keyword
https://read.qxmd.com/read/37173539/darifenacin-self-assembled-liquid-crystal-cubic-nanoparticles-a-sustained-release-approach-for-an-overnight-control-of-overactive-bladder
#1
JOURNAL ARTICLE
Michael M Farag, Wessam El-Sebaie, Emad B Basalious, Omaima N El-Gazayerly
The current study is regarding the development and characterization of Darifenacin-loaded self-assembled liquid crystal cubic nanoparticles (LCCN). An anhydrous approach was used for the preparation of these cubic nanoparticles using a hydrotropic agent (propylene glycol), with minimal energy input. Upon dispersion in aqueous medium, the system was successfully transformed to cubosomal nanoparticles counterpart as depicted by transmission electron micrographs. A Box-Behnken design was used to optimize formulation variables, namely A: amount of GMO, B: amount of Pluronic F127, C: amount of PG, and D: amount of HPMC...
May 12, 2023: AAPS PharmSciTech
https://read.qxmd.com/read/36934884/effective-loading-of-incompatible-drugs-into-nanosized-vesicles-a-strategy-to-allow-concurrent-administration-of-furosemide-and-midazolam-in-simulated-clinical-settings
#2
JOURNAL ARTICLE
Heba A Fathi, Carol Yousry, Mahmoud Elsabahy, Mahmoud El-Badry, Omaima N El Gazayerly
The current study aims to assess the use of nanocarriers to limit drug incompatibilities in clinical settings, and thus eliminating serious clinical consequences (e.g., catheter obstruction and embolism), and enhancing in vivo bioavailability and efficacy. As a proof-of-concept, the impact of loading well-documented physically incompatible drugs (i.e., furosemide and midazolam) into nanosized vesicles on in vitro stability and in vivo bioavailability of the two drugs was investigated. Furosemide and midazolam were loaded into nanosized spherical vesicles at high entrapment efficiency (ca...
April 5, 2023: International Journal of Pharmaceutics
https://read.qxmd.com/read/36513316/novel-mucoadhesive-celecoxib-loaded-cubosomal-sponges-anticancer-potential-and-regulation-of-myeloid-derived-suppressor-cells-in-oral-squamous-cell-carcinoma
#3
JOURNAL ARTICLE
Aya A Mabrouk, Nesrine S El-Mezayen, Mina I Tadros, Omaima N El-Gazayerly, Wessam M El-Refaie
Oral squamous-cell carcinoma (OSCC) is a widespread health problem. Myeloid-derived suppressor cells (MDSCs) are major tumor microenvironment (TME) population that govern many carcinogenesis aspects by establishing immunosuppressive milieu favoring tumor aggressiveness and treatment resistance. Cyclooxygenase-2 (COX-2) regulates MDSCs activity, hence, COX-2-selective inhibition by celecoxib (CXB) showed good anticancer effect at relatively high doses with possible subsequent cardiovascular complications. Therefore, targeted CXB delivery to MDSCs may represent a promising OSCC treatment strategy...
December 10, 2022: European Journal of Pharmaceutics and Biopharmaceutics
https://read.qxmd.com/read/33501862/the-potential-of-intranasal-delivery-of-nanocrystals-in-powder-form-on-the-improvement-of-zaleplon-performance-in-vitro-in-vivo-assessment
#4
JOURNAL ARTICLE
Randa Latif, Rana R Makar, Ehab A Hosni, Omaima N El Gazayerly
OBJECTIVE: The present work focuses on improving zaleplon (ZAP) performance through nanosizing its insoluble particles which were then delivered intranasally in powder form. SIGNIFICANCE: Since nanopowders have an exceptional ability to cross cell membrane, their absorption is facilitated in the solid form. Hence, delivering insoluble ZAP nanocrystals (NC) through intranasal route improves its bioavailability due to both nanosization and the escape of hepatic metabolism...
February 2021: Drug Development and Industrial Pharmacy
https://read.qxmd.com/read/33224227/a-new-crystal-engineering-technique-for-dissolution-enhancement-of-poorly-soluble-drugs-combining-quasi-emulsion-and-crystallo-co-agglomeration-methods
#5
JOURNAL ARTICLE
Rana R Makar, Randa Latif, Ehab A Hosni, Omaima N El Gazayerly
A target of best dissolution improvement of poorly soluble drugs is a necessity for the success of formulation in industry. The present work describes the preparation, optimization, and evaluation of a new spherical agglomeration technique for glimepiride as a model of poorly soluble drugs. It involved the emulsification of a drug solution containing a dispersed carrier that tailors the crystal habit of the drug to a perfect spherical geometry, in a poor solvent containing a hydrophilic polymer which imparts sphericity and strength to the formed agglomerates...
2020: Iranian Journal of Pharmaceutical Research: IJPR
https://read.qxmd.com/read/32320670/coated-lipidic-nanoparticles-as-a-new-strategy-for-enhancing-nose-to-brain-delivery-of-a-hydrophilic-drug-molecule
#6
JOURNAL ARTICLE
Lamis H Salem, Gina S El-Feky, Rania H Fahmy, Omaima N El Gazayerly, Ahmed Abdelbary
Oral Almotriptan maleate (ALM) is used in the treatment of migraine; however, due to its extreme aqueous solubility, shows poor penetration and lesser concentration in the brain thus requiring frequent oral dosing. Being flexible and lipophilic in nature, nanostructured lipid carriers (NLCs) represent a promising tool in delivering therapeutic substances to the brain. This investigation is meant to explore the capability of mucoadhesive chitosan-coated NLCs to efficiently deliver ALM to the brain through the nasal route as a non-invasive alternative route for targeting the central nervous system (CNS)...
July 2020: Journal of Pharmaceutical Sciences
https://read.qxmd.com/read/31989414/integrated-nanovesicular-self-nanoemulsifying-system-inv-snes-for-enhanced-dual-ocular-drug-delivery-statistical-optimization-in-vitro-and-in-vivo-evaluation
#7
JOURNAL ARTICLE
Carol Yousry, Pakinam M Zikry, Heba M Salem, Emad B Basalious, Omaima N El-Gazayerly
Ocular drug administration is usually problematic and suffers low bioavailability due to several physiological and biological factors that hinder their effective treatment. Terconazole (TZ) is considered as one of the effective ocular antifungal agents that is usually administrated intravitreally for higher efficacy. The aim of the work in this study is to formulate a TZ-loaded ocular drug delivery system with high efficiency and good tolerability. First, TZ-loaded bile-based nanovesicles (BBNV) were prepared and the formulation variables (namely, Span 60, cholesterol, and sodium deoxycholate levels) were optimized based on the results of the entrapment efficiency (EE%), particle size (PS), and zeta potential (ZP) using Box-Behnken statistical design...
June 2020: Drug Delivery and Translational Research
https://read.qxmd.com/read/31870958/colon-targeting-of-celecoxib-nanomixed-micelles-using-pulsatile-drug-delivery-systems-for-the-prevention-of-inflammatory-bowel-disease
#8
JOURNAL ARTICLE
Shaymaa M El-Hady, Mohamed H H AbouGhaly, Manal M El-Ashmoony, Hebatullah S Helmy, Omaima N El-Gazayerly
Inflammatory bowel disease (IBD) is a debilitating condition characterized by chronic inflammation of the colon which can increase the risk of colon cancer. Celecoxib (CXB), a cyclooxygenase-2 inhibitor, showed potential for the prophylaxis against IBD. However, it suffers from poor aqueous solubility and cardiovascular toxicity on prolonged use. Here, CXB solubility was enhanced using nanomixed micelles (NMMs) and then colon targeted in a pulsatile system to minimize systemic side effects. Pluronic P123 NMMs with bile salts or hydrophilic Pluronics were prepared using the thin film hydration technique...
February 25, 2020: International Journal of Pharmaceutics
https://read.qxmd.com/read/31823090/chronological-delivery-of-antihypertensive-drugs-in-bilayered-core-in-cup-buccoadhesive-tablets-in-vitro-and-in-vivo-evaluation
#9
JOURNAL ARTICLE
Amira A Rashad, Sara Nageeb El-Helaly, Randa T Abd El Rehim, Omaima N El-Gazayerly
Hypertension shows circadian blood pressure rhythms (day-night pattern) that urge the delivery of antihypertensive drugs at the right time in the desired levels. Thus, a bilayered core-in-cup buccoadhesive tablet was formulated that immediately releases olmesartan, to give a burst effect, and controls azelnidipine release, to prolong its therapeutic effect. The main challenge was the poor bioavailability of azelnidipine due to its poor aqueous solubility and first-pass effect. Hence, liquisolid compact buccoadhesive tablets were prepared to enhance solubility, dissolution profiles, and bypass the oral route...
December 10, 2019: AAPS PharmSciTech
https://read.qxmd.com/read/31259736/core-in-cup-liquisol-dual-tackling-effect-on-azelnidipine-buccoadhesive-tablet-micromeritics-in-vitro-release-and-mucoadhesive-strength
#10
JOURNAL ARTICLE
Amira A Rashad, Sara Nageeb El-Helaly, Randa T Abd El Rehim, Omaima N El-Gazayerly
Reduced bioavailability of azelnidipine is related to its poor aqueous solubility and extensive first-pass metabolism, which hinder its efficacy. These problems were addressed by implementing (1) a liquisol technique for promoting the dissolution rate in a controlled-release manner and (2) a core-in-cup bucco-adhesive drug delivery system as an alternative to the oral route. A 33 factorial design was used to study the effects of polymer type (sodium carboxymethyl cellulose (CMC Na), chitosan, or Carbomer P940) concentration (5, 10 or 15 %) and preparation technique (simple mix, liquisol or wet granulation) on the dissolution and mucoadhesion of core-in-cup azelnidipine buccoadhesive tablets...
September 1, 2019: Acta Pharmaceutica
https://read.qxmd.com/read/31159447/superhydrophobic-substrates-for-ultrahigh-encapsulation-of-hydrophilic-drug-into-controlled-release-polyelectrolyte-complex-beads-statistical-optimization-and-in-vivo-evaluation
#11
JOURNAL ARTICLE
Carol Yousry, Iman S Ahmed, Maha M Amin, Omaima N El Gazayerly
: In this work, ultrahigh drug-loaded chitosan (Ch)/K-carrageenan (Kc) polyelectrolyte complex (PEC) beads were formed in situ by cross-linking in a glutaraldehyde-saturated atmosphere and were prepared on superhydrophobic substrates fabricated by spraying glass surfaces with ready-made spray for domestic use (NeverWet® ). Verapamil hydrochloride (VP), a highly hydrophilic drug with a short biological half-life, was incorporated into a series of Ch-based and/or Ch/Kc-PEC-based beads to control its release profile in vivo...
June 1, 2019: Pharmaceutics
https://read.qxmd.com/read/29902922/ultrahigh-verapamil-loaded-controlled-release-polymeric-beads-using-superamphiphobic-substrate-d-optimal-statistical-design-in-vitro-and-in-vivo-performance
#12
JOURNAL ARTICLE
Carol Yousry, Maha M Amin, Ahmed H Elshafeey, Omaima N El Gazayerly
Controlled-release multiparticulate systems of hydrophilic drugs usually suffer from poor encapsulation and rapid-release rate. In the present study, ultra-high loaded controlled release polymeric beads containing verapamil hydrochloride (VP) as hydrophilic model drug were efficiently prepared using superamphiphobic substrates aiming to improve patient compliance by reducing dosing frequency. Superamphiphobic substrates were fabricated using clean aluminum sheets etched with ammonia solution and were treated with 1...
November 2018: Drug Delivery
https://read.qxmd.com/read/29792353/gastroretentive-raft-liquid-delivery-system-as-a-new-approach-to-release-extension-for-carrier-mediated-drug
#13
JOURNAL ARTICLE
Samar M Abouelatta, Ahmed A Aboelwafa, Omaima N El-Gazayerly
Gabapentin (GBP), an antiepileptic and anti-neuropathic agent, suffers from short half-life (5-7 h), has narrow absorption window, and is absorbed via carrier-mediated mechanism resulting in frequent dosing, poor compliance, and poor bioavailability (<60%). Moreover, GBP is a freely water-soluble drug, thus it is considered a challenging candidate to be formulated as extended release dosage form. In this study, raft forming systems were investigated as a potential drug delivery system for prolonging gastric residence time of GBP...
November 2018: Drug Delivery
https://read.qxmd.com/read/29429370/facile-development-characterization-and-optimization-of-new-metformin-loaded-nanocarrier-system-for-efficient-colon-cancer-adjunct-therapy
#14
JOURNAL ARTICLE
Kholoud Arafa, Rehab N Shamma, Omaima N El-Gazayerly, Ibrahim M El-Sherbiny
PURPOSE: Metformin hydrochloride (MF) repurposing as adjuvant anticancer therapy for colorectal cancer (CRC) proved effective. Several studies attempted to develop MF-loaded nanoparticles (NPs), however the entrapment efficiency (EE%) was poor. Thus, the present study aimed at the facile development of a new series of chitosan (CS)-based semi-interpenetrating network (semi-IPN) NPs incorporating Pluronic® nanomicelles as nanocarriers for enhanced entrapment and sustained release of MF for efficient treatment of CRC...
July 2018: Drug Development and Industrial Pharmacy
https://read.qxmd.com/read/29382233/an-in-vivo-study-of-hypericum-perforatum-in-a-niosomal-topical-drug-delivery-system
#15
JOURNAL ARTICLE
Mohamed Ali, Amira Abdel Motaal, Mohammed A Ahmed, Abdulrhman Alsayari, Omaima N El-Gazayerly
The active compounds present in Hypericum perforatum L. (Hypericaceae) include hyperforin, hypericins and flavonoids, which are assumed to be responsible for the activity of the extract in the treatment of wounds and scars. The present study aimed to incorporate H. perforatum extract standardized to a known content of phloroglucinols, naphthodianthrones and polyphenolic compounds into an effective transdermal drug delivery system capable of entrapping both lipophilic and hydrophilic constituents in the form of niosomal gels for wound treatment...
November 2018: Drug Delivery
https://read.qxmd.com/read/28821026/ultrahigh-antibacterial-efficacy-of-meropenem-loaded-chitosan-nanoparticles-in-a-septic-animal-model
#16
JOURNAL ARTICLE
Ayat Abdelkader, Mohamed A El-Mokhtar, Ola Abdelkader, Mostafa A Hamad, Mahmoud Elsabahy, Omaima N El-Gazayerly
Antimicrobial resistance is one of the most significant health challenges worldwide. Meropenem is a broad spectrum beta-lactam antibiotic that possesses high activity against Gram-positive and Gram-negative bacteria. However, it has a short plasma half-life, and thus requiring frequent administration of high doses. For the first time, meropenem-loaded chitosan nanoparticles were prepared and evaluated as a potential tool to overcome antimicrobial resistance and to improve pharmacokinetics of the drug. Spherical nanosized particles were prepared and demonstrated ultrahigh encapsulation efficiency of meropenem (i...
October 15, 2017: Carbohydrate Polymers
https://read.qxmd.com/read/28540754/zero-order-release-and-bioavailability-enhancement-of-poorly-water-soluble-vinpocetine-from-self-nanoemulsifying-osmotic-pump-tablet
#17
JOURNAL ARTICLE
Sally A El-Zahaby, Mohamed H H AbouGhaly, Ghada A Abdelbary, Omaima N El-Gazayerly
Solid self-nanoemulsifying (S-SNEDDS) asymmetrically coated osmotic tablets of the poorly water-soluble drug Vinpocetine (VNP) were designed. The aim was to control the release of VNP by the osmotic technology taking advantage of the solubility and bioavailability-enhancing capacity of S-SNEDDS. Liquid SNEDDS loaded with 2.5 mg VNP composed of Maisine™ 35-1, Transcutol® HP, and Cremophor® EL was adsorbed on the solid carrier Aeroperl® . S-SNEDDS was mixed with the osmotic tablet excipients (sodium chloride, Avicel® , HPMC-K4M, PVP-K30, and Lubripharm® ), then directly compressed to form the core tablet...
November 2018: Pharmaceutical Development and Technology
https://read.qxmd.com/read/27086898/comparative-pharmaceutical-study-on-colon-targeted-micro-particles-of-celecoxib-in-vitro-in-vivo-evaluation
#18
COMPARATIVE STUDY
Lamyaa Bazan, Ehab R Bendas, Omaima N El Gazayerly, Sabry Sayed Badawy
In order to target celecoxib which is a COX2 inhibitor, with potentials in the prevention and treatment of colitis and colon cancer, it was formulated as microparticles using the solvent/evaporation method and various pH-dependent Eudragit polymers. The in-vitro evaluation of the prepared microparticles showed spherical and smooth morphology. The encapsulation efficiency and yield were high, indicating that the method used is simple and efficient at this scale. The in-vitro release study showed no release in the acidic medium for 2 h followed by the release of the drug in pH 6...
November 2016: Drug Delivery
https://read.qxmd.com/read/26758033/novel-non-ionic-surfactant-proniosomes-for-transdermal-delivery-of-lacidipine-optimization-using-2-3-factorial-design-and-in-vivo-evaluation-in-rabbits
#19
JOURNAL ARTICLE
Sara M Soliman, Nevine S Abdelmalak, Omaima N El-Gazayerly, Nabaweya Abdelaziz
CONTEXT: Proniosomes offer a versatile vesicle drug delivery concept with potential for delivery of drugs via transdermal route. OBJECTIVES: To develop proniosomal gel using cremophor RH 40 as non-ionic surfactant containing the antihypertensive drug lacidipine for transdermal delivery so as to avoid its extensive first pass metabolism and to improve its permeation through the skin. MATERIALS AND METHODS: Proniosomes containing 1% lacidipine were prepared by the coacervation phase separation method, characterized, and optimized using a 2(3) full factorial design to define the optimum conditions to produce proniosomes with high entrapment efficiency, minimal vesicle size, and high-percentage release efficiency...
June 2016: Drug Delivery
https://read.qxmd.com/read/26431970/multiplexed-integrating-plasmids-for-engineering-of-the-erythromycin-gene-cluster-for-expression-in-streptomyces-spp-and-combinatorial-biosynthesis
#20
JOURNAL ARTICLE
Bahgat Fayed, David A Ashford, Amal M Hashem, Magdy A Amin, Omaima N El Gazayerly, Matthew A Gregory, Margaret C M Smith
Bacteria in the genus Streptomyces and its close relatives are prolific producers of secondary metabolites with antibiotic activity. Genome sequencing of these bacteria has revealed a rich source of potentially new antibiotic pathways, whose products have never been observed. Moreover, these new pathways can provide novel genes that could be used in combinatorial biosynthesis approaches to generate unnatural analogues of existing antibiotics. We explore here the use of multiple orthologous integrating plasmid systems, based on the int/attP loci from phages TG1, SV1, and ϕBT1, to express the polyketide synthase (PKS) for erythromycin in a heterologous Streptomyces host...
December 2015: Applied and Environmental Microbiology
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