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15
result(s) for
"Alimoradi Houman"
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Fish Collagen: Extraction, Characterization, and Applications for Biomaterials Engineering
by
Shavandi, Amin
,
Ghaffari-Bohlouli, Pejman
,
Siekapen, Manuela Mafosso
in
Acetic acid
,
Amino acids
,
Biocompatibility
2020
The utilization of marine-based collagen is growing fast due to its unique properties in comparison with mammalian-based collagen such as no risk of transmitting diseases, a lack of religious constraints, a cost-effective process, low molecular weight, biocompatibility, and its easy absorption by the human body. This article presents an overview of the recent studies from 2014 to 2020 conducted on collagen extraction from marine-based materials, in particular fish by-products. The fish collagen structure, extraction methods, characterization, and biomedical applications are presented. More specifically, acetic acid and deep eutectic solvent (DES) extraction methods for marine collagen isolation are described and compared. In addition, the effect of the extraction parameters (temperature, acid concentration, extraction time, solid-to-liquid ratio) on the yield of collagen is investigated. Moreover, biomaterials engineering and therapeutic applications of marine collagen have been summarized.
Journal Article
Kinetic modelling of the solid–liquid extraction process of polyphenolic compounds from apple pomace: influence of solvent composition and temperature
by
Hobbi Parinaz
,
Shavandi Amin
,
Valentine, Okoro Oseweuba
in
Acetone
,
Apple pomace
,
Design optimization
2021
This study aims to assess kinetic modelling of the solid–liquid extraction process of total polyphenolic compounds (TPC) from apple pomace (AP). In this regard, we investigated the effects of temperature and solvent (i.e. water, ethanol, and acetone) on TPC extraction over various periods. The highest TPC yield of 11.1 ± 0.49 mg gallic acid equivalent (GAE)/g db (dry basis) was achieved with a mixture of 65% acetone–35% water (v/v) at 60 °C. The kinetics of the solvent-based TPC extraction processes were assessed via first-order and second-order kinetic models, with an associated investigation of the kinetic parameters and rate constants, saturation concentrations, and activation energies. The second-order kinetic model was sufficient to describe the extraction mechanism of TPC from AP. This study provides an understanding of the mass transfer mechanism involved in the polyphenolic compound extraction process, thus facilitating future large-scale design, optimization, and process control to valorize pomace waste.
Journal Article
Enhanced keratin extraction from wool waste using a deep eutectic solvent
by
Shavandi, Amin
,
Alimoradi, Houman
,
Okoro, Oseweuba Valentine
in
Acids
,
Composite materials
,
Cysteine
2022
AbstractIn this study, the solubilization of waste coarse wool as a precursory step for the large-scale valorization of keratin was investigated using a green deep eutectic solvent (DES) based on L-cysteine and lactic acid. The investigation was undertaken via the response surface methodology and based on the Box–Behnken design for four process variables of temperature (70–110 °C), dissolution time (2–10 h), the mass of L-cysteine (0.5–2.5 g) in 20 mL of lactic acid, and wool load in the DES (0.2–0.6 g). Temperature was the most significant process variable influencing keratin yield from the waste coarse wool. The optimum keratin yield (93.77 wt.%) was obtained at the temperature of 105 °C, 8 h dissolution time, with 1.6 g L-cysteine in 20 mL of lactic acid using 0.5 g of wool. This study suggests L-cysteine and lactic acid as a green solvent with the potential to scale up keratin recovery from waste wool without significant destruction in the structure of the recovered keratin.Graphical abstract
Journal Article
Nitric oxide-releasing nanoparticles improve doxorubicin anticancer activity
2018
Anticancer drug delivery systems are often limited by hurdles, such as off-target distribution, slow cellular internalization, limited lysosomal escape, and drug resistance. To overcome these limitations, we have developed a stable nitric oxide (NO)-releasing nanoparticle (polystyrene-maleic acid [SMA]-
-dodecane S-nitrosothiol [tDodSNO]) with the aim of enhancing the anticancer properties of doxorubicin (Dox) and a Dox-loaded nanoparticle (SMA-Dox) carrier.
Effects of SMA-tDodSNO and/or in combination with Dox or SMA-Dox on cell viability, apoptosis, mitochondrial membrane potential, lysosomal membrane permeability, tumor tissue, and tumor growth were studied using in vitro and in vivo model of triple-negative breast cancer (TNBC). In addition, the concentrations of SMA-Dox and Dox in combination with SMA-tDodSNO were measured in cells and tumor tissues.
Combination of SMA-tDodSNO and Dox synergistically decreased cell viability and induced apoptosis in 4T1 (TNBC cells). Incubation of 4T1 cells with SMA-tDodSNO (40 µM) significantly enhanced the cellular uptake of SMA-Dox and increased Dox concentration in the cells resulting in a twofold increase (
<0.001). Lysosomal membrane integrity, evaluated by acridine orange (AO) staining, was impaired by 40 µM SMA-tDodSNO (
<0.05 vs control) and when combined with SMA-Dox, this effect was significantly potentiated (
<0.001 vs SMA-Dox). Subcutaneous administration of SMA-tDodSNO (1 mg/kg) to xenografted mice bearing 4T1 cells showed that SMA-tDodSNO alone caused a twofold decrease in the tumor size compared to the control group. SMA-tDodSNO in combination with SMA-Dox resulted in a statistically significant 4.7-fold reduction in the tumor volume (
<0.001 vs control), without causing significant toxicity as monitored through body weight loss.
Taken together, these results suggest that SMA-tDodSNO can be used as a successful strategy to increase the efficacy of Dox and SMA-Dox in a model of TNBC.
Journal Article
Synthesis and Characterization of Curcumin-Polycaprolactone Block Copolymers for Biomedical Applications
2025
Polycaprolactone (PCL) is widely utilized in biomedical applications such as tissue engineering and drug delivery; however, its limited bioactivity remains a key challenge. In this study, bioactive curcumin–polycaprolactone block copolymers (MCP) were synthesized via ring-opening polymerization of ε-caprolactone and maleic anhydride modified curcumin. The resulting MCP was characterized using FTIR, 1H NMR, UV–Vis spectroscopy, and differential scanning calorimetry (DSC). It demonstrated enhanced antioxidant activity, UV-blocking capacity, and electro spinnability compared to PCL. Electrospun MCP films exhibited improved biocompatibility and promoted fibroblast migration. Furthermore, composite films incorporating MCP into a PVA matrix with and without copper or iron were evaluated for in vivo toxicity and antimicrobial activity. These formulations showed no systemic or contact toxicity in the Galleria mellonella model, confirming their biocompatibility. Films containing copper or iron exhibited selective anti-Pseudomonas aeruginosa activity and low but reproducible antioxidant capacity. This study highlights the multifunctionality and biomedical potential of MCP and its composites as tunable platforms for regenerative and antimicrobial applications.
Journal Article
Waste apple pomace conversion to acrylic acid : economic and potential environmental impact assessments
by
Shavandi, Amin
,
Alimoradi, Houman
,
Okoro, Oseweuba Valentine
in
Acrylic acid
,
apple pomace
,
Biomass
2022
The global demand for acrylic acid (AA) is increasing due to its wide range of applications. Due to this growing demand, alternative AA production strategies must be explored to avoid the exacerbation of prevailing climate and global warming issues since current AA production strategies involve fossil resources. Investigations regarding alternative strategies for AA production therefore constitute an important research interest. The present study assesses waste apple pomace (WAP) as a feedstock for sustainable AA production. To undertake this assessment, process models based on two production pathways were designed, modelled and simulated in ASPEN plus® software. The two competing production pathways investigated included a process incorporating WAP conversion to lactic acid (LA) prior to LA dehydration to generate AA (denoted as the fermentation–dehydration, i.e., FD, pathway) and another process involving WAP conversion to propylene prior to propylene oxidation to generate AA (denoted as the thermochemical–fermentation–oxidation, i.e., TFO, pathway). Economic performance and potential environmental impact of the FD and TFO pathways were assessed using the metrics of minimum selling price (MSP) and potential environmental impacts per h (PEI/h). The study showed that the FD pathway presented an improved economic performance (MSP of AA: USD 1.17 per kg) compared to the economic performance (MSP of AA: USD 1.56 per kg) of the TFO pathway. Crucially, the TFO process was determined to present an improved environmental performance (2.07 kPEI/h) compared to the environmental performance of the FD process (8.72 kPEI/h). These observations suggested that the selection of the preferred AA production pathway or process will require a tradeoff between economic and environmental performance measures via the integration of a multicriteria decision assessment in future work.
Journal Article
Glutathione responsive iNOS inhibiting polymeric prodrug for targeted Inhibition of angiogenesis
by
Gregoire, Françoise
,
Delporte, Christine
,
Fallah, Anita
in
Angiogenesis
,
Angiogenesis - drug effects
,
Angiogenesis Inhibitors - chemistry
2026
Background
Inducible nitric oxide synthase (iNOS) is a key driver of aberrant angiogenesis in inflammatory conditions and cancer, making it an attractive therapeutic target. Nevertheless, its function can be affected by the complex immune responses and tumor microenvironment (TME). Hence, combinatorial treatment approaches that simultaneously target iNOS and immune-modulatory signaling are strongly recommended for cancer therapy. Moreover, the current iNOS inhibitors are limited by poor pharmacokinetics and a lack of selectivity.
Results
To address these challenges, we developed a glutathione (GSH)-responsive iNOS-inhibiting polymeric prodrug (GRIP) decorated with betamethasone succinate (NP
BeS
). These dual-function nanoparticles (NP
BeS
) remain stable under physiological conditions but selectively release their payload in response to elevated GSH levels, a hallmark of the TME. Only upon activation by GSH, NP
BeS
inhibits iNOS, as evidenced by suppressed lipopolysaccharide (LPS)-induced nitric oxide (NO) production in RAW 264.7 macrophages. NP
BeS
also normalized vascular endothelial growth factor (VEGF)-mediated tube formation in HUVECs and 3T3-L1 fibroblast cell migration, and angiogenesis in the CAM assay, demonstrating its anti-angiogenic activity. Importantly, GRIP did not impair acetylcholine (ACh)-induced vasodilation in rat aorta, even at elevated concentrations, indicating preservation of eNOS function.
Conclusions
This is the first report of a GSH-responsive polymeric prodrug system that leverages intracellular GSH for both controlled release of anionic therapeutic agents and in situ synthesis of an iNOS antagonist. Through these two complementary pathways, the system enables targeted, sustained anti-angiogenic effects and promotes vascular normalization. This dual-function platform holds strong potential for the treatment of cancer-associated angiogenesis.
Graphical Abstract
Journal Article
Proliferation and osteogenic differentiation of mesenchymal stem cells on three-dimensional scaffolds made by thermal sintering method
by
Shavandi, Amin
,
Sadeghi, Gity Mir Mohamad
,
Ghaffari-bohlouli, Pejman
in
Biocompatibility
,
Biodegradation
,
Cytotoxicity
2021
This article presents a thermal sintering method to fabricate porous bone tissue engineering scaffolds based on polycaprolactone (PCL), polylactic acid (PLA), and their composites. The mechanical properties, porous structure, biodegradability, and biocompatibility of sintered scaffolds were evaluated. The scaffolds showed a porosity in the range of 86–91% with a pore size of 75 m μ to 400 m μ . PCL/PLA composite scaffolds showed a Young’s modulus of around 49 MPa, which was between the modulus values of PCL (24 MPa) and PLA (63 MPa) scaffolds. Fibroblast cells (SNL) exhibited spreading and adhesion on the scaffolds, and scaffolds demonstrated a significant difference in the osteogenic differentiation of human mesenchymal stem cells (hMSCs) after 7 and 14 days of culture in comparison with the control (tissue culture polystyrene). Our results demonstrated that the thermally sintered PCL/PLA composite scaffold could be a promising candidate for bone tissue regeneration.
Journal Article
Correlation between lithium concentrations in drinking water and suicide attempt in the southeast of Iran
by
Ghaffarian-Bahraman, Ali
,
Nasab, Zoheira Bagheri
,
Ahmadinia, Hassan
in
Adult
,
atomic absorption spectrometry
,
Correlation
2024
Suicide, as an avoidable cause of death in public health systems, currently lacks effective global strategies to prevent it. However, several epidemiological studies found a correlation between the concentration of lithium (Li) in drinking water and lower suicide rates in the general population. Our ecological study investigated this hypothesis in the Rafsanjan district of Iran. Samples from the public water supply in 16 areas in the district were analyzed using the graphite furnace atomic absorption. The resulting data were examined in relation to the suicide attempt from March 2019 to March 2020 obtained from Iran's Ministry of Health's registration system. During that period, 239 suicide attempts were recorded, resulting in an average of 69 individuals (85 women and 54 men) per 100,000 residents of the area. The average Li concentration in the drinking water was 47.30 µg/L (ranging from 9.4 to 141 µg/L). A negative significant correlation (r = -0.551,
p
= 0.027) between Li concentration in water and the rate of suicide attempt were observed in the studied population. Notably, these findings indicate an inverse significant relationship between Li levels and suicide attempt rate in women (r = -0.725,
p
= 0.001). This is the first study in Iran that examines the relationship between Li levels in drinking water and suicide attempt rate. The findings of this study support an inverse relationship between the level of Li in public drinking water and the rate of women suicide attempt.
Journal Article
Pantoprazole, a proton pump inhibitor, increases orthodontic tooth movement in rats
by
Shirazi, Mohsen
,
Kheirandish, Yasaman
,
Dehpour, Ahmad Reza
in
Original
,
Pantoprazole
,
Proton pump inhibitors
2014
Pantoprazole, is a proton pump inhibitor (PPI) prescribed for the treatment of upper gastrointestinal disorders, which in high doses has been suggested to decrease calcium absorption leading to hypocalcaemia and therefore osteoporosis. The aim of this study was to assess whether pantoprazol, could alter the rate of orthodontic tooth movement (OTM) in rats.
A time course study was established using 72 rats which were divided into six groups of 12 samples each (four: vehicle; eight: pantoprazole + vehicle). Pantoprazole at a dose of 200 mg/kg suspended in carboxymethyl cellulose (0.25 percent) was administered by a gastric tube. The upper incisors and first molars were ligated by a 5 mm nickel-titanium closed-coil spring to deliver an initial force of 60 g. Animals were euthanized two weeks after orthodontic treatment followed by assessment of tooth movement and histomorphometric evaluation of the detached maxillae. Lateral skull radiographs were obtained once a week, starting from the first day to the 6(th) week of the study. OTM and bone density data were analyzed using independent sample t-test and repeated measures ANOVA.
No significant changes in OTM measurements and optical density were observed in vehicle-receiving animals during the study (P=0.994). OTM was significantly increased after six weeks pantoprazole therapy which continued until the 7(th) week of the experiment (P=0.007). Optical density significantly increased in the pantoprazole-treated rats after six weeks.
Long term PPI therapy at high doses could lead to osteoporosis and enhanced OTM.
Journal Article