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Better understanding motivated beliefs about the causes of and solutions to pandemics is critical for developing interventions.
Some local communities in Cote d'Ivoire use the mushroom Termitomyces schimperi combined with kaolin (TSK) to manage various cancers in patients. However, there is a paucity of data on toxicity, mutagenicity and trace metal constituent of TSK.
We sought to investigate the acute and sub-chronic toxicities, mutagenic potential, and trace metal constituents of TSK.
To assess acute toxicity, single doses (1000, 3000 and 5000mg/kg) of aqueous extract of TSK were administrated per os to Sprague Dawley (SD) rats on Day 1. The rats were then monitored for 13 consecutive days. Sub-chronic toxicity was evaluated by daily administration of 200 and 500mg/kg of the extract per os for 90 consecutive days. SD rats used as control received distilled water. Signs of toxicity, changes in body weight and mortality were monitored. After the aforementioned monitoring processes, rats were sacrificed and blood collected for full blood count and biochemistry analysis. Animal organs were also collected for histopathological exaements (i.e., uranium) in TSK samples analysed. TSK showed some level of mutagenic potential. Further mutagenic and chronic toxicity studies on TSK are required.
Ammi majus L. (Aatrilal) a member of the family Apiaceae, is native to Egypt and widely distributed in Europe, the Mediterranean, and West Asia. It has been used for the treatment of various dermatological disorders particularly vitiligo in the Unani system of Medicine for ages. In traditional medicine, fruits are used as an emmenagogue as well as a diuretic, blood purifier and to treat leprosy, urinary and digestive disorders.
This paper aims to highlight the medicinal properties of Aatrilal in view of its temperament and phytoconstituents; to signify its potential in the treatment of vitiligo and other ailments as mentioned in Unani system of medicine and also to explore its phytochemistry, pharmacological and clinical studies.
Aatrilal was explored in classical Unani literature for its temperament (mizaj), medicinal properties and therapeutic uses. Published works available on PubMed, Science Direct, and Google Scholar were referred to collect all the available information regarding its phytochemicaleen effectively used in Unani system of medicine for centuries to treat the cases of vitiligo and other dermatological disorders. It has been studied extensively for its phytopharmacological properties. Raw extracts of A. majus form the crux of the main research. Many potentially bioactive compounds are included in the essential oil, but to our knowledge, no detailed studies of its biological activity are yet available. Therefore, our suggestion is to focus future research on essential oil and its ingredients.The design of smart drug delivery carriers has recently attracted great attention in the biomedical field. Smart carriers can specifically respond to physical and chemical changes in their environment, such as temperature, photoirradiation, ultrasound, magnetic field, pH, redox species, and biomolecules. This review summarizes recent advances in the integration of porous particles and stimuli-responsive gatekeepers for effective drug delivery. Their unique structural properties play an important role in facilitating the diffusion of drug molecules and cell attachment. Various techniques for fabricating porous materials, with their major advantages and limitations, are summarized. Smart gatekeepers provide advanced functions such as "open-close" switching by functionalized stimuli-responsive polymers on a particle's pores. These controlled delivery systems enable drugs to be targeted at specific rates, time programs, and sites of the human body. The gate structures, gating mechanisms, and controlled release mechanisms of each trigger are detailed. Current ongoing research and future trends in targeted drug delivery, tissue engineering, and regenerative medicine applications are highlighted.This study aimed to improve the dissolution of the poorly soluble drug lopinavir (LPV) by preparing amorphous solid dispersions (ASDs) using solvent evaporation method. The ASD formulations were prepared with ternary mixtures of LPV, Eudragit® E100, and microcrystalline cellulose (MCC) at various weight ratios. The ASDs were subjected to solid-state characterization and in vitro drug dissolution testing. Chemometric models based on near infrared spectroscopy (NIR) and NIR-hyperspectroscopy (NIR-H) data were developed using the partial least squares (PLS) regression and externally validated to estimate the percent of the crystalline LPV in the ASD. Initially, the solid-state characterization data of ASDs showed transformation of the drug from crystalline to amorphous. Negligible fraction of crystalline LPV was present in the ASD (3%). Pifithrin-α p53 inhibitor Compared to pure LPV, ASDs showed faster and higher drug dissolution ( less then 2% vs. 60.3-73.5%) in the first 15 min of testing. The ASD was stable against crystallization during stability testing at 40 °C/75% for a month. In conclusion, the prepared ASD was stable against devitrification and enhance the dissolution of LPV.
Without confirmation of the ventilation design conditions (typology and airflow rate), the common practice of identifying unidirectional airflow (UDAF) systems as equivalent to ultra-clean air ventilation systems may be misleading, but also any claims about the ineffectiveness of UDAF systems should be doubted. The aim of this review was to assess and compare ventilation system design conditions for which ultra-clean air (mean <10 cfu/m
) within 50 cm from the wound has been reported. Six medical databases were systematically searched to identify and select studies reporting intraoperative airborne levels expressed as cfu/m
close to the wound site, and ventilation system design conditions. Available data on confounding factors such as the number of persons present in the operating room, number of door openings, and clothing material were also included. Predictors for achieving mean airborne bacteria levels within <10 cfu/m
were identified using a penalized multivariate logistic regression model. Twelve studies met the eligibility criteria and were included for analysis.
Website: https://www.selleckchem.com/products/pifithrin-alpha.html
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