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1.
BMC Oral Health ; 23(1): 1014, 2023 12 19.
Article in English | MEDLINE | ID: mdl-38110929

ABSTRACT

BACKGROUND: Recurrent aphthous stomatitis has a complex and inflammatory origin. Among the great variety of medications it is increasingly common to use herbal medicines due to the adverse side effects of chemical medications. Considering the anti-inflammatory properties of cinnamaldehyde and the lack of studies related to the effectiveness of its nano form; This study investigates the effect of cinnamaldehyde and nano cinnamaldehyde on the healing rate of recurrent aphthous stomatitis lesions. METHODS: In a laboratory experiment, cinnamaldehyde was converted into niosomal nanoparticles. The niosome vesicles diameter and polydispersity index were measured at 25°C using a dynamic light scattering (DLS) Mastersizer 2000 (Malvern Panalytical technologies: UK) and Zetasizer Nano ZS system (Malvern Instruments Worcestershire: UK). After characterizing these particles, the (2,3-Bis-(2-Methoxy-4-Nitro-5-Sulfophenyl)-2H-Tetrazolium-5-Carboxanilide) [XTT] assay was used to assess the toxicity of cinnamaldehyde and nano cinnamaldehyde on gingival fibroblast (HGF) and macrophage (THP-1) cells. By determining the release of TNF-α, IL-6, and TGF-ß cytokines using ELISA kits, the level of tissue repair and anti-inflammatory capabilities of these two substances were evaluated. RESULTS: The size and loading rate of the cinnamaldehyde nanoparticles were established after its creation. The optimized nanovesicle exhibited the following characteristics: particle size of 228.75 ± 2.38 nm, PDI of 0.244 ± 0.01, the zeta potential of -10.87 ± 1.09 mV and the drug encapsulation percentage of 66.72 ± 3.93%. PDIs range was between 0.242-0.274. The zeta potential values at 25°C were from -2.67 to -12.9 mV. The results of the XTT test demonstrated that nano cinnamaldehyde exhibited dose-dependent toxicity effects. Moreover, nano cinnamaldehyde released more TGF-ß and had better reparative effects when taken at lower concentrations than cinnamaldehyde. CONCLUSION: Nano cinnamaldehyde and cinnamaldehyde are effective in repairing tissue when used in non-toxic amounts. After confirmation in animal models, it is envisaged that these substances can be utilized to treat recurrent aphthous stomatitis.


Subject(s)
Stomatitis, Aphthous , Animals , Macrophages , Anti-Inflammatory Agents/pharmacology , Fibroblasts , Transforming Growth Factor beta/pharmacology
2.
Microb Pathog ; 134: 103601, 2019 Sep.
Article in English | MEDLINE | ID: mdl-31212035

ABSTRACT

Toxoplasma gondii, the etiological agent of toxoplasmosis, can cause severe or lethal damages in both animals and man. So, tends to develop a more effective vaccine to prevent this disease is extremely needed and would be so prominent. The novel dense granule antigen 14 (GRA14) has been identified as a potential vaccine candidate against T. gondii infection. The aim of this study was evaluation of protective immunity induced by prime/boost vaccination strategy of GRA14 antigen with calcium phosphate (CaPNs) or Aluminum hydroxide (Alum) nano-adjuvants in BALB/c mice. The finding showed that immunization with the prime-boost strategy using plasmid DNA (pcGRA14) and recombinant protein (rGRA14) with nano-adjuvants significantly elicited levels of specific IgG antibodies and cytokines against T. gondii infection. Given that, there were the high levels of total IgG, IgG2a, IFN-γ in mice of rGRA14-CaPNs and pcGRA14 + rGRA14-CaPNs groups, which indicating a Th-1 type response. While immunization of mice with Alum based rGRA14 and pcGRA14 + rGRA14 elicited specific IgG1 and IL-4 levels, which was confirmed a Th-2 type response. Mice immunized with DNA prime-protein boost vaccine with nano-adjuvants produce more vigorous specific lymphoproliferative responses than mice immunized with other antigen formulations. In addition, the CaPNs-based prime-boost vaccine of pcGRA14 + rGRA14 showed the longest survival time in mice and the lowest parasitic load in their brain tissue compared to the other groups. The results obtained in this study show that the use of GRA14 based DNA prime-protein boost vaccination regime with CaPNs can dramatically enhanced both humoral and cellular immune responses. Therefore, this strategy can provide a promising approach to the development of an effective vaccine against T. gondii infection in the future.


Subject(s)
Antigens, Protozoan/immunology , Immunization, Secondary/methods , Protozoan Proteins/immunology , Protozoan Vaccines/immunology , Recombinant Proteins/immunology , Toxoplasma/immunology , Toxoplasmosis, Animal/prevention & control , Vaccination , Adjuvants, Immunologic , Aluminum Hydroxide , Animals , Antibodies, Protozoan/blood , Antigens, Protozoan/genetics , Calcium Phosphates , Cytokines/blood , Disease Models, Animal , Female , Immunity, Cellular/drug effects , Immunity, Humoral/drug effects , Immunoglobulin G/blood , Interferon-gamma/blood , Interleukin-4/blood , Mice , Mice, Inbred BALB C , Nanoparticles/chemistry , Parasite Load , Protozoan Proteins/genetics , Protozoan Vaccines/genetics , Toxoplasma/genetics , Toxoplasmosis, Animal/immunology , Vaccines, DNA/immunology
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