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1.
Front Microbiol ; 15: 1383509, 2024.
Artigo em Inglês | MEDLINE | ID: mdl-38655086

RESUMO

To investigate the anti-inflammatory and antifungal effects of plumbagin (PL) in Aspergillus fumigatus (A. fumigatus) keratitis, the minimum inhibitory concentration (MIC), time-killing curve, spore adhesion, crystal violet staining, calcium fluoride white staining, and Propidium Iodide (PI) staining were employed to assess the antifungal activity of PL in vitro against A. fumigatus. The cytotoxicity of PL was assessed using the Cell Counting Kit-8 (CCK8). The impact of PL on the expression of HMGB1, LOX-1, TNF-α, IL-1ß, IL-6, IL-10 and ROS in A. fumigatus keratitis was investigated using RT-PCR, ELISA, Western blot, and Reactive oxygen species (ROS) assay. The therapeutic efficacy of PL against A. fumigatus keratitis was assessed through clinical scoring, plate counting, Immunofluorescence and Hematoxylin-Eosin (HE) staining. Finally, we found that PL inhibited the growth, spore adhesion, and biofilm formation of A. fumigatus and disrupted the integrity of its cell membrane and cell wall. PL decreased IL-6, TNF-α, and IL-1ß levels while increasing IL-10 expression in fungi-infected mice corneas and peritoneal macrophages. Additionally, PL significantly attenuated the HMGB1/LOX-1 pathway while reversing the promoting effect of Boxb (an HMGB1 agonist) on HMGB1/LOX-1. Moreover, PL decreased the level of ROS. In vivo, clinical scores, neutrophil recruitment, and fungal burden were all significantly reduced in infected corneas treated with PL. In summary, the inflammatory process can be inhibited by PL through the regulation of the HMGB-1/LOX-1 pathway. Simultaneously, PL can exert antifungal effects by limiting fungal spore adhesion and biofilm formation, as well as causing destruction of cell membranes and walls.

2.
J Control Release ; 368: 483-497, 2024 Apr.
Artigo em Inglês | MEDLINE | ID: mdl-38458571

RESUMO

Fungal keratitis is a refractory eye disease that is prone to causing blindness. Fungal virulence and inflammatory responses are two major factors that accelerate the course of fungal keratitis. However, the current antifungal drugs used for treatment usually possess transient residence time on the ocular surface and low bioavailability deficiencies, which limit their therapeutic efficacy. In this work, natamycin (NATA)-loaded mesoporous zinc oxide (Meso-ZnO) was synthesized for treating Aspergillus fumigatus keratitis with excellent drug-loading and sustained drug release capacities. In addition to being a carrier for drug delivery, Meso-ZnO could restrict fungal growth in a concentration-dependent manner, and the transcriptome analysis of fungal hyphae indicated that it inhibited the mycotoxin biosynthesis, oxidoreductase activity and fungal cell wall formation. Meso-ZnO also promoted cell migration and exhibited anti-inflammatory role during fungal infection by promoting the activation of autophagy. In mouse models of fungal keratitis, Meso-ZnO/NATA greatly reduced corneal fungal survival, alleviated tissue inflammatory damage, and reduced neutrophils accumulation and cytokines expression. This study suggests that Meso-ZnO/NATA can be a novel and effective treatment strategy for fungal keratitis.


Assuntos
Aspergilose , Infecções Oculares Fúngicas , Ceratite , Óxido de Zinco , Animais , Camundongos , Antifúngicos/uso terapêutico , Antifúngicos/farmacologia , Óxido de Zinco/uso terapêutico , Aspergilose/tratamento farmacológico , Aspergilose/microbiologia , Ceratite/tratamento farmacológico , Ceratite/metabolismo , Ceratite/microbiologia , Natamicina/uso terapêutico , Infecções Oculares Fúngicas/tratamento farmacológico , Infecções Oculares Fúngicas/metabolismo , Infecções Oculares Fúngicas/microbiologia , Sistemas de Liberação de Medicamentos , Camundongos Endogâmicos C57BL
3.
Exp Eye Res ; 240: 109830, 2024 Mar.
Artigo em Inglês | MEDLINE | ID: mdl-38364932

RESUMO

Fungal keratitis (FK) is a refractory keratitis caused by excessive inflammation and fungal damage. Excessive inflammation can lead to tissue damage and corneal opacity, resulting in a poor prognosis for FK. Oxymatrine (OMT) is a natural alkaloid, which has rich pharmacological effects, such as antioxidant and anti-inflammation. However, its antifungal activity and the mechanism of action in FK have not been elucidated. This study confirmed that OMT suppressed Aspergillus fumigatus growth, biofilm formation, the integrity of fungal cell and conidial adherence. OMT not only effectively reduced corneal fungal load but also inflammation responses. OMT lessened the recruitment of neutrophils and macrophages in FK. In addition, OMT up-regulated the expression of Nrf2 and down-regulated the expression of IL-18, IL-1ß, caspase-1, NLRP3 and GSDMD. Pre-treatment with Nrf2 inhibitor up-regulated the expression of IL-1ß, IL-18, caspase-1, NLRP3 and GSDMD supressed by OMT. In conclusion, OMT has efficient anti-inflammatory and antifungal effects by suppressing fungal activity and restricting pyroptosis via Nrf2 pathway. OMT is considered as a potential option for the treatment of FK.


Assuntos
Aspergilose , Úlcera da Córnea , Infecções Oculares Fúngicas , Ceratite , Matrinas , Animais , Camundongos , Aspergillus fumigatus/fisiologia , Proteína 3 que Contém Domínio de Pirina da Família NLR , Interleucina-18 , Aspergilose/tratamento farmacológico , Aspergilose/metabolismo , Antifúngicos/farmacologia , Antifúngicos/uso terapêutico , Piroptose , Fator 2 Relacionado a NF-E2 , Ceratite/microbiologia , Inflamação , Infecções Oculares Fúngicas/tratamento farmacológico , Infecções Oculares Fúngicas/metabolismo , Caspase 1/metabolismo , Camundongos Endogâmicos C57BL
4.
Front Microbiol ; 14: 1119568, 2023.
Artigo em Inglês | MEDLINE | ID: mdl-36876115

RESUMO

Aspergillus fumigatus keratitis is a potential blinding disease associated with A. fumigatus invasion and excessive inflammatory response. Benzyl isothiocyanate (BITC) is a secondary metabolite with broad antibacterial and anti-inflammatory activity extracted from cruciferous species. However, the role of BITC in A. fumigatus keratitis has not been discovered yet. This study aims to explore the antifungal and anti-inflammatory effects and mechanisms of BITC in A. fumigatus keratitis. Our results provided evidences that BITC exerted antifungal effects against A. fumigatus by damaging cell membranes, mitochondria, adhesion, and biofilms in a concentration-dependent manner. In vivo, fungal load and inflammatory response including inflammatory cell infiltration and pro-inflammatory cytokine expression were reduced in BITC-treated A. fumigatus keratitis. Additionally, BITC significantly decreased Mincle, IL-1ß, TNF-α, and IL-6 expression in RAW264.7 cells that stimulated by A. fumigatus or Mincle ligand trehalose-6,6-dibehenate. In summary, BITC possessed fungicidal activities and could improve the prognosis of A. fumigatus keratitis by reducing fungal load and inhibiting the inflammatory response mediated by Mincle.

5.
Int Immunopharmacol ; 116: 109782, 2023 Mar.
Artigo em Inglês | MEDLINE | ID: mdl-36731151

RESUMO

Fungal keratitis is an infectious vision-threatening disease that has a poor prognosis, and the clinical therapeutic drugs have multiple limitations, such as epithelial toxicity and low bioavailability. Therefore, new antifungal treatment strategies must be developed. 4-Methoxycinnamic acid (MCA) is a widely occurring natural phenolic acid that has been proven to have multiple effects, such as antibacterial, antifungal, anti-inflammatory, neuroprotective, and inhibiting cancer. In this research, we explored the effects and underlying mechanisms of MCA on A. fumigatus keratitis and the antifungal effects of the combination of MCA and natamycin (NATA) on A. fumigatus. We found that MCA exerts antifungal effects by inhibiting the synthesis of the fungal cell wall, changing the permeability of fungal cell membranes. Moreover, the MCA-NATA combination exhibited synergy for A. fumigatus. In addition, MCA exerted an anti-inflammatory effect by downregulating the inflammatory factors (IL-1ß, TNF-α, IL-6, and iNOS) in C57BL/6 mice and RAW264.7 cells. The anti-inflammatory mechanism of MCA was associated with the Mincle signal pathway. In summary, MCA acts as a potential therapeutic drug for fungal keratitis and a potential antifungal sensitizer for natamycin. MCA inhibits fungal cell wall synthesis, destroys the permeability of fungal cell membranes, and mediates the anti-inflammatory, immune response of the host.


Assuntos
Aspergilose , Infecções Oculares Fúngicas , Ceratite , Animais , Camundongos , Natamicina/farmacologia , Natamicina/uso terapêutico , Antifúngicos/farmacologia , Antifúngicos/uso terapêutico , Aspergillus fumigatus , Camundongos Endogâmicos C57BL , Infecções Oculares Fúngicas/tratamento farmacológico
6.
Eur J Pharmacol ; 945: 175607, 2023 Apr 15.
Artigo em Inglês | MEDLINE | ID: mdl-36822458

RESUMO

Fungal keratitis (FK) is a blinding ocular disease, which mainly results from fungal damage and excessive inflammation. Pentoxifylline, a kind of methylxanthine, has been discovered to have anti-inflammatory properties in various infectious diseases, hinting a potential therapeutic effect on treating corneal fungal infection. Whereas, the therapeutic impact of pentoxifylline on fungal keratitis is still uncertain. This study investigated the antifungal capability against Aspergillus fumigatus and the anti-inflammatory role of pentoxifylline by activating nuclear factor, erythroid 2 like 2 (Nrf2)/heme oxygenase1 (HO1) pathway in the process of FK. In our research, we demonstrated that pentoxifylline could effectively inhibit fungal growth and inflammatory reaction. Pentoxifylline reduced the production of pro-inflammatory factors by stimulating the Nrf2/HO1 pathway. Although there was no statistical difference between the curative efficacy of pentoxifylline and natamycin application to FK, pentoxifylline could promote corneal epithelial repair and was less toxicity to the ocular surface than natamycin. In conclusion, pentoxifylline performs antifungal and anti-inflammatory effects by lessening the fungus burden and activating the Nrf2/HO1 pathway, hinting that it has the potential to be a new therapeutic medication for Aspergillus fumigatus keratitis.


Assuntos
Aspergilose , Infecções Oculares Fúngicas , Ceratite , Pentoxifilina , Humanos , Animais , Camundongos , Aspergillus fumigatus , Natamicina/uso terapêutico , Pentoxifilina/farmacologia , Pentoxifilina/uso terapêutico , Antifúngicos/farmacologia , Antifúngicos/uso terapêutico , Fator 2 Relacionado a NF-E2 , Aspergilose/tratamento farmacológico , Aspergilose/metabolismo , Ceratite/metabolismo , Inflamação/tratamento farmacológico , Infecções Oculares Fúngicas/tratamento farmacológico , Anti-Inflamatórios/farmacologia , Anti-Inflamatórios/uso terapêutico , Camundongos Endogâmicos C57BL
7.
Biomed Res Int ; 2015: 328943, 2015.
Artigo em Inglês | MEDLINE | ID: mdl-26504800

RESUMO

Polyetheretherketone (PEEK), which has biomechanical performance similar to that of human cancellous bone, is used widely as a spinal implant material. However, its bioinertness and hydrophobic surface properties result in poor osseointegration. This study applies a novel modification method, arc ion plating (AIP), that produces a highly osteoblast compatible titanium dioxide (TiO2) coatings on a PEEK substrate. This PEEK with TiO2 coating (TiO2/PEEK) was implanted into the femurs of New Zealand white male rabbits to evaluate its in vivo performance by the push-out test and histological observation. Analytical results show that AIP can prepare TiO2 coatings on bullet-shaped PEEK substrates as implant materials. After prolonged implantation in rabbits, no signs of inflammation existed. Newly regenerated bone formed more prominently with the TiO2/PEEK implant by histological observation. The shear strength of the bone/implant interface increases as implantation period increases. Most importantly, bone bonding performance of the TiO2/PEEK implant was superior to that of bare PEEK. The rutile-TiO2 coatings achieved better osseointegration than the anatase-TiO2 coatings. Therefore, AIP-TiO2 can serve as a novel surface modification method on PEEK for spinal interbody fusion cages.


Assuntos
Materiais Revestidos Biocompatíveis/química , Cetonas , Osseointegração , Polietilenoglicóis , Próteses e Implantes , Titânio , Animais , Benzofenonas , Fêmur/cirurgia , Humanos , Masculino , Teste de Materiais , Microscopia Eletrônica de Varredura , Polímeros , Coelhos , Resistência ao Cisalhamento , Coluna Vertebral/cirurgia , Propriedades de Superfície , Fatores de Tempo
8.
J Biomed Mater Res A ; 100(10): 2787-92, 2012 Oct.
Artigo em Inglês | MEDLINE | ID: mdl-22623173

RESUMO

Titanium dioxide (TiO(2)), known to exhibit good biocompatibility, is applied in this study as a thin film formed onto polyetheretherketone (PEEK) substrate, which has been widely used in spinal interbody fusion cages. For successful deposition, an arc ionplating (AIP) technique was applied to deposit TiO(2) at low deposition temperature without damaging PEEK substrate, while providing satisfactory film adhesion. This study systematically investigates the effects of TiO(2) thin film phase composition and surface characteristics, controlled by using different target current and substrate bias, on osteoblast compatibility. Experimental results showed that anatase phase (A-TiO(2)) and/or rutile phase (R-TiO(2) ) TiO(2) coatings, respectively, can be prepared in appropriate deposition conditions. Overall, the TiO(2)-coated PEEK presented better osteoblast compatibility than the bare PEEK material in terms of cell adhesion, cell proliferation, and cell differentiation abilities, as well as osteogenesis performance (as determined by levels of osteopontin, osteocalcin, and calcium content). Surface roughness and hydrophilicity of the AIP-TiO(2) films were found to be responsible for significant osteoblast cell growth. It is also noticeable that the R-TiO(2) exhibited better osteoblast compatibility than the A-TiO(2) due to the presence of negatively charged hydroxyl groups on R-TiO(2) (110) surface in nature.


Assuntos
Materiais Revestidos Biocompatíveis/farmacologia , Galvanoplastia/métodos , Cetonas/farmacologia , Osteoblastos/citologia , Polietilenoglicóis/farmacologia , Próteses e Implantes , Medula Espinal/fisiologia , Titânio/química , Animais , Benzofenonas , Células Cultivadas , Cristalografia , Teste de Materiais , Camundongos , Osteoblastos/efeitos dos fármacos , Osteoblastos/ultraestrutura , Polímeros , Medula Espinal/efeitos dos fármacos , Propriedades de Superfície , Água/química , Difração de Raios X
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