scholarly journals Microglial Response to Aspergillus flavus and Candida albicans: Implications in Endophthalmitis

2020 ◽  
Vol 6 (3) ◽  
pp. 162
Author(s):  
Jaishree Gandhi ◽  
Poonam Naik ◽  
Inderjeet Kaur ◽  
Ashok Kumar ◽  
Joveeta Joseph

Aspergillus flavus is the most common etiology of fungal endophthalmitis in India, while Candida albicans is the causative agent in the West. In this study, we determined the role of microglial cells in evoking an inflammatory response following an infection with A. flavus and C. albicans strains isolated from patients with endophthalmitis. Microglia (CHME-3) cells were infected with A. flavus and C. albicans and the expression of Toll-Like Receptors (TLRs), cytokines and Matrix metalloproteinases (MMPs) were assessed at various time intervals. A. flavus infected cells induced higher expressions of TLR-1, -2, -5, -6, -7 and -9 and cytokines such as IL-1α, IL-6, IL-8, IL-10 and IL-17. In contrast, C. albicans infected microglia induced only TLR-2 along with the downregulation of IL-10 and IL-17. The expression of MMP-9 (Matrix metalloproteinase-9) was however upregulated in both A. flavus and C. albicans infected microglia. These results indicate that microglial cells have the ability to incite an innate response towards endophthalmitis causing fungal pathogens via TLRs and inflammatory mediators. Moreover, our study highlights the differential responses of microglia towards yeast vs. filamentous fungi.

2021 ◽  
Author(s):  
Mahdi Hosseini Bafghi ◽  
Razieh Nazari ◽  
Majid Darroudi ◽  
Mohsen Zargar ◽  
Hossein Zarrinfar

Abstract Biosynthesis of nanoparticles can stand as a replacement for the available chemical and physical methods by offering new procedures as green syntheses that have proved to be simple, biocompatible, safe, and cost-effective. Considering how nanoparticles with a size of 1 to 100 nanometers contain unique physical and chemical properties, recent reports are indicative of observing the antifungal qualities of selenium nanoparticles (Se-NPs). Recently, the observance of antifungal resistance towards different species of these fungi is often reported. Therefore, due to the antifungal effects of biological nanoparticles, this study aimed to investigate the exertion of these nanoparticles and evaluate their effects on the growth of fungal pathogens. Se-NPs were biosynthesized by the application of wet reduction method, which included specific concentrations of Aspergillus flavus and Candida albicans. The presence of nanoparticles was confirmed by methods such as UV-Vis spectroscopy, FT-IR analysis, and FESEM electron microscope that involved FESEM and EDAX diagram. The fungal strains were cultured in sabouraud dextrose agar medium to perform the sensitivity test based on the minimum inhibitory concentration (MIC) method in duplicate. The utilization of Se-NPs at concentrations of 1 µg/ ml and below resulted in zero growth of fungal agents. However, their growth was inhibited by antifungal drugs at concentrations of 2 µg/ ml and higher. Based on the obtained results, biological nanoparticles produced by fungal agents at different concentrations exhibited favorable inhibitory effects on the growth of fungal strains.


2019 ◽  
Vol 20 (22) ◽  
pp. 5733 ◽  
Author(s):  
Fernando Lucas-Ruiz ◽  
Caridad Galindo-Romero ◽  
Kristy T. Rodríguez-Ramírez ◽  
Manuel Vidal-Sanz ◽  
Marta Agudo-Barriuso

For years it has been known that unilateral optic nerve lesions induce a bilateral response that causes an inflammatory and microglial response in the contralateral un-injured retinas. Whether this contralateral response involves retinal ganglion cell (RGC) loss is still unknown. We have analyzed the population of RGCs and the expression of several genes in both retinas of pigmented mice after a unilateral axotomy performed close to the optic nerve head (0.5 mm), or the furthest away that the optic nerve can be accessed intraorbitally in mice (2 mm). In both retinas, RGC-specific genes were down-regulated, whereas caspase 3 was up-regulated. In the contralateral retinas, there was a significant loss of 15% of RGCs that did not progress further and that occurred earlier when the axotomy was performed at 2 mm, that is, closer to the contralateral retina. Finally, the systemic treatment with minocycline, a tetracycline antibiotic that selectively inhibits microglial cells, or with meloxicam, a non-steroidal anti-inflammatory drug, rescued RGCs in the contralateral but not in the injured retina. In conclusion, a unilateral optic nerve axotomy triggers a bilateral response that kills RGCs in the un-injured retina, a death that is controlled by anti-inflammatory and anti-microglial treatments. Thus, contralateral retinas should not be used as controls.


2020 ◽  
Vol 94 (23) ◽  
Author(s):  
Olus Uyar ◽  
Nataly Laflamme ◽  
Jocelyne Piret ◽  
Marie-Christine Venable ◽  
Julie Carbonneau ◽  
...  

ABSTRACT The role of a signaling pathway through macrophage colony-stimulating factor (MCSF) and its receptor, macrophage colony-stimulating factor 1 receptor (CSF1R), during experimental herpes simplex virus 1 (HSV-1) encephalitis (HSE) was studied by two different approaches. First, we evaluated the effect of stimulation of the MCSF/CSF1R axis before infection. Exogenous MCSF (40 μg/kg of body weight intraperitoneally [i.p.]) was administered once daily to BALB/c mice on days 4 and 2 before intranasal infection with 2,500 PFU of HSV-1. MCSF treatment significantly increased mouse survival compared to saline (50% versus 10%; P = 0.0169). On day 6 postinfection (p.i.), brain viral titers were significantly decreased, whereas beta interferon (IFN-β) was significantly increased in mice treated with MCSF compared to mice treated with saline. The number of CD68+ (a phagocytosis marker) microglial cells was significantly increased in MCSF-treated mice compared to the saline-treated group. Secondly, we conditionally depleted CSF1R on microglial cells of CSF1R-loxP-CX3CR1-cre/ERT2 mice (in a C57BL/6 background) through induction with tamoxifen. The mice were then infected intranasally with 600,000 PFU of HSV-1. The survival rate of mice depleted of CSF1R (knockout [KO] mice) was significantly lower than that of wild-type (WT) mice (0% versus 67%). Brain viral titers and cytokine/chemokine levels were significantly higher in KO than in WT animals on day 6 p.i. Furthermore, increased infiltration of monocytes into the brains of WT mice was seen on day 6 p.i., but not in KO mice. Our results suggest that microglial cells are essential to control HSE at early stages of the disease and that the MCSF/CSF1R axis could be a therapeutic target to regulate their response to infection. IMPORTANCE Microglia appear to be one of the principal regulators of neuroinflammation in the central nervous system (CNS). An increasing number of studies have demonstrated that the activation of microglia could result in either beneficial or detrimental effects in different CNS disorders. Hence, the role of microglia during herpes simplex virus encephalitis (HSE) has not been fully characterized. Using experimental mouse models, we showed that an early activation of the MCSF/CSF1R axis improved the outcome of the disease, possibly by inducing a proliferation of microglia. In contrast, depletion of microglia before HSV-1 infection worsened the prognosis of HSE. Thus, an early microglial response followed by sustained infiltration of monocytes and T cells into the brain seem to be key components for a better clinical outcome. These data suggest that microglia could be a potential target for immunomodulatory strategies combined with antiviral therapy to better control the outcome of this devastating disease.


The present study illustrates the antifungal efficacy of methanolic extract from marine brown seaweed Colopomenia peregrina gathered from Leepuram coast, South India, towards opportunistic fungal pathogens comprising of dermatophytes, non-dermatophytes, and yeasts. The opportunistic fungal pathogens used in the study are Aspergillus flavus (ATCC 27692), Aspergillus fumigatus (ATCC 19673), Microsporum gypseum (ATCC 24102), Cryptococcus neoformans (ATCC 14116), and Candida albicans (ATCC14053) which are commonly responsible for nosocomial infections. The NMR analysis revealed the presence of various chemical shifts showing the presence of protons containing Hydroxyl, Methoxy, Methyl groups, and –COO-CH2 groups.The presence of phytochemicals from the extract of seaweed confirmed the nutritional profile. The results revealed greater efficacy of methanolic extract towards Aspergillus fumigatus, Microsporum gypseum, Cryptococcus neoformans, and lower activity with Aspergillus flavus and Candida albicans compared with the standard anti-fungal fluconazole.


2009 ◽  
Vol 72 (1) ◽  
pp. 185-188 ◽  
Author(s):  
R. L. BAKER ◽  
R. L. BROWN ◽  
Z.-Y. CHEN ◽  
T. E. CLEVELAND ◽  
A. M. FAKHOURY

Infection of maize both pre- and postharvest by Aspergillus flavus is a severe agricultural problem in the southern United States. Aflatoxins are secondary metabolites produced by A. flavus and are carcinogenic to humans and animals upon ingestion. Extensive research has been conducted to identify sources of resistance to A. flavus in maize. Some maize genotypes exhibit greater resistance to A. flavus than others. Many research groups have validated the role of plant trypsin inhibitors (TIs) as a means of plant defense against fungal infection. Research consisting of the cloning, expression, and partial characterization of one previously uncharacterized TI protein has been conducted. The overexpressed protein displayed TI activity, as expected, and some ability to alter germination of conidia (8%) from several fungal pathogens and to inhibit hyphal growth (30%). This effect on fungal growth, although less than that of previously investigated TIs, marks this protein as a potential source of resistance to aflatoxin accumulation in maize.


Antioxidants ◽  
2021 ◽  
Vol 10 (1) ◽  
pp. 136
Author(s):  
Xiaolong Mao ◽  
Li Yang ◽  
Yingzheng Liu ◽  
Congcong Ma ◽  
Tianyu Ma ◽  
...  

Candida albicans is one of the most common opportunistic fungal pathogens in human beings. When infecting host cells, C. albicans is often exposed to oxidative stress from the host immune defense system. Maintenance of mitochondrial and vacuolar functions is crucial for its resistance to oxidative stress. However, the role of vacuole and mitochondria patchs (vCLAMPs) in cellular oxidative stress resistance and in the maintenance of organelle functions remains to be elucidated. Herein, the function of the vCLAMP protein Vam6 in response to oxidative stress was explored. The results showed that the vam6∆/∆ mutant exhibited obvious mitochondrial swelling, mtDNA damage, reduced activity of antioxidant enzymes, and abnormal vacuolar morphology under H2O2 treatment, indicating its important role in maintaining the structures and functions of both mitochondria and vacuoles under oxidative stress. Further studies showed that deletion of VAM6 attenuated hyphal development under oxidative stress. Moreover, loss of Vam6 obviously affected host tissue invasion and virulence of C. albicans. Taken together, this paper reveals the critical role of vCLAMPs in response to oxidative stress in C. albicans.


Author(s):  
Е.В. Маркелова ◽  
О.В. Овчинникова ◽  
А.С. Хохлова ◽  
Л.П. Догадова ◽  
А.В. Костюшко ◽  
...  

Оперативное вмешательство - один из основных методов лечения глаукомы. Однако развитие избыточного рубцевания созданных путей оттока определяет результат хирургического лечения в отдаленные сроки. Процессы рубцевания на данный момент недостаточно изучены. Цель исследования - оценка роли матриксной металлопротеиназы-9, ее ингибиторов в процессах рубцевания у больных с первичной открытоугольной глаукомой после оперативного лечения. Методика. Для выявления возможных маркеров избыточного рубцевания методом твердофазного иммуноферментного анализа определяли содержание матриксных металлопротеиназ-9, тканевых ингибиторов металлопротеиназ 2 и -3 в слезной жидкости у 37 пациентов с активной стадией первичной остроугольной глаукомы в динамике послеоперационного периода. Средний возраст пациентов составил 52,8 лет. В зависимости от исхода оперативного вмешательства все пациенты были разделены на 2 группы - с благоприятным исходом (без избыточного рубцевания) и с неблагоприятным исходом (с избыточным рубцеванием) на месте сформированных дополнительных путей оттока внутриглазной жидкости в послеоперационном периоде. Группа контроля включала 20 человек в возрасте от 50 до 66 лет без сопутствующей офтальмологической и соматической патологии в стадии обострения. Результаты. В динамике показано изменение концентрации матриксной металлопротеиназы-9 и ее ингибиторов в послеоперационном периоде. Анализ данных свидетельствует об обратной зависимости уровня матриксной металлопротеиназы-9 и тканевых ингибиторов металлопротеиназы 2 и 3 типов с исходом операции - чем выше концентрация металлопротеиназы-9 и ниже концентрация тканевых ингибиторов металлопротеиназ 2, -3 в слезной жидкости, тем выше вероятность неблагоприятного исхода в виде рубцевания сформированных дополнительных путей оттока внутриглазной жидкости в послеоперационном периоде. Заключение. Мониторинг уровня металлопротеиназ и их тканевых ингибиторов после проведения хирургического лечения пациентов с первичной открытоугольной глаукомой позволяет прогнозировать раннее рубцевание, дает возможность разработки новых методов лечения как в раннем, так и в позднем послеоперационном периоде. Surgery is one of the major treatments for glaucoma; however excessive scarring of created outflow patways affects the long-term outcome. At the present time, scarring processes are not sufficiently studied. Aim. To evaluate the role of matrix metalloproteinase 9 and its inhibitors in scarring after surgical treatment of open-angle glaucoma. Methods. Concentrations of matrix metalloproteinase 9 and tissue inhibitors of metalloproteinases 2 and 3 were measured in tear fluid of 37 patients (mean age, 52.8) with active primary open-angle glaucoma in dynamics during the postoperative period to identify possible markers of excessive scarring. Based on the surgery outcome, all patients were divided into two groups, with a favorable outcome (without excessive scarring) and an unfavorable outcome (with excessive scarring) in the created additional outflow pathways for the intraocular fluid in the postoperative period. The control group included 20 subjects aged 50-66 without eye disease or somatic disease at exacerbation stage. Results. Analysis of changes in concentrations of matrix metalloproteinase 9 and its inhibitors in the postoperative period showed their inverse relationship with the surgery outcome. The higher was the metalloproteinase 9 level and the lower the level of tissue inhibitors of metalloproteinases 2 and 3 the higher was the probability of unfavorable outcome evident as excessive scarring of the formed additional pathways for tear fluid outflow in the postoperative period. Conclusion. Postoperative monitoring of metalloproteinases and their tissue inhibitors allows to predict early scarring and to develop new treatments both in early and late postoperative periods.


2012 ◽  
Vol 2 (3) ◽  
pp. 172-184
Author(s):  
Daniel M. de Oliveira ◽  
Niels O.S. Camara ◽  
Jean P.S. Peron

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