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2,146
result(s) for
"Saleh, R."
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High adsorption capacity of phenol and methylene blue using activated carbon derived from lignocellulosic agriculture wastes
2022
The resources of clean water worldwide are very limited, and climate change is already affecting the available supplies. Therefore, developing a low-cost, highly efficient, and recyclable adsorbent to upgrade water quality has become an essential task. Herein, we report the fabrication of activated carbon (AC) adsorbents derived from lignocellulosic wastes. Both physical and chemical activation were investigated to modify the surface texture properties. The results indicated that increasing the activation temperature, whether physically or chemically, increases the specific surface area (S
BET
). On the contrary, increasing the amount of the chemical activating agent significantly decreases the S
BET
values. The S
BET
of 1771, 2120, and 2490 m
2
g
−1
were obtained for water vapor, K
2
CO
3
and KOH, at activation temperatures of 950 °C, 800 °C, and 800 °C, respectively. Methylene blue (MB) and phenol were used as adsorbates for the adsorption experiment. Adsorption of methylene blue dye revealed the ability of the water activated carbon to remove more than 95% of the dye (100 ppm) within 5 min with an adsorption capacity of 148.8 mg g
−1
. For phenol adsorption, Several parameters were investigated, including initial concentration (50–250 ppm), pH (2–10), contact time (5–60 min), and temperature (25–45 °C). The highest adsorption capacity of phenol achieved was 158.9 mg g
−1
. The kinetics of adsorption of phenol was better described by pseudo-second-order reaction while the isotherm process using Langmuir model. This study presents a roadmap for conversion of lignocellulosic biomass waste into highly efficient porous carbon adsorbents.
Journal Article
Absorptivity of brown carbon in fresh and photo-chemically aged biomass-burning emissions
2013
Experiments were conducted to investigate light absorption of organic aerosol (OA) in fresh and photo-chemically aged biomass-burning emissions. The experiments considered residential hardwood fuel (oak) and fuels commonly consumed in wild-land and prescribed fires in the United States (pocosin pine and gallberry). Photo-chemical aging was performed in an environmental chamber. We constrained the effective light-absorption properties of the OA using conservative limiting assumptions, and found that both primary organic aerosol (POA) in the fresh emissions and secondary organic aerosol (SOA) produced by photo-chemical aging contain brown carbon, and absorb light to a significant extent. This work presents the first direct evidence that SOA produced in aged biomass-burning emissions is absorptive. For the investigated fuels, SOA is less absorptive than POA in the long visible, but exhibits stronger wavelength-dependence and is more absorptive in the short visible and near-UV. Light absorption by SOA in biomass-burning emissions might be an important contributor to the global radiative forcing budget.
Journal Article
Toxicity and Repellency Efficacy of Benzyl Alcohol and Benzyl Benzoate as Eco-Friendly Choices to Control the Red Flour Beetle Tribolium castaneum (Herbst. 1797)
by
Al-Quraishy, Saleh
,
Abdel-Baki, Abdel-Azeem S.
,
Ibrahium, Samar M.
in
acetylcholinesterase
,
Acetylcholinesterase - pharmacology
,
Alcohol
2023
Tribolium castaneum is a damaging pest of stored grains, causing significant losses and secreting lethal quinones, which render the grains unfit for human consumption. Chemical insecticides are the most commonly used approach for control; however, they create insecticide resistance and affect the health of humans, animals, and the environment. As a result, it is critical to find an environmentally friendly pest-management strategy. In this study, two naturally occurring chemicals, benzyl alcohol (BA) and benzoyl benzoate (BB), were investigated for insecticidal activity against T. castaneum using different assays (impregnated-paper, contact toxicity, fumigant, and repellency assays). The results showed that BA had a significant insecticidal effect, with the LC50 achieved at a lower concentration in the direct-contact toxicity test (1.77%) than in the impregnated-paper assay (2.63%). BB showed significant effects in the direct-contact toxicity test, with an LC50 of 3.114%, and a lower toxicity in the impregnated-paper assay, with an LC50 of 11.75%. Furthermore, BA exhibited significant fumigant toxicity against T. castaneum, with an LC50 of 6.72 µL/L, whereas BB exhibited modest fumigant toxicity, with an LC50 of 464 µL/L. Additionally, at different concentrations (0.18, 0.09, 0.045, and 0.0225 µL/cm2), BA and BB both showed a notable and potent repelling effect. BA and BB significantly inhibited acetylcholinesterase, reduced glutathione (GSH), and increased malondialdehyde (MDA) in treated T. castaneum. This is the first report of BA insecticidal activity against the red flour beetle. Also, the outcomes of various assays demonstrated that the application of BA induces a potent bio-insecticidal effect. BA may be a promising eco-friendly alternative to control T. castaneum due to its safety and authorization by the EFSA (European Food Safety Authority).
Journal Article
Biochemical Evidence of Acute Hormonal Abnormality in Aneurysmal Subarachnoid Hemorrhage: Correlation with Clinical Severity
by
Tulemat, Aoun
,
Radoi, Mugurel Petrinel
,
Ahmed, Hilali
in
Adrenocorticotropic Hormone - blood
,
Adult
,
Aged
2026
Aneurysmal subarachnoid hemorrhage (aSAH) is a life-threatening condition with high morbidity among survivors. Emerging evidence suggests that acute biochemical hypothalamic–pituitary axis disturbances, resulting from disruption of neuroendocrine regulation, are an underrecognized complication in the acute phase of aSAH. However, its correlation with clinical severity remains insufficiently explored. To investigate whether clinical severity of aSAH predicts acute biochemical pituitary-axis abnormalities and identify which hormonal axes are most affected in the acute phase. A prospective observational study was conducted at The National Institute of Neurology and Neurovascular Diseases, Bucharest (October 2024–March 2025) on 38 patients confirmed aSAH admitted within 48 h of symptom onset, of which 20 patients were included. Hormonal panels assessing adrenocorticotropic hormone (ACTH), growth hormone (GH), thyroid-stimulating hormone (TSH), and antidiuretic hormone (ADH) were obtained prior to surgical intervention. Clinical severity was evaluated using the Glasgow Coma Scale (GCS), the Hunt and Hess (HH) scale, and the Modified Fisher Scale. Correlations between hormonal deficiencies and severity scores were analyzed using the Spearman correlation. Biochemical abnormality of the ACTH axis was most prevalent (75%), followed by ADH (50%) and TSH (40%), while GH deficiency was rare (5%). ACTH-axis biochemical abnormality correlated significantly with lower GCS (ρ = −0.61, p = 0.004) and higher HH scores (ρ = 0.59, p = 0.006). Multiple-axis abnormalities demonstrated the strongest correlations with all severity metrics (GCS: ρ = −0.68, p = 0.001; HH: ρ = 0.72, p < 0.001; Fisher: ρ = 0.57, p = 0.009). Greater clinical severity in aSAH is associated with a higher prevalence of acute biochemical endocrine abnormalities, particularly involving the ACTH axis and multiple hormonal pathways. These findings are exploratory and hypothesis-generating. Early hormonal assessment in patients with severe aSAH may help identify individuals at risk for acute endocrine abnormality, but validation in larger prospective studies is required before influencing clinical practice.
Journal Article
Preparation, physicochemical characterization, and bioactivity evaluation of berberine-entrapped albumin nanoparticles
2022
Berberine (BBR) is an isoquinoline alkaloid with several clinical therapeutic applications. Its low water solubility, absorption, and cellular bioavailability diminish BBR's therapeutic efficacy. In this study, BBR was encapsulated into bovine serum albumin nanoparticles (BSA NPs) core to reduce BBR limitations and enhance its clinical therapeutic properties. Several physicochemical characterization tools, such as Dynamic Light Scattering and Ultraviolet–Visible spectroscopic measurements, field emission transmission electron microscopy surface morphology, Fourier transforms infrared spectroscopy, thermal stability analysis, and releasing studies, were used to evaluate the BBR-BSA NPs. Compared to BBR, BBR-BSA nanoparticles demonstrated superior free radical scavenging and antioxidant capacities, anti-hemolytic and anticoagulant efficacies, and antimicrobial activities, as demonstrated by the findings of the in vitro studies. Furthermore, a stressed pancreatic rat model was induced using a high-fat, high-sucrose diet plus carbon tetrachloride injection. The in vivo results revealed that BBR-BSA NPs substantially restored peripheral glucose metabolism and insulin sensitivity. Oral administration of BBR-BSA NPs also improved pancreatic β-cells homeostasis, upregulated pancreatic antioxidant mechanisms, inhibited oxidants generation, and attenuated oxidative injury in the stressed pancreatic tissues. In conclusion, our in vitro and in vivo results confirmed that BBR-BSA NPs demonstrated more potent antioxidant properties and restored pancreatic homeostasis compared to BBR.
Journal Article
Neuroprotective effect of ipriflavone against scopolamine-induced memory impairment in rats
by
El Demellawy, Maha A.
,
Abady, Mariam M.
,
Hafez, Hani S.
in
Acetylcholinesterase
,
Alzheimer's disease
,
Animal cognition
2017
Alzheimer's disease is an age-related neurodegenerative disorder characterized clinically by a progressive loss of memory and cognitive functions resulting in severe dementia. Ipriflavone (IPRI) is a non-hormonal, semi-synthetic isoflavone, clinically used in some countries for the treatment and prevention of postmenopausal osteoporosis. Moreover, ipriflavone is a non-peptidomimetic small molecule AChE inhibitor with an improved bioavailability after systemic administration, due to its efficient blood-brain barrier permeability in comparison with peptidomimetic inhibitors.
The present study aimed to evaluate the possible enhancing effects of IPRI on memory impairments caused by scopolamine administration.
Male rats were administered IPRI (50 mg/kg, oral) 2 h before scopolamine injection (2 mg/kg, intraperitoneally injected) daily for 4 weeks. Effects of IPRI on acetylcholinesterase activity, amyloid-β precursor processing, and neuroplasticity in the rats' hippocampus were investigated.
Daily administration of IPRI reverted memory impairment caused by scopolamine as measured by the reduction of the escape latency. IPRI significantly alleviated the oxidative stress and restored the mRNA expression of both cAMP-response element-binding protein and brain-derived neurotrophic factor in the hippocampus. Furthermore, it significantly increased the expression of ADAM10 and ADAM17 (two putative α-secretase enzymes) and phosphorylated extracellular signal-regulated kinase 1/2 (pERK1/2) that associated with decreased expression of β-secretase (BACE) in the hippocampus. Finally, both the amyloid-β (Aβ) and Tau pathologies were reduced.
IPRI showed promising neuroprotective effects against scopolamine-induced memory dysfunction in rats. These findings contributed to the stimulation of α-secretase enzymes, the activation of MAPK/ERK1/2, and the alleviation of oxidative stress.
Journal Article
Diagnostic performance of artificial intelligence in detection of renal cell carcinoma: a systematic review and meta-analysis
by
Shojaei, Shayan
,
Mirakhori, Sina
,
Harandi, Hamid
in
Accuracy
,
Algorithms
,
Artificial Intelligence
2025
Objectives
The detection of renal cell carcinoma (RCC) tumors in the earlier stages is of great importance for more effective treatment. Encouraged by the key role of imaging in the management of RCC, we conducted a systematic review and meta-analysis of the studies that made use of artificial intelligence (AI) for the detection of RCC to quantitatively determine the performance of AI for distinguishing related renal lesions.
Materials and methods
PubMed, Scopus, CENTRAL, and Embase electronic databases were systematically searched in November 2024 to identify studies that applied AI for the detection or classification of RCC. We conducted a meta-analysis to evaluate the diagnostic performance of utilized algorithms. Moreover, meta-regression was conducted over suspected covariates to evaluate potential sources of inter-study heterogeneity. Publication bias and quality assessment were also done for the included studies.
Results
Sixty-four studies were included in this systematic review, of which 31 studies were selected for meta-analysis. The studies assessing algorithms’ performance on internal validation showed pooled sensitivity and specificity of 85% (95% confidence interval [CI], 82 to 87) and 76% (95% CI, 70 to 80), respectively. Moreover, externally validated Al algorithms had a pooled sensitivity and specificity of 80% (95% CI, 73 to 84) and 90% (95% CI, 84 to 93), respectively. Studies that performed internal validation for clinician performance had a pooled sensitivity of 79% (95% CI, 72 to 85) and specificity of 60% (95% CI, 49 to 70).
Conclusion
The findings of the present study validate the acceptable performance of AI algorithms when contrasted with medical professionals in the identification and categorization of RCC. Nevertheless, the presence of heterogeneity between studies and the absence of coherence in the results underscore the necessity for the cautious interpretation of these results and additional prospective studies.
Journal Article
Lie symmetry analysis and invariant solutions of 3D Euler equations for axisymmetric, incompressible, and inviscid flow in the cylindrical coordinates
by
Agarwal Praveen
,
Sadat, R
,
Saleh, R
in
Cartesian coordinates
,
Cylindrical coordinates
,
Euler-Lagrange equation
2021
Through the Lie symmetry analysis method, the axisymmetric, incompressible, and inviscid fluid is studied. The governing equations that describe the flow are the Euler equations. Under intensive observation, these equations do not have a certain solution localized in all directions (r,t,z) due to the presence of the term 1r, which leads to the singularity cases. The researchers avoid this problem by truncating this term or solving the equations in the Cartesian plane. However, the Euler equations have an infinite number of Lie infinitesimals; we utilize the commutative product between these Lie vectors. The specialization process procures a nonlinear system of ODEs. Manual calculations have been done to solve this system. The investigated Lie vectors have been used to generate new solutions for the Euler equations. Some solutions are selected and plotted as two-dimensional plots.
Journal Article
Awareness and perception of physicians about forgery and counterfeiting in the medical field in Egypt
2025
Medical records may act as one of the legal pieces of evidence in the court. A complete and correct medical record contains a chronological health history of the patient, and it is one of the keys to resolving cases of alleged malpractice. The aim is to emphasize the importance of strict rules and training to ensure medical documents are handled properly and the prevalence of signature forgery in medical reports. This cross-sectional descriptive study was conducted with a sample of 300 randomly selected physicians from hospitals in Fayoum, Egypt, between 2024 and 2025. According to the opinions of 133 physicians (44.3%), forgery and counterfeiting are relatively common in the medical sector; 81 physicians (27%) believed it is common, and 9 physicians (3%) considered it very common, especially in medical reports. 186 (75.6%) were forged medical reports. 185 (61.7%) blamed it on inadequate supervision, while 162 (54%) said it was done to get money. This is followed by 160 doctors (53.3%) who cite respect for the senior and following his instructions if asked to signature in place. Importantly, the overwhelming support for enhanced oversight and education indicates a collective recognition of the necessity for systemic changes to combat forgery in the medical field.
Journal Article
Magnitude of effect and sample size justification in trials supporting anti-cancer drug approval by the US Food and Drug Administration
by
Nadler, Michelle B.
,
Saleh, Ramy R.
,
Desnoyers, Alexandra
in
631/114/2415
,
631/67
,
692/4028/67
2024
Approval of drugs is based on randomized trials observing statistically significant superiority of an experimental agent over a standard. Statistical significance results from a combination of effect size and sampling, with larger effect size more likely to translate to population effectiveness. We assess sample size justification in trials supporting cancer drug approvals. We identified US FDA anti-cancer drug approvals for solid tumors from 2015 to 2019. We extracted data on study characteristics, statistical plan, accrual, and outcomes. Observed power (
P
obs
) was calculated based on completed study characteristics and observed hazard ratio (HR
obs
). Studies were considered over-sampled if
P
obs
> expected with HR
obs
similar or worse than expected or if
P
obs
was similar to expected with HR
obs
worse than expected. We explored associations with over-sampling using logistic regression. Of 75 drug approvals (reporting 94 endpoints), 21% (20/94) were over-sampled. Over-sampling was associated with immunotherapy (OR: 5.5;
p
= 0.04) and associated quantitatively but not statistically with targeted therapy (OR: 3.0), open-label trials (OR: 2.5), and melanoma (OR: 4.6) and lung cancer (OR: 2.17) relative to breast cancer. Most cancer drug approvals are supported by trials with justified sample sizes. Approximately 1 in 5 endpoints are over-sampled; benefit observed may not translate to clinically meaningful real-world outcomes.
Journal Article