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Under the patronage of
Prof. Dr. Ahmed Al-Manshawy, President of Assiut University,
and Prof. Dr. Jihan Nabil Fetih, Dean of the Faculty of Pharmacy,
The Faculty of Pharmacy received the delegation of AJA – Egypt on Monday, January 12, 2026, to conduct the annual surveillance audit for the renewal of the ISO 9001:2015 certification related to the Quality Management System. The visit also included the evaluation of the Faculty’s compliance with the requirements of the ISO 21001:2018 international standard for Educational Organizations Management Systems, for which the Faculty applied for the first time. This standard represents an effective tool enabling educational institutions to demonstrate their commitment to effective educational management practices.
This comes within the framework of the Faculty’s efforts to achieve the Fourth Sustainable Development Goal, which the Faculty adopts to ensure inclusive, equitable, and quality education, and to promote lifelong learning opportunities for all.
The visit included an opening meeting with the audit team, attended by:
Following this, the audit team conducted inspection visits to the Faculty’s various departments, administrative units, facilities, and buildings. Meetings were also held with different stakeholders to review documents and examine the applied procedures.
The visit concluded with a closing meeting during which feedback was presented. The audit team recommended the continuation of the ISO 9001:2015 certification and the granting of the ISO 21001:2018 certification to the Faculty of Pharmacy for the first time.


The widespread use of monensin (MON) as an ionophore antibiotic in poultry production has raised significant concerns regarding residue accumulation in edible tissues, particularly given its potent cardiotoxic effects and narrow safety margins in Humans. Current analytical methods for MON detection primarily rely on expensive instrumentation, limiting accessibility for routine monitoring in resource-constrained regions with expanding poultry production. This study addresses the critical need for a cost-effective, field-deployable analytical platform by developing the first Dual-emission ratiometric fluorometric sensor specifically designed for MON residue detection in poultry tissues. The innovative sensing mechanism exploits the differential fluorescence responses of Rhodamine 6G (R6G) and red-emitting carbon dots (RCDs) upon MON interaction, where selective quenching of RCD emission (608 nm) occurs simultaneously with R6G signal enhancement (550 nm) under 525 nm excitation. This Dual-response system provides unprecedented analytical robustness through built-in internal calibration, eliminating matrix interference effects that plague conventional single-wavelength methods. The sensor demonstrated exceptional performance with linear detection ranges of 0.1–8.0 ng/mL in standard solutions and 5.0–400.0 ng/g in tissue matrices, achieving recovery efficiencies of 95.9–98.0% in muscle and 96.2–96.8% in liver samples. This platform uniquely enables real-time monitoring of MON elimination kinetics, facilitating evidence-based withdrawal period determination for specific production conditions. The methodology offers developing nations and small-scale producers an accessible compliance tool without requiring sophisticated instrumentation. Future applications include multiplex ionophore detection and portable device integration for on-site screening, potentially revolutionizing antibiotic monitoring in global food supply chains.
Travoprost (TRV) is an efficient prostaglandin (PG) analogue, which is hydrolyzed by corneal esterases to its
active acid form (TRV acid) after absorption. Till now no spectrofluorimetric methods have been reported for
detection of TRV acid in biological fluids. Due to high sensitivity, simplicity and rapidity; a novel and ultrasensitive
spectrofluorometric method with an efficient solid phase extraction (SPE) technique was developed
for determination of TRV acid in aqueous humor (AH). The study relies on the fluorescence enhancement of
nitrogen-doped carbon dots (N-CDs), which were prepared via a hydrothermal treatment of triphenylamine and
citric acid. The formed nanoprobe responds with very high sensitivity to trace amounts of TRV acid through
hydrogen bonding formation, which is accompanied by an enhancement in fluorescence intensity due to N-CDs
aggregation. The proposed method showed excellent sensitivity for analyzing TRV acid in the range of 1–200 ng/
mL, with a very low limit of detection (0.29 ng/mL). Additionally, the method’s selectivity for analyzing TRV
acid in the presence of common ions and anticipated co-administered drugs was assessed. The structural and
chemical properties of the prepared N-CDs were extensively characterized using X-ray diffraction (XRD), Fourier
transform infrared (FT-IR) spectroscopy, Transmission electron microscopy (TEM), High resolution transmission
God willing, the Faculty of Pharmacy council will hold its monthly meeting on Tuesday, January 13, 2026 at 10:00 (AM)
in the Hall of Faculty Council, 5th floor, administrative building
God willing, the Executive Committee meeting on Tuesday, January 13, 2026 at 9:30 AM. The meeting will take place in the Faculty Council Hall, 5th Floor (Administrative Building)
God willing, the meeting of the Libraries Committee at the Faculty of Pharmacy Pharmacy Pharmacy on Tuesday, January 13, 2026 at 11:00 AM at the invitation of Professor Mrs. Professor Dr. Gihan Nabil Hassan Fetih