larvae are of veterinary and medical importance caused specific equine intestinal myiasis. (Botfly larvae) had a wide geographical distribution. The present study explores the prevalence rate of 3 stage larvae in Egypt from January- December 2017; besides, in vitro trials to control of this larvae and evaluation of this trial using Scanning Electron Microscope (SEM) and histopathology of treated larvae. In the present study, the 3 larval stage of was found in clusters in the epithelium of the investigated stomach and infested with prevalence rate 97.2%. The highest collected numbers of larvae were found in two months; March and August (570 & 520 larvae) and lowest numbers (200 larvae) were collected in October, November, and December. The calculated LC and LC values of neem seed extract were 707.9 ppm and 1090.7 ppm. The different alteration was recorded after exposure to oil extract which showed some destruction on cuticle surface as folded and corrugated cuticle, destruction of maxillae with pits on its surface, disfigure and irregularity of cephalic spines. Histopathology of exposed larvae showed different changes as thinning of cuticle at the different level (exocuticle, endocuticle, cell layers), degeneration of epithelial cells of the gut and different degree of necrosis was described. Life cycle of was followed up after treatment with neem seed extract.
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http://dx.doi.org/10.4314/ovj.v8i4.12 | DOI Listing |
Arch Physiol Biochem
November 2024
Department of Chemistry, Jackson State University, Jackson, MS, USA.
The neem plant () has popular ethnomedicinal applications. The anti-diabetic potential and mechanism of neem seed oil (NSO) in a rodent model of type 2 diabetes mellitus was evaluated in the present study. Experimentally-induced diabetic animals were administered NSO (200 and 400 mg/kg) or metformin (150 mg/kg) orally for 30 days, with some animals serving as positive and negative controls.
View Article and Find Full Text PDFAdv Mind Body Med
October 2024
It is no surprise that nature has provided us with many therapeutic compounds for thousands of years. Throughout history, plants and their derivatives have been used orally and locally to treat most of the diseases. In addition to providing a wealth of health benefits, Azadirachta indica stands out among all of them as one of the most universal and prolific trees.
View Article and Find Full Text PDFChem Biodivers
October 2024
Department of Pharmacy, COMSATS University Islamabad, Lahore Campus, Lahore, 54000, Pakistan.
The present study intended to develop a pH-responsive hydrogel based on Neem gum (Ng) to improve Lansoprazole (LSP) oral bioavailability. Azadirachta Indica seed extract was used to obtain Ng. pH-responsive hydrogel formulations (F1-F9) were prepared using different Ng ratios, Acrylamide (AAm), and methylene-bis-acrylamide (MBA).
View Article and Find Full Text PDFMol Neurobiol
September 2024
Neurobiology of Disease Laboratory, Department of Bioscience and Biotechnology, Indian Institute of Technology, Kharagpur, 721302, India.
Azadiradione is a brain-permeable phytochemical present in the seed of an Indian medicinal plant, Azadirachta Indica, well known as neem. Recently, this small bioactive molecule has been revealed to induce the expression of Ube3a, a ubiquitin ligase whose loss and gain of function are associated with two diverse neurodevelopmental disorders. Here, we report that in utero exposure to azadiradione in mice results in severe developmental disabilities.
View Article and Find Full Text PDFSci Rep
September 2024
Department of Mechanical, Bioresources and Biomedical Engineering, Science Campus, University of South Africa, Private Bag X6, Florida, 1709, South Africa.
The worldwide exploration of the ethanolysis protocol (EP) has decreased despite the multifaceted benefits of ethanol, such as lower toxicity, higher oxygen content, higher renewability, and fewer emission tail compared to methanol, and the enhanced fuel properties with improved engine characteristics of multiple-oily feedstocks (MOFs) compared to single-oily feedstocks. The study first proposed a strategy for the optimisation of ethylic biodiesel synthesis from MOFs: neem, animal fat, and jatropha oil (NFJO) on a batch reactor. The project's goals were to ensure environmental benignity and encourage the use of totally biobased products.
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