanos , Simulação de Acoplamento Molecular , Enzima de Conversão de Angiotensina 2 , Ligantes , Simulação de Dinâmica Molecular , Antivirais/farmacologia , Antivirais/química , Ligação Proteica
6.
Metabolites ; 13(3)2023 Mar 08.
Artigo em Inglês | MEDLINE | ID: mdl-36984837

RESUMO

Osteoarthritis (OA) is a chronic degenerative disease that has a significant global impact. It is associated with aging and characterized by widespread joint destruction. Cuminaldehyde is a biologically active component of essential oils that has shown promise in the treatment of nociceptive and inflammatory diseases. This study investigated the effects of cuminaldehyde on an experimental model of osteoarthritis induced in rat knees. Cuminaldehyde was found to be as effective as indomethacin in reducing pain in all evaluated tests, including forced walking, functional disability of weight distribution on the legs, and spontaneous pain in animals with osteoarthritis. The knees of animals treated with cuminaldehyde had significantly higher radiographic and histopathological scores than those of animals that did not receive the treatment. Cuminaldehyde also modulated the production of pro-inflammatory cytokines. In vitro assays showed that cuminaldehyde preferentially inhibits COX-2 enzyme activity. In silico studies demonstrated that cuminaldehyde has satisfactory energy affinity parameters with opioid receptors and COX-2. These findings suggest that cuminaldehyde's anti-inflammatory activity is multifactorial, acting through multiple pathways. Its nociceptive activity occurs via central and peripheral mechanisms. Cuminaldehyde modulates the immune response of the inflammatory process and may be considered a leading compound for the development of new anti-inflammatory and analgesic drugs.

7.
Front Pharmacol ; 14: 1101452, 2023.
Artigo em Inglês | MEDLINE | ID: mdl-36817126

RESUMO

Alzheimer's disease (AD) is the most common type of dementia in the elderly. Several hypotheses emerged from AD pathophysiological mechanisms. However, no neuronal protective or regenerative drug is available nowadays. Researchers still work in drug development and are finding new molecular targets to treat AD. Therefore, this study aimed to summarize main advances in AD pharmacological therapy. Clinical trials registered in the National Library of Medicine database were selected and analyzed accordingly to molecular targets, therapeutic effects, and safety profile. The most common outcome was the lack of efficacy. Only seven trials concluded that tested drugs were safe and induced any kind of therapeutic improvement. Three works showed therapeutic effects followed by toxicity. In addition to aducanumab recent FDA approval, antibodies against amyloid-ß (Aß) showed no noteworthy results. 5-HT6 antagonists, tau inhibitors and nicotinic agonists' data were discouraging. However, anti-Aß vaccine, BACE inhibitor and anti-neuroinflammation drugs showed promising results.

8.
Curr Pharm Biotechnol ; 24(4): 471-485, 2023.
Artigo em Inglês | MEDLINE | ID: mdl-35578838

RESUMO

The sponge-microorganism partnership is one of the most successful symbiotic associations exploited from a biotechnological perspective. During the last thirty years, sponge-associated bacteria have been increasingly harnessed for bioactive molecules, notably antimicrobials and cytotoxic compounds. Unfortunately, there are gaps in sponge microbial biotechnology, with a multitude of applications being understudied or ignored. In this context, the current perspective aims to shed light on these underrated facets of sponge microbial biotechnology with a balance of existent reports and proposals for further research in the field. Our overview has showcased that the members of the sponge microbiome produce biomolecules whose usage can be valuable for several economically- relevant and demanding sectors. Outside the exhaustive search for antimicrobial secondary metabolites, sponge-associated microorganisms are gifted producers of antibiofilm, antivirulence and chronic diseases-attenuating substances highly envisaged by the pharmaceutical industry. Despite still at an infant stage of research, anti-ageing enzymes and pigments of special interest for the cosmetic and cosmeceutical sectors have also been reported from the sponge microbial symbionts. In a world urging for sustainability, sponge-associated microorganisms have been proven as fruitful resources for bioremediation, including recovery of heavy-metal contaminated areas, bioleaching processes, and as bioindicators of environmental pollution. In conclusion, we propose alternatives to better assess these neglected biotechnological applications of the sponge microbiome in the hope of sparking the interest of the scientific community toward their deserved exploitation.


Assuntos
Anti-Infecciosos , Microbiota , Poríferos , Animais , Anti-Infecciosos/farmacologia , Anti-Infecciosos/uso terapêutico , Anti-Infecciosos/metabolismo , Bactérias/metabolismo , Biodegradação Ambiental , Biotecnologia
9.
Braz. J. Pharm. Sci. (Online) ; 59: e22045, 2023. tab, graf
Artigo em Inglês | LILACS | ID: biblio-1439519

RESUMO

Abstract The genus Candida represents the main cause of infections of fungal origin. Some species stand out as disease promoters in humans, such as C. albicans, C. glabrata, C. parapsilosis, and C. tropicalis. This study evaluated the antifungal effects of propyl (E)-3-(furan-2-yl) acrylate. The minimum inhibitory concentration of the synthetic compound, amphotericin B and fluconazole alone against four species of Candida ranged from 64 to 512 µg/mL, 1 to 2 µg/mL, and 32 to 256 µg/mL, respectively. The synergistic effect of the test substance was observed when associated with fluconazole against C. glabrata, there was no antagonism between the substances against any of the tested strains. The potential drug promoted morphological changes in C. albicans, decreasing the amount of resistance, virulence, and reproduction structures, such as the formation of pseudohyphae, blastoconidia, and chlamydospores, ensuring the antifungal potential of this substance. It was also possible to identify the fungicidal profile of the test substance through the study of the growth kinetics of C. albicans. Finally, it was observed that the test compound inhibited the ergosterol biosynthesis by yeast


Assuntos
Candida albicans/efeitos dos fármacos , Ergosterol/agonistas , Antifúngicos/análise , Candida/classificação , Preparações Farmacêuticas/análise , Testes de Sensibilidade Microbiana/instrumentação
10.
Molecules ; 27(23)2022 Nov 25.
Artigo em Inglês | MEDLINE | ID: mdl-36500303

RESUMO

The COVID-19 pandemic exposed the lack of antiviral agents available for human use, while the complexity of the physiological changes caused by coronavirus (SARS-CoV-2) imposed the prescription of multidrug pharmacotherapy to treat infected patients. In a significant number of cases, it was necessary to add antibiotics to the prescription to decrease the risk of co-infections, preventing the worsening of the patient's condition. However, the precautionary use of antibiotics corroborated to increase bacterial resistance. Since the development of vaccines for COVID-19, the pandemic scenario has changed, but the development of new antiviral drugs is still a major challenge. Research for new drugs with synergistic activity against virus and resistant bacteria can produce drug leads to be used in the treatment of mild cases of COVID-19 and to fight other viruses and new viral diseases. Following the repurposing approach, plant spices have been searched for antiviral lead compounds, since the toxic effects of plants that are traditionally consumed are already known, speeding up the drug discovery process. The need for effective drugs in the context of viral diseases is discussed in this review, with special focus on plant-based spices with antiviral and antibiotic activity. The activity of plants against resistant bacteria, the diversity of the components present in plant extracts and the synergistic interaction of these metabolites and industrialized antibiotics are discussed, with the aim of contributing to the development of antiviral and antibiotic drugs. A literature search was performed in electronic databases such as Science Direct; SciELO (Scientific Electronic Library Online); LILACS (Latin American and Caribbean Literature on Health Sciences); Elsevier, SpringerLink; and Google Scholar, using the descriptors: antiviral plants, antibacterial plants, coronavirus treatment, morbidities and COVID-19, bacterial resistance, resistant antibiotics, hospital-acquired infections, spices of plant origin, coronaviruses and foods, spices with antiviral effect, drug prescriptions and COVID-19, and plant synergism. Articles published in English in the period from 2020 to 2022 and relevant to the topic were used as the main inclusion criteria.


Assuntos
COVID-19 , Coinfecção , Viroses , Humanos , Pandemias , SARS-CoV-2 , Coinfecção/tratamento farmacológico , Vacinas contra COVID-19 , Antivirais/farmacologia , Antivirais/uso terapêutico , Viroses/tratamento farmacológico , Bactérias , Antibacterianos/farmacologia , Antibacterianos/uso terapêutico
12.
Metabolites ; 12(11)2022 Oct 24.
Artigo em Inglês | MEDLINE | ID: mdl-36355097

RESUMO

Candida albicans is a human pathogen that is part of the healthy microbiome. However, it is often associated with opportunistic fungal infections. The treatment of these infections is challenging because prolonged exposure to antifungal drugs can culminate in fungal resistance during therapy, and there is a limited number of available drugs. Therefore, this study investigated the antifungal activity of ononin by in silico and in vitro assays, and in Tenebrio molitor as an alternative in vivo model of infection caused by C. albicans. Ononin is an isoflavone glycoside derived from formononetin that has various biological activities. According in silico evaluation, ononin showed the best electron affinity in molecular docking with CaCYP51, with a binding free energy of -10.89 kcal/mol, superior to that of the antifungal drugs fluconazole and posaconazole. The ononin + CaCYP51 complex formed hydrogen bonds with Tyr132, Ser378, Phe380, and Met508, as well as hydrophobic connections with Tyr118, Leu121, Phe126, Leu131, Ile304, and Leu309, and interactions with the heme group. Ononin exerted anti-Candida albicans activity, with MIC between 3.9 and 7.8 µg/mL, and inhibited young and mature biofilms, with a reduction in cell density and metabolic activity of 50 to 80%. The compound was not cytotoxic to sheep red blood cells at concentrations up to 1000 µg/mL. Larvae of the mealworm T. molitor were used as an alternative in vivo model of C. albicans infection. Ononin was able to prolong larval survival at concentrations of 0.5, 1, and 5 mg/kg, and was not toxic up to a concentration of 20 mg/kg. Moreover, ononin reduced the fungal charge in treated animals. In conclusion, our results suggest that ononin has anti-Candida albicans activity and is a potential candidate for the development of new therapeutic alternatives.

13.
Pharmaceuticals (Basel) ; 15(10)2022 Oct 13.
Artigo em Inglês | MEDLINE | ID: mdl-36297372

RESUMO

Histone deacetylases (HDAC) are epigenetic enzymes responsible for repressing gene expression through the deacetylation of histone lysine residues. Therefore, inhibition of HDACs has become an interesting approach for the treatment of several diseases, including cancer, hematology, neurodegenerative, immune diseases, bacterial infections, and more. Resveratrol (RVT) has pleiotropic effects, including pan-inhibition of HDAC isoforms; however, its ability to interfere with membranes requires additional optimization to eliminate nonspecific and off-target effects. Thus, to explore RVT as a scaffold, we designed a series of novel HDAC-1 and -2 inhibitors containing the 2-aminobenzamide subunit. Using molecular modeling, all compounds, except unsaturated compounds (4) and (7), exhibited a similar mode of interaction at the active sites of HDAC 1 and 2. The docking score values obtained from the study ranged from -12.780 to -10.967 Kcal/mol. All compounds were synthesized, with overall yields ranging from 33% to 67.3%. In an initial screening, compounds (4), (5), (7), and (20)-(26), showed enzymatic inhibitory effects ranging from 1 to 96% and 6 to 93% against HDAC-1 and HDAC-2, respectively. Compound (5), the most promising HDAC inhibitor in this series, was selected for IC50 assays, resulting in IC50 values of 0.44 µM and 0.37 µM against HDAC-1 and HDAC-2, respectively. In a panel of selectivity against HDACs 3-11, compound (5) presented selectivity towards Class I, mainly HDAC-1, 2, and 3. All compounds exhibited suitable physicochemical and ADMET properties as determined using in silico simulations. In conclusion, the optimization of the RVT structure allows the design of selective HDAC inhibitors, mainly targeting HDAC-1 and HDAC-2 isoforms.

14.
Pharmaceuticals (Basel) ; 15(9)2022 Aug 24.
Artigo em Inglês | MEDLINE | ID: mdl-36145266

RESUMO

Since it acquired pandemic status, SARS-CoV-2 has been causing all kinds of damage all over the world. More than 6.3 million people have died, and many cases of sequelae are in survivors. Currently, the only products available to most of the world's population to fight the pandemic are vaccines, which still need improvement since the number of new cases, admissions into intensive care units, and deaths are again reaching worrying rates, which makes it essential to compounds that can be used during infection, reducing the impacts of the disease. Plant metabolites are recognized sources of diverse biological activities and are the safest way to research anti-SARS-CoV-2 compounds. The present study computationally evaluated 55 plant compounds in five SARS-CoV-2 targets such Main Protease (Mpro or 3CL or MainPro), RNA-dependent RNA polymerase (RdRp), Papain-Like Protease (PLpro), NSP15 Endoribonuclease, Spike Protein (Protein S or Spro) and human Angiotensin-converting enzyme 2 (ACE-2) followed by in vitro evaluation of their potential for the inhibition of the interaction of the SARS-CoV-2 Spro with human ACE-2. The in silico results indicated that, in general, amentoflavone, 7-O-galloylquercetin, kaempferitrin, and gallagic acid were the compounds with the strongest electronic interaction parameters with the selected targets. Through the data obtained, we can demonstrate that although the indication of individual interaction of plant metabolites with both Spro and ACE-2, the metabolites evaluated were not able to inhibit the interaction between these two structures in the in vitro test. Despite this, these molecules still must be considered in the research of therapeutic agents for treatment of patients affected by COVID-19 since the activity on other targets and influence on the dynamics of viral infection during the interaction Spro x ACE-2 should be investigated.

15.
Rev. cuba. reumatol ; 24(2): e1022, mayo.-ago. 2022.
Artigo em Espanhol | LILACS, CUMED | ID: biblio-1409216

RESUMO

La artritis reumatoide se clasifica como una enfermedad articular autoinmune crónica poliarticular sistémica que afecta principalmente a manos y pies. El objetivo de este trabajo es mostrar información publicada que contribuye a direccionar el manejo de la artritis reumatoide con nuevos fármacos, a partir del conocimiento de aspectos novedosos relacionados con la fisiopatología y los avances recientes sobre un grupo importante de dianas para el tratamiento de esta enfermedad. Las modificaciones epigenéticas pueden regular la expresión génica sin alterar la secuencia del ADN. La regulación de los ARN no codificantes (ncRNA), la metilación del ADN, la metilación del ARN y las modificaciones de las histonas se consideran los principales mecanismos de las regulaciones epigenéticas. Numerosas investigaciones han establecido que varias anomalías en estos mecanismos terminan en el desarrollo de la AR. Este trabajo resume nuevas dianas, que incluyen proteínas, pequeños metabolitos moleculares y reguladores de la epigenética. Son dianas moleculares prometedoras para el descubrimiento de fármacos que alivien la aparición de enfermedades y resuelvan la falta de respuesta y las respuestas parciales, así como los efectos adversos de los FARME actuales. Es innegable que aún se necesitan mayores esfuerzos para definir con mayor precisión las vías de señalización subyacentes afectadas por estas moléculas recién descubiertas y para desarrollar métodos de terapia apropiados(AU)


Rheumatoid arthritis is classified as a systemic polyarticular chronic autoimmune joint disease that mainly affects the hands and feet. The objective of this work is to show published information that contributes to directing the management of RA with new drugs. Epigenetic modifications can regulate gene expression without altering the DNA sequence. Regulation of non-coding RNAs (ncRNAs), DNA methylation, RNA methylation, and histone modifications are considered the main mechanisms of epigenetic regulations. Numerous investigations have established that various abnormalities in these mechanisms lead to the development of RA. This work summarizes new targets, including proteins, small molecular metabolites and regulators of epigenetics. They are promising molecular targets for drug discovery to alleviate disease onset and resolve non-response and partial responses, as well as adverse effects of current DMARDs. It is undeniable that further efforts are still needed to further define the underlying signaling pathways affected by these newly discovered molecules and to develop appropriate therapy methods(AU)


Assuntos
Humanos , Masculino , Feminino , Artrite Reumatoide/história , Epigenômica/métodos
16.
Rev. Ciênc. Méd. Biol. (Impr.) ; 21(1): 18-24, maio 05,2022. fig, tab
Artigo em Português | LILACS | ID: biblio-1370484

RESUMO

Introdução: Caryocar brasiliense é conhecida popularmente como Pequi ou Pequizeiro, sendo uma planta com propriedades medicinais para tratamento de doenças respiratórias, úlceras gástricas e dores musculares. Objetivo: comparar a extração de biocompostos por meio de dois métodos extrativos, agitação magnética e banho ultrassônico. Além disso, avaliar a atividade antioxidante, o teor de compostos fenólicos, flavonoides e antocianinas em extratos das folhas e da casca de Pequi (C. brasiliense), com vistas a agregar valor quanto às suas propriedades funcionais. Metodologia: o conteúdo de compostos fenólicos foi determinado pelo método de Folin-Ciocalteu, flavonoides e antocianinas pelo método de Lima e Melo. A atividade antioxidante foi medida pelo método 2,2-difenil-1-picrilhidrazil (DPPH). Resultados: o extrato das folhas de Pequi exibiu maior teor de fenólicos em relação à casca, independente do método de extração. O extrato das folhas obtido em banho ultrassônico apresentou forte atividade antioxidante com valor de 72,2%. Conclusão: os extratos de Pequi demonstraram um perfil fitoquímico promissor que deve ser investigado no futuro para aplicação farmacológica como adjuvante ou precursor na síntese de novos cosméticos ou medicamentos com propriedades antioxidante.


Introduction: Caryocar brasiliense is a medicinal plant used in the treatment of respiratory diseases, gastric ulcers and muscle pain. Objective: to compare the extraction of natural compounds using two extractive methods, magnetic stirring and ultrasonic bath. In addition, to evaluate the antioxidant activity, the content of phenolic compounds, flavonoids and anthocyanins in the leaves and bark of Pequi (C. brasiliense), with a view to adding value through its functional properties. Methodology: the phenolic content was determined by the Folin-Ciocalteu method, flavonoids and anthocyanins by the Lima and Melo method. Antioxidant activity was measured using the 2.2-diphenyl-1-picrilhhydrazyl (DPPH) method. Results: the extract of the Pequi leaves exhibited a higher phenolic content in relation to the bark for both extraction methods. The Pequi leaf in an ultrasonic bath showed strong antioxidant activity with a value of 72.2%. Conclusion: Pequi extracts demonstrated a promising phytochemical profile that should be investigated in the future for pharmacological application as an adjuvant or precursor in the synthesis of a new cosmetic or medicine with antioxidant function.


Assuntos
Plantas Medicinais , Medicamentos de Referência , Malpighiales
17.
Front Pharmacol ; 13: 845841, 2022.
Artigo em Inglês | MEDLINE | ID: mdl-35370717

RESUMO

Malaria remains a public health problem with still more than half a million deaths annually. Despite ongoing efforts of many countries, malaria elimination has been difficult due to emerging resistances against most traditional drugs, including artemisinin compounds - the most potent antimalarials currently available. Therefore, the discovery and development of new drugs with novel mechanisms of action to circumvent resistances is urgently needed. In this sense, one of the most promising areas is the exploration of transport proteins. Transporters mediate solute uptake for intracellular parasite proliferation and survival. Targeting transporters can exploit these processes to eliminate the parasite. Here, we focus on transporters of the Plasmodium falciparum-infected red blood cell studied as potential biological targets and discuss published drugs directed at them.

18.
Curr Med Chem ; 29(13): 2334-2381, 2022.
Artigo em Inglês | MEDLINE | ID: mdl-34533436

RESUMO

Scaffolds of metal-based compounds can act as pharmacophore groups in several ligands to treat various diseases, including tropical infectious diseases (TID). In this review article, we investigate the contribution of these moieties to medicinal inorganic chemistry in the last seven years against TID, including American trypanosomiasis (Chagas disease), human African trypanosomiasis (HAT, sleeping sickness), leishmania, and malaria. The most potent metal-based complexes are displayed and highlighted in figures, tables and graphics; according to their pharmacological activities (IC50 > 10µM) against Trypanosomatids and Plasmodium spp parasites. We highlight the current progresses and viewpoints of these metal-based complexes, with a specific focus on drug discovery.


Assuntos
Doença de Chagas , Parasitos , Plasmodium , Trypanosoma cruzi , Tripanossomíase Africana , Animais , Doença de Chagas/tratamento farmacológico , Descoberta de Drogas , Humanos , Tripanossomíase Africana/tratamento farmacológico
19.
Int J Parasitol Drugs Drug Resist ; 17: 150-155, 2021 12.
Artigo em Inglês | MEDLINE | ID: mdl-34637981

RESUMO

Human malaria continues to be a public health problem and an important cause of morbidity and mortality in the world. Malaria control is achieved through both individual protection against mosquito bites and drug treatment, which is hampered by the spread of Plasmodium falciparum resistance to most antimalarials, including artemisinin derivatives. One of the key pharmacological strategies for controlling malaria is to block transmission of the parasites to their mosquito vectors. Following this rational, MEFAS, a synthetic hybrid salt derived from artesunate (AS) and mefloquine has been previously reported for its activity against asexual P. falciparum parasites in vitro, in addition to a pronounced reduction in the viability of mature gametocytes. Herein, MEFAS was tested against asexual forms of Plasmodium vivax and for its ability to block malaria transmission in Anopheles darlingi mosquitoes in a membrane feeding assay using P. vivax field isolates. MEFAS demonstrated high potency, with a IC50 of 6.5 nM against asexual forms of P. vivax. At 50 µM, MEFAS completely blocked oocyst formation in mosquitoes, regardless of the oocyst number in the control group. At lower doses, MEFAS reduced oocyst prevalence by greater than 20%. At equivalent doses, AS irregularly reduced oocyst formation and caused only slight inhibition of mosquito infections. These results highlight the potential of MEFAS as a novel transmission-blocking molecule, as well as its high blood schizonticidal activity against P. vivax and P. falciparum field isolates, representing a starting point for further development of a new drug with dual antimalarial activity.


Assuntos
Antimaláricos , Malária Falciparum , Malária Vivax , Malária , Animais , Antimaláricos/farmacologia , Artesunato , Humanos , Malária Falciparum/tratamento farmacológico , Malária Falciparum/prevenção & controle , Malária Vivax/tratamento farmacológico , Malária Vivax/prevenção & controle , Mefloquina/farmacologia , Plasmodium falciparum , Plasmodium vivax
20.
J Fungi (Basel) ; 7(6)2021 Jun 07.
Artigo em Inglês | MEDLINE | ID: mdl-34200444

RESUMO

Mangroves are ecosystems with unique characteristics due to the high salinity and amount of organic matter that house a rich biodiversity. Fungi have aroused much interest as they are an important natural source for the discovery of new bioactive compounds, with potential biotechnological and pharmacological interest. This review aims to highlight endophytic fungi isolated from mangrove plant species and the isolated bioactive compounds and their bioactivity against protozoa, bacteria and pathogenic viruses. Knowledge about this type of ecosystem is of great relevance for its preservation and as a source of new molecules for the control of pathogens that may be of importance for human, animal and environmental health.

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