Mohammed H. Elkomy’s research while affiliated with Jouf University and other places

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Publications (36)


Intranasal trimethyl chitosan-coated emulsomes containing tizanidine as brain-targeted therapy in spasticity: formulation, optimization, and pharmacokinetic assessment
  • Article

December 2024

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30 Reads

Drug Delivery and Translational Research

Mohammed H Elkomy

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Omnia M Hendawy

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Tizanidine HCl (TZN) is an FDA-approved medication for treating spasticity. However, its oral administration presents obstacles to its efficacy, as it has a short duration of action and a low rate of absorption into the circulation (less than 40%) due to its rapid breakdown in the liver. In addition, its hydrophilic properties limit its capacity to cross the blood–brain barrier, thereby prohibiting it from reaching the central nervous system, where it can exert its intended therapeutic effects. Furthermore, diet-dependent absorption leads to fluctuations in bioavailability. Thus, this work aimed to create TZN-loaded chitosan-coated emulsomes (TZN-CTS-EMS) for intranasal administration, bypassing hepatic metabolism and boosting brain bioavailability. TZN-CTS-EMS were made using a thin film hydration approach. The influence of the independent parameters on the vesicle characteristics was examined and optimized using a Box-Behnken experimental methodology. The optimized formulation expected by the experimental design exhibited a greater desirability factor, characterized by a smaller particle size (127.63 nm), higher encapsulation efficiency (67.36%), and higher zeta potential (32.49 mV). As a result, it was chosen for additional in vivo assessment. Histopathological examinations showed no structural injury or toxicity to the nasal mucosa. Compared to intranasal TZN solution (TZN-SOL), the pharmacokinetics analysis demonstrated that intranasal TZN-CTS-EMS had a relative bioavailability of 191.9% in the plasma and 459.3% in the brain. According to these findings, intranasal administration of the optimized TZN-CTS-EMS may represent a viable, noninvasive substitute for effective TZN delivery to brain tissues, potentially leading to improved safety and pharmacological efficiency.


RETRACTED: Development of thermosensitive hydrogel of Amphotericin-B and Lactoferrin combination-loaded PLGA-PEG-PEI nanoparticles for potential eradication of ocular fungal infections: In-vitro, ex-vivo and in-vivo studies
  • Article
  • Full-text available

December 2024

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39 Reads

International Journal of Pharmaceutics X

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Repurposing celecoxib for colorectal cancer targeting via pH-triggered ultra-elastic nanovesicles: Pronounced efficacy through up-regulation of Wnt/β-catenin pathway in DMH-induced tumorigenesis

December 2023

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49 Reads

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9 Citations

International Journal of Pharmaceutics X

Celecoxib (CLX), a selective inhibitor for cyclooxygenase 2 (COX-2), has manifested potential activity against diverse types of cancer. However, low bioavailability and cardiovascular side effects remain the major challenges that limit its exploitation. In this work, we developed ultra-elastic nanovesicles (UENVs) with pH-triggered surface charge reversal traits that could efficiently deliver CLX to colorectal segments for snowballed tumor targeting. CLX-UENVs were fabricated via a thin-film hydration approach. The impact of formulation factors (Span 80, Tween 80, and sonication time) on the nanovesicular features was evaluated using Box–Behnken design, and the optimal formulation was computed. The optimum formulation was positively coated with polyethyleneimine (CLX-PEI-UENVs) and then coated with Eudragit S100 (CLX-ES-PEI-UENVs). The activity of the optimized nano-cargo was explored in 1,2-dimethylhydrazine-induced colorectal cancer in Wistar rats. Levels of COX-2, Wnt-2 and β-catenin were assessed in rats' colon. The diameter of the optimized CLX-ES-PEI-UENVs formulation was 253.62 nm, with a zeta potential of −23.24 mV, 85.64% entrapment, and 87.20% cumulative release (24 h). ES coating hindered the rapid release of CLX under acidic milieu (stomach and early small intestine) and showed extended release in the colon section. In colonic environments, the ES coating layer was removed due to high pH, and the charge on the nanovesicular corona was shifted from negative to positive. Besides, a pharmacokinetics study revealed that CLX-ES-PEI-UENVs had superior oral bioavailability by 2.13-fold compared with CLX suspension. Collectively, these findings implied that CLX-ES-PEI-UENVs could be a promising colorectal-targeted nanoplatform for effective tumor management through up-regulation of the Wnt/β-catenin pathway.



Figure 1. Diagram showing the scheme for formulation of QER-TFS thermosensitive gel.
Figure 3. Forced swimming test (FST) results for various formulations (Control Negative, Control Positive, QER-SOLN (oral), QER-SOLN gel (IN), and QER-TFS gel (IN)), showing the effect on climbing, swimming, and immobility times (s). Tail Suspension Test (TST) The TST showed a significant reduction in immobility for the QER-TFS (IN) gel (27.2 ± 6.1 s), QER-SOLN (oral) (131.8 ± 7.2 s), and QER-SOLN gel (IN) (117 ± 5.8) compared to the positive control group, demonstrating superior antidepressant effectiveness, with the QER-TFS gel (IN) being the most efficient (Figure 4).
Intranasal Nanotransferosomal Gel for Quercetin Brain Targeting: II. Antidepressant Effect in an Experimental Animal Model

August 2023

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103 Reads

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10 Citations

Depression is a serious mental disorder and the most prevalent cause of disability and suicide worldwide. Quercetin (QER) demonstrated antidepressant effects in rats exhibiting anxiety and depressive-like behaviors. In an attempt to improve QER’s antidepressant activity, a QER-loaded transferosome (QER-TFS) thermosensitive gel for intranasal administration was formulated and optimized. The therapeutic effectiveness of the optimized formulation was assessed in a depressed rat model by conducting a behavioral analysis. Behavioral study criteria such as immobility, swimming, climbing, sucrose intake, number of crossed lines, rearing, active interaction, and latency to feed were all considerably enhanced by intranasal treatment with the QER-TFS in situ gel in contrast to other formulations. A nasal histopathological study indicated that the QER-TFS thermosensitive gel was safe for the nasal mucosa. An immunohistochemical analysis showed that the animals treated with the QER-TFS thermosensitive gel had the lowest levels of c-fos protein expression, and brain histopathological changes in the depressed rats were alleviated. According to pharmacodynamic, immunohistochemical, and histopathological experiments, the intranasal administration of the QER-TFS thermosensitive gel substantially alleviated depressive symptoms in rats. However, extensive preclinical investigations in higher animal models are needed to anticipate its effectiveness in humans.


Novel nasal niosomes loaded with lacosamide and coated with chitosan: A possible pathway to target the brain to control partial-onset seizures

August 2023

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87 Reads

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14 Citations

International Journal of Pharmaceutics X

This work aimed to develop and produce lacosamide-loaded niosomes coated with chitosan (LCA-CTS-NSM) using a thin-film hydration method and the Box-Behnken design. The effect of three independent factors (Span 60 amount, chitosan concentration, and cholesterol amount) on vesicle size, entrapment efficiency, zeta potential, and cumulative release (8 h) was studied. The optimal formulation of LCA-CTS-NSM was chosen from the design space and assessed for morphology, in vitro release, nasal diffusion, stability, tolerability, and in vivo biodistribution for brain targeting after intranasal delivery. The vesicle size, entrapment, surface charge, and in vitro release of the optimal formula were found to be 194.3 nm, 58.3%, +35.6 mV, and 81.3%, respectively. Besides, it exhibits sustained release behavior, enhanced nasal diffusion, and improved physical stability. Histopathological testing revealed no evidence of toxicity or structural damage to the nasal mucosa. It demonstrated significantly more brain distribution than the drug solution. Overall, the data is encouraging since it points to the potential for non-invasive intranasal administration of LCA as an alternative to oral or parenteral routes.


Intranasal Nanotransferosomal Gel for Quercetin Brain Targeting: I. Optimization, Characterization, Brain Localization, and Cytotoxic Studies

June 2023

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141 Reads

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16 Citations

Numerous neurological disorders have a pathophysiology that involves an increase in free radical production in the brain. Quercetin (QER) is a nutraceutical compound that shields the brain against oxidative stress-induced neurodegeneration. Nonetheless, its low oral bioavailability diminishes brain delivery. Therefore, the current study aimed to formulate QER-loaded transferosomal nanovesicles (QER-TFS) in situ gel for QER brain delivery via the intranasal route. This study explored the impacts of lipid amount, edge activator (EA) amount, and EA type on vesicle diameter, entrapment, and cumulative amount permeated through nasal mucosa (24 h). The optimum formulation was then integrated into a thermosensitive gel after its physical and morphological characteristics were assessed. Assessments of the optimized QER-TFS showed nanometric vesicles (171.4 ± 3.4 nm) with spherical shapes and adequate entrapment efficiency (78.2 ± 2.8%). The results of short-term stability and high zeta potential value (−32.6 ± 1.4 mV) of QER-TFS confirmed their high stability. Compared with the QER solution, the optimized QER-TFS in situ gel formulation exhibited sustained release behavior and augmented nasal mucosa permeability. CT scanning of rat brains demonstrated the buildup of gold nanoparticles (GNPs) in the brains of all treatment groups, with a greater level of GNPs noted in the rats given the transferosomal gel. Additionally, in vitro studies on PCS-200-014 cells revealed minimal cytotoxicity of QER-TFS in situ gel. Based on these results, the developed transferosomal nanovesicles may be a suitable nanocarrier for QER brain targeting through the intranasal route.


Figure 2. Endometrial thickness distribution among different treatment sub-groups.
Figure 3. A, Transvaginal ultrasound shows right ovary with dominant follicle = 17.5 mm in the study group, B, Transvaginal ultrasound shows thin endometrium = 6.9 mm in the control group, C, Transvaginal ultrasound shows left ovary with dominant follicle = 19 mm, D, Transvaginal ultrasound shows trilaminar endometrium with thickness =10.9 mm in the study group, E, HD live shows gestational sac of 8 weeks pregnancy with fetal pole and yolk sac inside.
Oral sildenafil citrate: a potential approach for improvement of endometrial thickness and treatment of unexplained infertility in women

May 2023

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354 Reads

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4 Citations

Objective: The study aimed to determine the impact of using sildenafil citrate as an adjuvant with clomiphene citrate (CC) in the treatment of women with unexplained infertility. Patients and methods: 130 women with unexplained infertility were enrolled in a prospective randomized study. After dividing into two groups, all patients received CC 50 mg-BD from the 2nd to the 7th day of the cycle. Oral sildenafil citrate 20 mg was given BD to the study group from the end of menstruation till ovulation. A transvaginal ultrasound was carried out for all patients to assess ovulation, number of follicles, and endometrial thickness (ET). The beta-hCG blood test was used to determine pregnancy two weeks after ovulation followed by an ultrasound to confirm viability. Adverse effects were recorded and miscarriage, ectopic, and multi-fetal pregnancy were followed up for twelve weeks. Results: Median ET in the study group was 8 mm compared to 7 mm in the control group (p<0.01). The number of pregnancies increased in the study group but with no significant difference. The median ET was greater in the study group with an infertility duration of less than 2 years. Headache was the most significant adverse effect in the study group (9.2% vs. 1.5%, p=0.052). Conclusions: Adding sildenafil citrate to CC is a good choice for overcoming the antiestrogenic action of CC and improving ET in women with unexplained infertility, especially in those with less than 2 years of infertility.


Exploring the potential of quercetin/aspirin-loaded chitosan nanoparticles coated with Eudragit L100 in the treatment of induced-colorectal cancer in rats

March 2023

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81 Reads

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9 Citations

Drug Delivery and Translational Research

Growing evidence suggests quercetin and aspirin may have anticancer properties, notably in the case of colorectal cancer. The goal of this study was to create Pluronic F127 and polyethylene glycol4000 solid dispersion-loaded chitosan nanoparticles for colonic quercetin and aspirin delivery. In 1:1 polymeric stoichiometric ratio, solubility and complex formation were verified. Solid dispersion-loaded chitosan nanoparticles with a diameter of 244.45 ± 8.5 nm, a surface charge of 34.1 ± 3.3 mV, and encapsulation effectiveness of 76.3 ± 4.3% were generated under ideal conditions. In some cases, coating with Eudragit L100 resulted in a decrease in zeta potential and an increase in particle size. The coated formulation released the actives in a pH-dependent manner, considering their physicochemical features. Surprisingly, when compared to the actives' suspension and uncoated formulation, the coated formulation had greater anti-inflammatory efficacy, with a substantial reduction of PGE2 and IL-8 production in colonic tissues (16.9 ± 7.9 ng/g tissue and 134.9 ± 10.1 pg/g tissue, respectively). It also reversed most of the dimethyl hydrazine-induced histological alterations in the colon. It also demonstrated a greater reduction in TNF expression in colonic tissues. As a result, Eudragit L100-coated QT/AS-loaded chitosan nanoparticles are suggested to provide a potential platform for colonic delivery of quercetin and aspirin.


Citations (33)


... Furthermore, in citicoline research, intranasal niosomes imparted higher brain drug uptake than free intranasal and oral drug solutions [11]. Alsaidan, O.A. et al., in their research on venalafaxine transbiliosmes thermo gel using bio distribution analysis, showed that their formulation delivered intranasally had a relative bioavailability of 441% in the brain and 288% in plasma [12]. In this study, leciplexes (LPXs) were tailored and appraised as a novel platform for MRZ intranasal brain delivery. ...

Reference:

Nose-to-Brain Delivery of Chitosan-Grafted Leciplexes for Promoting the Bioavailability and Antidepressant Efficacy of Mirtazapine: In Vitro Assessment and Animal Studies
Brain Targeting of Venlafaxine via Intranasal Transbilosomes Thermogel for Improved Management of Depressive Disorder
  • Citing Article
  • August 2024

Journal of Pharmaceutical Sciences

... Their results indicated that the SLNs significantly reduced cell viability in HT29 colon cancer cells in a dose-dependent manner. Another study by Menshawe et al. demonstrated that the celecoxib-loaded nanovesicles significantly led to a marked reduction in cell proliferation, indicating pronounced anticancer efficacy by improving the drug delivery and effectiveness against colorectal cancer cells (30) . Moreover, the cytotoxic effects of nanocelecoxib were reported in a dose-dependent manner in another studies against lung, breast, brain cancers and melanoma (16,19,31,32) . ...

Repurposing celecoxib for colorectal cancer targeting via pH-triggered ultra-elastic nanovesicles: Pronounced efficacy through up-regulation of Wnt/β-catenin pathway in DMH-induced tumorigenesis

International Journal of Pharmaceutics X

... the effects of NPs' physicochemical characteristics, including drug ee and shape, on their biological efficacy have been evaluated extensively. in in vitro kinetic release, NG from NG-MOF-5@lNs better fits a higuchi model (R 2 = 0.9988) as reported in [90,93]. higuchi kinetics were utilized to offer the highest linearity, which is in line with earlier research [90,94]. ...

Formulation and optimization of Naringin polymeric nanoparticles: Optimization to in vivo evaluation
  • Citing Article
  • September 2023

Journal of Drug Delivery Science and Technology

... The nose-to-brain (NTB) route enables the direct administration of medications to the brain through neuronal transport (trigeminal and olfactory nerves) [16,17]. The NTB route is considered a noninvasive approach for delivering medications directly to the brain [18,19]. ...

Novel nasal niosomes loaded with lacosamide and coated with chitosan: A possible pathway to target the brain to control partial-onset seizures

International Journal of Pharmaceutics X

... Although rats treated with oral commercial tablet showed remarkable lower latency time values (9.91 ± 1.04 min) in comparison to depressed group II (p < 0.05), rats treated with nasal optimal NVG demonstrated highly significant low latency time values (5.86 ± 1.05 min; p < 0.001). These behavioral results revealed the efficient nasal delivery of agomelatine and enhanced drug localization in the brain by the aid of in-situ NVGs [90]. ...

Intranasal Nanotransferosomal Gel for Quercetin Brain Targeting: II. Antidepressant Effect in an Experimental Animal Model

... According to the CT scan data, the GNPs (gold nanoparticles) in the QER-TFS gel-treated rats exhibited considerable brain absorption in comparison to quercetin GNPs taken orally and quercetin GNPs gel administered via the nasal route. The results thus obtained suggested that the formulation served as a promising nanocarrier for the nose-based absorption of quercetin to the brain [100]. ...

Intranasal Nanotransferosomal Gel for Quercetin Brain Targeting: I. Optimization, Characterization, Brain Localization, and Cytotoxic Studies

... CC is commonly used as a first-line treatment to induce ovulation due to its low cost, tolerability, and safety profile. Despite good ovarian stimulation and high ovulation rates, CC is associated with low pregnancy rates [6,7] and high rates of early abortion [8][9][10]. The American Society of Reproductive Medicine (ASRM) Practice Committee has stated that CC does not increase fertility in patients with unexplained infertility [5]. ...

Oral sildenafil citrate: a potential approach for improvement of endometrial thickness and treatment of unexplained infertility in women

... Chitosan + Quercetin (QC) + Alginate + Zein Nanoparticles Delivery system [102] QC + Chitosan + Doxorubicin (DOX) Nanoparticle Cardiotoxicity [103] Quercetin + CS + Aspirin + Eudragit L100 Nanoparticles (NPs) Colorectal cancer [104] Quercetin + Chitosan NPs Anti-rheumatic [105] Quercetin + Chitosan + Halloysite (HNT) + Graphite-carbon nitride (g-C 3 N 4 ) Hydrogel nanocomposite Anticancer [106] ...

Exploring the potential of quercetin/aspirin-loaded chitosan nanoparticles coated with Eudragit L100 in the treatment of induced-colorectal cancer in rats
  • Citing Article
  • March 2023

Drug Delivery and Translational Research

... In terms of lactoferrin content, human milk has the highest concentration at approximately 1700 mg/L. Comparatively, camel milk ranges from 200 to 728 mg/L, cow milk ranges from 80 to 500 mg/L, and donkey milk has the lowest lactoferrin content at around 79 mg/L [48] . Compared to other ruminants, camel milk contains higher levels of both lysozyme and lactoferrin. ...

Development of thermosensitive hydrogel of Amphotericin-B and Lactoferrin combination-loaded PLGA-PEG-PEI nanoparticles for potential eradication of ocular fungal infections: In-vitro, ex- vivo and in-vivo studies Development of thermosensitive hydrogel of Amphotericin-B and Lactoferrin combination-loaded PLGA-PEG-PEI nanoparticles for potential eradication of ocular fungal infections: in-vitro, ex-vivo and in-vivo studies
  • Citing Article
  • March 2023

International Journal of Pharmaceutics X

... Polymeric nanoparticles are instrumental in wound healing, providing a multifaceted strategy to tackle the intricate challenges of tissue repair and regeneration (31). These nanoparticles, derived from biocompatible and biodegradable polymers, exhibit unique properties that make them promising candidates for therapeutic intervention in wound management (32). A key function of polymeric nanoparticles in wound healing is their ability to act as highly effective carriers for delivering bioactive molecules directly to the injury site (33). ...

Polymeric Nanoparticles for Delivery of Natural Bioactive Agents: Recent Advances and Challenges