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1.
Curr Pharm Des ; 29(41): 3324-3339, 2023.
Article in English | MEDLINE | ID: mdl-38111115

ABSTRACT

INTRODUCTION: In the present study, we aimed to investigate the extraction and identification of the potential phytochemicals from the Methanolic Extract of Dryopteris ramosa (MEDR) using GC-MS profiling for validating the traditional uses of MEDR its efficacy in inflammations by using in-vitro, in-vivo and in silico approaches in anti-inflammatory models. METHODS: GC-MS analysis confirmed the presence of a total of 59 phytochemical compounds. The human red blood cells (HRBC) membrane stabilization assay and heat-induced hemolysis method were used as in-vitro anti-inflammatory activity of the extract. The in-vivo analysis was carried out through the Xylene-induced mice ear oedema method. It was found that MEDR at a concentration of 20 µg, 30 µg, and 40 µg showed 35.45%, 36.01%, and 36.33% protection to HRBC in a hypotonic solution, respectively. At the same time, standard Diclofenac at 30 µg showed 45.31% protection of HRBC in a hypotonic solution. RESULTS: The extract showed inhibition of 25.32%, 26.53%, and 33.31% cell membrane lysis at heating at 20 µg, 30 µg, and 40 µg, respectively. In comparison, standard Diclofenac at 30 µg showed 50.49% inhibition of denaturation to heat. Methanolic extract of the plant exhibited momentous inhibition in xylene-induced ear oedema in mice treated with 30 µg extract were 47.2%, 63.4%, and 78.8%, while inhibition in mice ear oedema treated with 60 µg extract was 34.7%, 43.05%, 63.21% and reduction in ear thickness of standard drug were 57.3%, 59.54%, 60.42% recorded at the duration of 1, 4 and 24 hours of inflammation. Molecular docking and simulations were performed to validate the anti-inflammatory role of the phytochemicals that revealed five potential phytochemicals i.e. Stigmasterol,22,23dihydro, Heptadecane,8methyl, Pimaricacid, Germacrene and 1,3Cyclohexadiene,_5(1,5dimethyl4hexenyl)-2methyl which revealed potential or significant inhibitory effects on cyclooxygenase-2 (COX-2), tumour necrosis factor (TNF-α), and interleukin (IL-6) in the docking analysis. CONCLUSION: The outcome of the study signifies that MEDR can offer a new prospect in the discovery of a harmonizing and alternative therapy for inflammatory disease conditions.


Subject(s)
Dryopteris , Mice , Humans , Animals , Xylenes/adverse effects , Plant Extracts/pharmacology , Plant Extracts/therapeutic use , Plant Extracts/chemistry , Molecular Docking Simulation , Diclofenac/adverse effects , Hypotonic Solutions/adverse effects , Anti-Inflammatory Agents/pharmacology , Anti-Inflammatory Agents/therapeutic use , Inflammation/drug therapy , Edema/chemically induced , Edema/drug therapy , Methanol/adverse effects , Tumor Necrosis Factor-alpha
2.
Nature ; 590(7847): 551, 2021 02.
Article in English | MEDLINE | ID: mdl-33623167
3.
Micron ; 136: 102876, 2020 09.
Article in English | MEDLINE | ID: mdl-32512409

ABSTRACT

BACKGROUND: In the last few decades, zebrafish (Danio rerio) were introduced as a model organism to investigate human diseases including cardiovascular and neuronal disorders. In most zebrafish investigations, cardiac function and blood flow hemodynamics need to be assessed to study the effects of the interference on the cardiovascular system. For heart function assessment, most important parameters include heart rate, cardiac output, ejection fraction, fractional area change, and fractional shortening. METHODS: A 10 s high-speed video of beating heart and flowing blood within major vessels of zebrafish that are less than 5 days post fertilization (dpf) were recorded via a stereo microscope equipped with a high speed camera. The videos were analyzed using MicroZebraLab and image J software for the assessment of cardiac function. RESULTS: Using the technique described here, we were able to simply yet effectively assess cardiac function and blood flow dynamics of normal zebrafish embryos. We believe that the practical method presented here will help cardiac researchers using the zebrafish as a model to examine cardiac function by using tools that could be available in their laboratory.


Subject(s)
Blood Circulation , Heart Rate/physiology , Hemodynamics , Microscopy, Video/methods , Zebrafish/physiology , Animals , Cardiovascular Diseases , Cardiovascular System , Disease Models, Animal
4.
J Egypt Soc Parasitol ; 41(3): 715-28, 2011 Dec.
Article in English | MEDLINE | ID: mdl-22435163

ABSTRACT

The Egyptian freshwater was assessed in the River Nile, branches, main canals and certain drainages in eight Governorates, over eight successive seasons starting from spring 2008. Chemical assessment was made through ten parameters and the biological one was made through macro-invertebrates information. Results showed that means of Cd, Pb, Cu, Hg, Mn, Fe, Ni, Na, K & Ca varied in watercourses seasonally within somewhat narrow ranges, which may exceed the level of concern but with some elevations in branches, Rayahs and canals during certain seasons. Sites showed chemical levels over the permissible one or those gain total points < or = 6.3 according to the biological assessment indicate that very poor habitat or those of Hilsenhoff Biotic Index (HBI) equal to 7-10 indicate that organic pollution were observed in all the studied watercourses reflecting hazard non point source pollution. Damietta branch in the region of Damietta city characterized with elevations in the concentration of most chemicals examined. The percentages of sites that showed chemical level over the permissible one were 70.56% for K, 54.08% for Cu, 50.08% for Na, 22.08% for Cd, 11.36% for Fe, 5.6% for Pb, 1.92% for Ni, 1.12% for Mn, 0.16% for Ca and at last 0.0736% for Hg. The biological assessment was more able to define more polluted sites than did the chemical one. Human activity data revealed that each of the drains, Giza and Qalyubia canals showed the highest item conduction (animal or plant waste, macroscopic pollution and presence of bridges or barriers) and this was co parallel with their highest pollution recordation.


Subject(s)
Fresh Water/chemistry , Human Activities , Water Pollutants, Chemical/chemistry , Egypt , Metals/chemistry , Seasons , Time Factors , Water Microbiology
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