134 resultados para fungicidal


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Synthetic peptides with sequences identical to fragments of the constant region of different classes (IgG, IgM, IgA) of antibodies (Fc-peptides) exerted a fungicidal activity in vitro against pathogenic yeasts, such as Candida albicans, Candida glabrata, Cryptococcus neoformans, and Malassezia furfur, including caspofungin and triazole resistant strains. Alanine-substituted derivatives of fungicidal Fc-peptides, tested to evaluate the critical role of each residue, displayed unaltered, increased or decreased candidacidal activity in vitro. An Fc-peptide, included in all human IgGs, displayed a therapeutic effect against experimental mucosal and systemic candidiasis in mouse models. It is intriguing to hypothesize that some Fc-peptides may influence the antifungal immune response and constitute the basis for devising new antifungal agents.

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Previous research has shown that the naturally occurring reactive electrophilic species (RES), 12-oxophytodienoic acid (OPDA), not only serves as a precursor for jasmonic acid but is also a potent antifungal compound. However, both the low amount present in plants and the multistep synthesis required to produce this compound on a scale viable for agrochemical use currently limits its practical value. The aim of this research was to generate a range of molecular mimics of OPDA with a minimum number of synthetic steps and screen for antifungal activity. Synthetic 4-octyl-cyclopentenone containing the cyclopentenone ring and an eight carbon alkyl chain was found to show the highest in vitro antifungal activity against C. herbarum and B. cinerea with minimum inhibition concentration (MIC) of 100-200µM. This indicates that structurally simplified 4-octyl-cyclopentenone can be successfully synthesised to mimic the antifungal activity of OPDA against specific fungal strains. Application of 4-octyl-cyclopentenone could act as surfactant by disrupting and disorganising the lipid membrane non-specifically, resulting in the leakage of potassium ions, which was the proposed mode of action of this compound. However, the sensitivity of fungi to this compound is not correlated to the lipid composition of fungal spores. (E)-2-alkenals were also studied for their antimicrobial activity and (E)-2-undecenal was found to have the highest antimicrobial activity against a range of pathogens. The hydrophilic moiety (the a,ß-unsaturated carbonyl group), common to both (E)-2-undecenal and 4-octyl-cyclentenone is essential to their bioactivity, and the hydrophobic moiety plays an important role in their antimicrobial activities. 4-Octyl-cyclopentenone showed no visible toxicity to the test plant, Arabidopsis thaliana, suggesting that its high antifungal activity against Botrytis and Cladosporium could be exploited for commercialisation as a new generation of agrochemical.

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We report here the structures and properties of heat-stable, non-protein, and mammalian cell-toxic compounds produced by spore-forming bacilli isolated from indoor air of buildings and from food. Little information is available on the effects and occurrence of heat-stable non-protein toxins produced by bacilli in moisture-damaged buildings. Bacilli emit spores that move in the air and can serve as the carriers of toxins, in a manner similar to that of the spores of toxic fungi found in contaminated indoor air. Bacillus spores in food cause problems because they tolerate the temperatures applied in food manufacture and the spores later initiate growth when food storage conditions are more favorable. Detection of the toxic compounds in Bacillus is based on using the change in mobility of boar spermatozoa as an indicator of toxic exposure. GC, LC, MS, and nuclear magnetic resonance NMR spectroscopy were used for purification, detection, quantitation, and analysis of the properties and structures of the compounds. Toxicity and the mechanisms of toxicity of the compounds were studied using boar spermatozoa, feline lung cells, human neural cells, and mitochondria isolated from rat liver. The ionophoric properties were studied using the BLM (black-lipid membrane) method. One novel toxin, forming ion channels permeant to K+ > Na+ > Ca2+, was found and named amylosin. It is produced by B. amyloliquefaciens isolated from indoor air of moisture-damaged buildings. Amylosin was purified with an RP-HPLC and a monoisotopic mass of 1197 Da was determined with ESI-IT-MS. Furthermore, acid hydrolysis of amylosin followed by analysis of the amino acids with the GS-MS showed that it was a peptide. The presence of a chromophoric polyene group was found using a NMR spectroscopy. The quantification method developed for amylosin based on RP-HPLC-UV, using the macrolactone polyene, amphotericin B (MW 924), as a reference compound. The B. licheniformis strains isolated from a food poisoning case produced a lipopeptide, lichenysin A, that ruptured mammalian cell membranes and was purified with a LC. Lichenysin A was identified by its protonated molecules and sodium- and potassium- cationized molecules with MALDI-TOF-MS. Its protonated forms were observed at m/z 1007, 1021 and 1035. The amino acids of lichenysin A were analyzed with ESI-TQ-MS/MS and, after acid hydrolysis, the stereoisomeric forms of the amino acids with RP-HPLC. The indoor air isolates of the strain of B. amyloliquefaciens produced not only amylosin but also lipopeptides: the cell membrane-damaging surfactin and the fungicidal fengycin. They were identified with ESI-IT-MS observing their protonated molecules, the sodium- and potassium-cationized molecules and analysing the MS/MS spectra. The protonated molecules of surfactin and fengycin showed m/z values of 1009, 1023, and 1037 and 1450, 1463, 1493, and 1506, respectively. Cereulide (MW 1152) was purified with RP-HPLC from a food poisoning strain of B. cereus. Cereulide was identified with ESI-TQ-MS according to the protonated molecule observed at m/z 1154 and the ammonium-, sodium- and potassium-cationized molecules observed at m/z 1171, 1176, and 1192, respectively. The fragment ions of the MS/MS spectrum obtained from the protonated molecule of cereulide at m/z 1154 were also interpreted. We developed a quantification method for cereulide, using RP-HPLC-UV and valinomycin (MW 1110, which structurally resembles cereulide) as the reference compound. Furthermore, we showed empirically, using the BLM method, that the emetic toxin cereulide is a specific and effective potassium ionophore of whose toxicity target is especially the mitochondria.

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Background: Candida-associated denture stomatitis is a frequent infectious disease. Treatment of this oral condition is difficult because failures and recurrences are common. The aim of this study was to test the in vitro antifungal activity of pure constituents of essentials oils. -- Methods: Eight terpenic derivatives (carvacrol, farnesol, geraniol, linalool, menthol, menthone, terpinen-4-ol, and aterpineol), a phenylpropanoid (eugenol), a phenethyl alcohol (tyrosol) and fluconazole were evaluated against 38 Candida isolated from denture-wearers and 10 collection Candida strains by the CLSI M27-A3 broth microdilution method. -- Results: Almost all the tested compounds showed antifungal activity with MIC ranges of 0.03-0.25% for eugenol and linalool, 0.03-0.12% for geraniol, 0.06-0.5% for menthol, a-terpineol and terpinen-4-ol, 0.03-0.5% for carvacrol, and 0.06-4% for menthone. These compounds, with the exception of farnesol, menthone and tyrosol, showed important in vitro activities against the fluconazole-resistant and susceptible-dose dependent Candida isolates. -- Conclusions: Carvacrol, eugenol, geraniol, linalool and terpinen-4-ol were very active in vitro against oral Candida isolates. Their fungistatic and fungicidal activities might convert them into promising alternatives for the topic treatment of oral candidiasis and denture stomatitis.

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A onicomicose é responsável por mais da metade das alterações ungueais, com prevalência em torno de 2-8%. As unhas dos pés são as mais afetadas, devido, principalmente a fungos dermatófitos (tinea unguium). A terbinafina é o único antimicótico fungicida oral e o mais potente agente contra dermatófitos in vitro. Entretanto, existem poucos estudos controlados, randomizados usando a terbinafina não-continua. Nosso objetivo foi comparar a efetividade e a segurança do tratamento da tinea unguium dos pododáctilos utilizando terbinafina oral em dois esquemas posológicos intermitentes diferentes, associado à onicoabrasão. Foram selecionados 41 pacientes com diagnóstico de onicomicose por dermatófitos, divididos em dois grupos (20 e 21 pacientes em cada), recebendo um dos seguintes tratamentos, além da onicoabrasão: Grupo I: Terbinafina oral 250mg/dia, 7 dias a cada mês; Grupo II: Terbinafina oral 500mg/dia, 7 dias a cada dois meses. Ambos os grupos tiveram duração de seis meses. Os parâmetros de avaliação da efetividade foram clínico e micológico ao término do tratamento, após seis meses e após um ano. Foram utilizados os critérios de cura total, cura parcial, melhora clínica, falha terapêutica e recidiva. Trinta e seis pacientes completaram o estudo. Não houve diferença estatística entre os grupos nos diversos parâmetros utilizados para avaliação da resposta terapêutica. A avaliação do resultado terapêutico mostra que ao final de 18 meses de acompanhamento, oito pacientes (44,4%) de cada grupo alcançaram a cura total, e que 5 (27,8%) pacientes do grupo I e 4 (22,2%) do grupo II apresentaram cura parcial. Apenas um paciente de cada grupo permaneceu com a lesão clínica inalterada durante todo o estudo. A presença dos fungos na lâmina ungueal foi sendo reduzida com o passar do estudo, ao final deste, todos os pacientes de ambos os grupos apresentaram a cultura negativa para dermatófitos. Embora o número de pacientes do estudo fosse pequeno, não houve diferença estatisticamente significativa entre os resultados de cada grupo considerando-se os parâmetros clínicos e micológicos analisados. Ambas as posologias foram consideradas seguras, sem efeitos colaterais graves, nem alterações significativas nos exames laboratoriais. Foram alcançadas taxas de cura (total e parcial) significativas nos Grupos I e II (66,6% e 72,2%, respectivamente, aos 18 meses). A cura total (disease free nail) foi obtida em 8 pacientes (44,4%) de cada grupo. O uso intermitente da terbinafina associado à onicoabrasão foi uma alternativa estatisticamente efetiva, segura e de melhor custo-benefício para o tratamento da tinea unguium dos pododáctilos, independente da posologia.

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Micafungin is an effective antifungal agent useful for the therapy of invasive candidiasis. Candida albicans is the most common cause of invasive candidiasis; however, infections due to non-C. albicans species, such as Candida parapsilosis, are rising. Killing and postantifungal effects (PAFE) are important factors in both dose interval choice and infection outcome. The aim of this study was to determinate the micafungin PAFE against 7 C. albicans strains, 5 Candida dubliniensis, 2 Candida Africana, 3 C. parapsilosis, 2 Candida metapsilosis and 2 Candida orthopsilosis. For PAFE studies, cells were exposed to micafungin for 1 h at concentrations ranging from 0.12 to 8 mu g/ml. Time-kill experiments (TK) were conducted at the same concentrations. Samples were removed at each time point (0-48 h) and viable counts determined. Micafungin (2 mu g/ml) was fungicidal (>= 3 log(10) reduction) in TK against 5 out of 14 (36%) strains of C. albicans complex. In PAFE experiments, fungicidal endpoint was achieved against 2 out of 14 strains (14%). In TK against C. parapsilosis, 8 mu g/ml of micafungin turned out to be fungicidal against 4 out 7 (57%) strains. Conversely, fungicidal endpoint was not achieved in PAFE studies. PAFE results for C. albicans complex (41.83 +/- 2.18 h) differed from C. parapsilosis complex (8.07 +/- 4.2 h) at the highest tested concentration of micafungin. In conclusion, micafungin showed significant differences in PAFE against C. albicans and C. parapsilosis complexes, being PAFE for the C. albicans complex longer than for the C. parapsilosis complex.

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植物源杀菌剂的开发应用以及从植物中寻找杀菌活性物质作为先导化合物,是目前杀菌研究领域的热点之一。本文以蓼科植物虎杖(Polygonum cuspidatum Sieb.et Zucc.) 为材料,研究了虎杖提取物的杀菌活性和作用机理,确定了虎杖中的有效杀菌活性成分,并以此为先导化合物进行了衍生物合成与结构活性关系的研究。 不同溶剂提取物制备与杀菌活性测定结果表明,乙醇适合作为虎杖植物杀菌剂的提取溶剂,提取率高,对多种植物病原真菌具有广谱的杀菌和抑菌活性,除对黄瓜白粉病(Sphaerotheca fuliginea)表现出很好的防治效果外,对苹果腐烂病菌(Valsa mali)、玉米小斑病菌(Helminthosporium maydis)、葡萄炭疽病菌(Colletotrichum gloeosporioides)、小麦赤霉病菌(Fusarium graminearum)、油菜菌核病菌(Sclerotinia sclerotiorum)、水稻纹枯病菌(Rhizoconia solani)等也具有很好的抑制作用。虎杖回流提取物对黄瓜白粉病的杀菌作用以保护作用为主,兼具一定的治疗作用,并且具有一定的内吸活性,持效期约为4-7 d。温室试验结果表明,虎杖乙醇回流提取物10%可溶性液剂对黄瓜白粉病的EC90值为172.83 mg/L,田间小区试验表明该制剂在800-1600 mg/L的浓度下,对黄瓜白粉病的防效达到76.3-93.4%,具有较好的应用前景。 对苹果腐烂病菌的抑菌作用机理表明,虎杖乙醇提取物对该病原菌有明显的抑制作用,能够抑制蛋白质、葡萄糖等菌体细胞内物质的合成,从而使病菌代谢速度减慢,抑制其生长。虎杖提取物还能够使几丁质酶和β-1,3葡聚糖酶这两种细胞壁相关水解酶的活性升高,降解细胞壁而破坏菌体结构,使菌体自溶。 过测定虎杖乙醇回流提取物对黄瓜体内等一些防御酶和病程相关蛋白活性的影响,表明在40 mg/L和400 mg/L浓度下,虎杖乙醇提取物能够使黄瓜叶片内的过氧化物酶(POD)、多酚氧化酶(PPO)、苯丙氨酸解氨酶(PAL)、几丁质酶等不同程度的升高,从而在一定程度上提高植物对病原真菌的抗病能力。 通过生物活性跟踪测定以及pH梯度提取法确定了虎杖中的主要杀菌活性成分为蒽醌类化合物大黄素(emodin)和大黄素甲醚(physcion),结构通过了HPLC-MS和1H NMR确认,并且通过HPLC确定了虎杖乙醇回流提取物中二者的含量分别为3.28%和1.11%。 以虎杖中的有效成份之一的大黄素为原料,通过羟基的甲基化反应合成了包括已知物大黄素甲醚在内的11个大黄素衍生物,其中5个化合物为首次报道,并进行了初步结构活性关系研究。结果表明通过对大黄素3-OH位置以短直链烷基取代,其衍生物对黄瓜白粉病的活性大大提高,其中以甲基取代的衍生物大黄素甲醚的活性为母体大黄素的16.7倍,而以取代苄基修饰的衍生物的活性没有明显提高。一些目标化合物的活性明显优于三唑酮。研究中还意外发现大黄素的甲基化衍生物三甲氧基大黄素在4000 mg/L时能够明显抑制甜菜夜蛾幼虫的取食与生长发育,而大黄素和大黄素甲醚则无此作用。

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The high mortality rate of immunocompromised patients with fungal infections and the limited availability of highly efficacious and safe agents demand the development of new antifungal therapeutics. To rapidly discover such agents, we developed a high-throughput synergy screening (HTSS) strategy for novel microbial natural products. Specifically, a microbial natural product library was screened for hits that synergize the effect of a low dosage of ketoconazole (KTC) that alone shows little detectable fungicidal activity. Through screening of approximate to 20,000 microbial extracts, 12 hits were identified with broadspectrum antifungal activity. Seven of them showed little cytotoxicity against human hepatoma cells. Fractionation of the active extracts revealed beauvericin (BEA) as the most potent component, because it dramatically synergized KTC activity against diverse fungal pathogens by a checkerboard assay. Significantly, in our immunocompromised mouse model, combinations of BEA (0.5 mg/kg) and KTC (0.5 mg/kg) prolonged survival of the host infected with Candida parapsilosis and reduced fungal colony counts in animal organs including kidneys, lungs, and brains. Such an effect was not achieved even with the high dose of 50 mg/kg KTC. These data support synergism between BEA and KTC and thereby a prospective strategy for antifungal therapy.

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Antimicrobial peptides are important components of the host innate immune responses by exerting broad-spectrum microbicidal activity against pathogenic microbes. The first mollusk big defensin (designated AiBD) cDNA was cloned from bay scallop Argopecten irradians by expressed sequence tag (EST) and rapid amplification of cDNA ends (RACE) techniques. The scallop AiBD consisted of 531 nucleotides with a canonical polyadenylation signal sequence AATAAA and a poly(A) tail, encoding a polypeptide of 122 amino acids. The high similarity of AiBD deduced amino acid sequence with big defensin from Tachypleus tridentatus and Branchiostoma belcheri tsingtaunese indicated that AiBD should be a member of big defensin family. The expression of AiBD in various tissues was measured by using Northern blotting analysis. mRNA transcripts of AiBD could be detected in haemocytes of unchallenged scallops. The temporal expression of AiBD in haemolymph after Vibrio anguilarum challenge was recorded by quantitative real time PCR. The relative expression level of AiBD in haemolymph was up-regulated evenly in the first 8 h, followed by a drastic increase, and increased 131.1-fold at 32 h post-injection. These results indicated that AiBD could be induced by bacterial challenge, and it should participate in the immune responses of A. irradians. Biological activity assay revealed that recombinant AiBD could inhibit the growth of both Gram-positive and Gram-negative bacteria, and also showed strong fungicidal activity towards the expression host. Recombinant expression of AiBD made it possible to further characterize its functions involved in immune responses, and also provided a potential therapeutic agent for disease control in aquaculture. (c) 2006 Elsevier Ltd. All rights reserved.

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微波辐射下的化学合成反应具有反应速度快、产率高、选择性好、产物易控制等优点,还可以节约能源。本文采用微波辐射方法降解壳聚糖制备了不同分子量的甲壳低聚糖,并以甲壳低聚糖为原料,在微波辐射下进行硫酸酯化、羧甲基化、希夫碱化、金属配位等反应,合成了多种新型甲壳低聚糖衍生物,并研究其抗氧化和抗菌机理,为甲壳低聚糖及其衍生物的进一步应用奠定理论基础。 研究微波可控性降解反应,制备了不同分子量的甲壳低聚糖,探讨反应介质、氧化剂与壳聚糖配比、辐射功率和辐射时间等因素对降解反应的影响。结果表明:选择不同的反应条件,微波辐射1-10min就可制备出相对分子量在0.3-10万之间不同分子量大小的甲壳低聚糖,且反应产率高、重复性好。研究了氯化钠等电解质对微波降解的影响,通过改变反应时间和微波功率,添加电解质可加速微波场中壳聚糖的降解。 在微波辐射下进行甲壳低聚糖的羧甲基化反应,制备羧甲基低聚糖。在此基础上,不同分子量的低聚糖及羧甲基低聚糖与金属盐溶液在微波场中反应制备甲壳低聚糖基金属衍生物。采用紫外、红外等分析手段对配位基团和配位方式进行了分析。 甲壳低聚糖及其铜、锌配合物首次在微波辐射下进行硫酸酯化修饰,合成新型甲壳低聚糖硫酸酯金属衍生物,产物具有良好的水溶性、硫酸基含量在30%以上。研究了微波促进希夫碱化反应,合成了5种羟丙基甲壳低聚糖希夫碱,并对其结构进行了分析确定。 对上述四类甲壳低聚糖衍生物进行了抗氧化和抗菌活性筛选,结果发现四类衍生物对超氧阴离子自由基和羟自由基均具有较好的清除作用,对几种常见农作物病原菌也具有明显的抑制活性。证明接入的活性基团、金属离子等对其衍生物的生物活性起到一定促进作用,具有加合性和增效性。为今后进一步研究和应用奠定了基础。

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In order to find leading compounds with an excellent fungicidal activity, the tide compound 2-(1,3-dithiolan-2-yl-idene) -1-phenyl-2-(1,2,4-triazol-1-yl) ethanone was synthesized according to the biological isosterism and its structure was confirmed by means of IR, MS, H-1 NMR and elemental analysis. The single crystal structure of the tide compound was determined by X-ray diffraction. The preliminary biological test shows that the synthesized compound exhibits some biological activities.

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Cryptococcosis is a global invasive mycosis associated with significant morbidity and mortality. These guidelines for its management have been built on the previous Infectious Diseases Society of America guidelines from 2000 and include new sections. There is a discussion of the management of cryptococcal meningoencephalitis in 3 risk groups: (1) human immunodeficiency virus (HIV)-infected individuals, (2) organ transplant recipients, and (3) non-HIV-infected and nontransplant hosts. There are specific recommendations for other unique risk populations, such as children, pregnant women, persons in resource-limited environments, and those with Cryptococcus gattii infection. Recommendations for management also include other sites of infection, including strategies for pulmonary cryptococcosis. Emphasis has been placed on potential complications in management of cryptococcal infection, including increased intracranial pressure, immune reconstitution inflammatory syndrome (IRIS), drug resistance, and cryptococcomas. Three key management principles have been articulated: (1) induction therapy for meningoencephalitis using fungicidal regimens, such as a polyene and flucytosine, followed by suppressive regimens using fluconazole; (2) importance of early recognition and treatment of increased intracranial pressure and/or IRIS; and (3) the use of lipid formulations of amphotericin B regimens in patients with renal impairment. Cryptococcosis remains a challenging management issue, with little new drug development or recent definitive studies. However, if the diagnosis is made early, if clinicians adhere to the basic principles of these guidelines, and if the underlying disease is controlled, then cryptococcosis can be managed successfully in the vast majority of patients.

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The isoleucine and valine biosynthetic enzyme acetolactate synthase (Ilv2p) is an attractive antifungal drug target, since the isoleucine and valine biosynthetic pathway is not present in mammals, Saccharomyces cerevisiae ilv2Delta mutants do not survive in vivo, Cryptococcus neoformans ilv2 mutants are avirulent, and both S. cerevisiae and Cr. neoformans ilv2 mutants die upon isoleucine and valine starvation. To further explore the potential of Ilv2p as an antifungal drug target, we disrupted Candida albicans ILV2, and demonstrated that Ca. albicans ilv2Delta mutants were significantly attenuated in virulence, and were also profoundly starvation-cidal, with a greater than 100-fold reduction in viability after only 4 h of isoleucine and valine starvation. As fungicidal starvation would be advantageous for drug design, we explored the basis of the starvation-cidal phenotype in both S. cerevisiae and Ca. albicans ilv2Delta mutants. Since the mutation of ILV1, required for the first step of isoleucine biosynthesis, did not suppress the ilv2Delta starvation-cidal defects in either species, the cidal phenotype was not due to alpha-ketobutyrate accumulation. We found that starvation for isoleucine alone was more deleterious in Ca. albicans than in S. cerevisiae, and starvation for valine was more deleterious than for isoleucine in both species. Interestingly, while the target of rapamycin (TOR) pathway inhibitor rapamycin further reduced S. cerevisiae ilv2Delta starvation viability, it increased Ca. albicans ilv1Delta and ilv2Delta viability. Furthermore, the recovery from starvation was dependent on the carbon source present during recovery for S. cerevisiae ilv2Delta mutants, reminiscent of isoleucine and valine starvation inducing a viable but non-culturable-like state in this species, while Ca. albicans ilv1Delta and ilv2 Delta viability was influenced by the carbon source present during starvation, supporting a role for glucose wasting in the Ca. albicans cidal phenotype.