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Total 28 records

    Targeted Delivery of Curcumin by Mesoporous Silica Nanoparticle Coated with Liposome

    , M.Sc. Thesis Sharif University of Technology Hedayati, Mohammad Hassan (Author) ; Abdekhodaie, Mohammad Jafar (Supervisor) ; Akbari, Hamid (Supervisor)
    Abstract
    Several studies based on anti- cancer, anti- metastatic and anti- tumor effects of curcumin have been reported . Besides these benefits, the therapeutic efficacy of curcumin is limited due to its poor aqueous solubility, extensive first-pass metabolism, inadequate tissue absorption and degradation at alkaline pH, which severely diminishes its bioavailability. In this project we seek to solve some of the problems with nanoscience to work more effectively. In the past decade, mesoporous silica nanoparticles (MSNs) have found widespread application as controlled drug delivery systems. Recent reports on the design of capped and gated MSN-based systems have shown promise in preventing premature... 

    Targeted Theranostic Delivery System Based on Liposomes Containing Graphene Quantum Dots and Drug Nanoparticles For Monitoring and Treatment of Breast Cancer

    , Ph.D. Dissertation Sharif University of Technology Ramedani, Arash (Author) ; Simchi, Abdolreza (Supervisor) ; Sabzevari, Omid (Supervisor)
    Abstract
    Theranostic liposomes have recently found a broad range of applications in nanomedicine due to stability, the high solubility of biomacromolecules, bioavailability, efficacy, and low adverse effects. However, the limitations of liposomes concerning the short systemic circulation in the body, limited controllability of the release rate, and the inability of in vivo imaging remain challenging. Herein, the development of novel hybrid ultrasound-activated piezoelectric nanoparticles based on a hybrid liposome nanocarrier composed of poly(vinylidene fluoride‐trifluoroethylene), graphene quantum dots (GQDs), and Silibinin (a hydrophobic drug) is presented. The hybrid nanoparticles are an... 

    Numerical Simulation of Drug Delivery to Cancerous Tumors

    , M.Sc. Thesis Sharif University of Technology Hosseinizadeh, Ehsan (Author) ; Dehghani Firoozabadi, Bahar (Supervisor)
    Abstract
    The tumor is a collection of cells (cell mass) caused by the lack or ineffectiveness of cellular proliferation inhibitors. Many types of cancers are associated with the emergence of a tumor, a tissue with specific physiological characteristics. The tumors grow very fast so researchers try to prevent their growth and eventually destroy them. Thermal ablation by MWA(microwave ablation) is a common and minimally-invasive treatment for primary and secondary liver tumors that can not be cured by surgery. During treatment, the tissue is heated by microwaves and at a temperature higher than 50 degree Celsius, destroyed by thermal ablation. In this study, two thermal models have been used to... 

    Liposome Nanoparticles Synthesis in order to Study the Antibiotic Drug Delivery in Simulated Environment of Body

    , M.Sc. Thesis Sharif University of Technology Bahari, Mohsen (Author) ; Alemzadeh, Iran (Supervisor)
    Abstract
    In recent years, much attention has been paid to the preparation of nanoparticles as carriers for drug delivery. Nanoparticle carriers, by changing the pharmacokinetic properties of the drug, improve the function of the drug and reduce its side effects. In the manufacture of nanoparticles, various materials such as polymers, metal particles, lipids, etc. are used to transfer the drugs, which can produce a different shape and size of the particles depending on their production method. The purpose of this project is the synthesis of liposomal nanoparticles (as nano-carriers) to load an antibiotic (Eucalyptus oil) and study the release of the encapsulated drug in the simulated environment of... 

    The role of polyethylene glycol size in chemical spectra, cytotoxicity, and release of pegylated nanoliposomal cisplatin

    , Article Assay and Drug Development Technologies ; Volume 17, Issue 5 , 2019 , Pages 231-239 ; 1540658X (ISSN) Shirzad, M ; Jamehbozorgi, S ; Akbarzadeh, I ; Aghabozorg, H. R ; Amini, A ; Sharif University of Technology
    Mary Ann Liebert Inc  2019
    Abstract
    This study aimed to synthesize methoxy polyethylene glycol propionaldehyde (mPEG20,000-ALD) for the preparation of PEGylated nanoliposomal cisplatin. Nanocarriers such as liposomes are developed for a wide range of drug delivery systems. PEG with high molecular weight (Mw) is used to coat the liposomes. In this study, simulated Fourier transform infrared (FTIR) spectra of mPEG-ALD were obtained using density functional theory (DFT) calculations and then compared with actual FTIR spectrum of mPEG20,000-ALD (Mw = 20 kDa). We found that the intensity of C = O stretching vibration at 1,700 cm-1 related to the carbonyl functional group of mPEG20,000-ALD was very weak. The results of DFT... 

    Stimulus-responsive liposomes as smart nanoplatforms for drug delivery applications

    , Article Nanotechnology Reviews ; 2017 ; 21919089 (ISSN) Sahandi Zangabad, P ; Mirkiani, S ; Shahsavari, S ; Masoudi, B ; Masroor, M ; Hamed, H ; Jafari, Z ; Davatgaran Taghipour, Y ; Hashemi, H ; Karimi, M ; Hamblin, M. R ; Sharif University of Technology
    Abstract
    Liposomes are known to be promising nanoparticles (NPs) for drug delivery applications. Among different types of self-assembled NPs, liposomes stand out for their non-toxic nature, and their possession of dual hydrophilic-hydrophobic domains. Advantages of liposomes include the ability to solubilize hydrophobic drugs, the ability to incorporate different hydrophilic and lipophilic drugs at the same time, lessening the exposure of host organs to potentially toxic drugs and allowing modification of the surface by a variety of different chemical groups. This modification of the surface, or of the individual constituents, may be used to achieve two important goals. Firstly, ligands for active... 

    Stimulus-responsive liposomes as smart nanoplatforms for drug delivery applications

    , Article Nanotechnology Reviews ; Volume 7, Issue 1 , 2018 , Pages 95-122 ; 21919089 (ISSN) Sahandi Zangabad, P ; Mirkiani, S ; Shahsavari, S ; Masoudi, B ; Masroor, M ; Hamed, H ; Jafari, Z ; Davatgaran Taghipour, Y ; Hashemi, H ; Karimi, M ; Hamblin, M. R ; Sharif University of Technology
    Walter de Gruyter GmbH  2018
    Abstract
    Liposomes are known to be promising nanoparticles (NPs) for drug delivery applications. Among the different types of self-assembled NPs, liposomes stand out for their non-toxic nature and their possession of dual hydrophilic-hydrophobic domains. The advantages of liposomes include the ability to solubilize hydrophobic drugs, the ability to incorporate different hydrophilic and lipophilic drugs at the same time, lessening the exposure of host organs to potentially toxic drugs and allowing modification of the surface by a variety of different chemical groups. This modification of the surface, or of the individual constituents, may be used to achieve two important goals. First, ligands for... 

    FBAR Syndapin 1 recognizes and stabilizes highly curved tubular membranes in a concentration dependent manner

    , Article Scientific Reports ; Volume 3 , 2013 ; 20452322 (ISSN) Ramesh, P ; Baroji, Y. F ; S. Reihani, S. Nader ; Stamou, D ; Oddershede, L. B ; Bendix, P. M ; Sharif University of Technology
    2013
    Abstract
    Syndapin 1 FBAR, a member of the Bin-amphiphysin-Rvs (BAR) domain protein family, is known to induce membrane curvature and is an essential component in biological processes like endocytosis and formation and growth of neurites. We quantify the curvature sensing of FBAR on reconstituted porcine brain lipid vesicles and show that it senses membrane curvature at low density whereas it induces and reinforces tube stiffness at higher density. FBAR strongly up-concentrates on the high curvature tubes pulled out of Giant Unilamellar lipid Vesicles (GUVs), this sorting behavior is strongly amplified at low protein densities. Interestingly, FBAR from syndapin 1 has a large affinity for tubular... 

    Hybrid ultrasound-activated nanoparticles based on graphene quantum dots for cancer treatment

    , Article International Journal of Pharmaceutics ; Volume 629 , 2022 ; 03785173 (ISSN) Ramedani, A ; Sabzevari, O ; Simchi, A ; Sharif University of Technology
    Elsevier B.V  2022
    Abstract
    Theranostic liposomes have recently found a broad range of applications in nanomedicine due to stability, the high solubility of biomacromolecules, bioavailability, efficacy, and low adverse effects. However, the limitations of liposomes concerning the short systemic circulation in the body, limited controllability of the release rate, and the inability of in vivo imaging remain challenging. Herein, the development of novel hybrid ultrasound-activated piezoelectric nanoparticles based on a hybrid liposome nanocarrier composed of poly(vinylidene fluoride‐trifluoroethylene), graphene quantum dots (GQDs), and Silibinin (a hydrophobic drug) is presented. The hybrid nanoparticles are an... 

    Recent advances in porphyrin-based nanocomposites for effective targeted imaging and therapy

    , Article Biomaterials ; Volume 232 , 2020 Rabiee, N ; Tavakkoli Yaraki, M ; Mokhtari Garakani, S ; Mokhtari Garakani, S ; Ahmadi, S ; Lajevardi, A ; Bagherzadeh, M ; Rabiee, M ; Tayebi, L ; Tahriri, M ; Hamblin, M. R ; Sharif University of Technology
    Elsevier Ltd  2020
    Abstract
    Porphyrins are organic compounds that continue to attract much theoretical interest, and have been called the “pigments of life”. They have a wide role in photodynamic and sonodynamic therapy, along with uses in magnetic resonance, fluorescence and photoacoustic imaging. There is a vast range of porphyrins that have been isolated or designed, but few of them have real clinical applications. Due to the hydrophobic properties of porphyrins, and their tendency to aggregate by stacking of the planar molecules they are difficult to work with in aqueous media. Therefore encapsulating them in nanoparticles (NPs) or attachment to various delivery vehicles have been used to improve delivery... 

    Curcumin delivery and co-delivery based on nanomaterials as an effective approach for cancer therapy

    , Article Journal of Drug Delivery Science and Technology ; Volume 78 , 2022 ; 17732247 (ISSN) Pourmadadi, M ; Abbasi, P ; Eshaghi, M. M ; Bakhshi, A ; Ezra Manicum, A. L ; Rahdar, A ; Pandey, S ; Jadoun, S ; Díez Pascual, A. M ; Sharif University of Technology
    Editions de Sante  2022
    Abstract
    Throughout the world, cancer is one of the main causes of mortality, threatening the public health in many countries. As a result, cancer therapy researchers are paying increasing attention to biocompatible targeted drug delivery systems. Nanocarriers and co-delivery of active drugs is emerging as an essential research field for improving therapeutic efficiency. Although nutraceuticals are now being used to prevent and treat chronic illnesses such as cancers, some have shown limitations concerning solubility, bioavailability, and biodegradability. This review explores different types of nanostructures that can be used as drug delivery systems for curcumin, a biologically active polyphenol... 

    Targeted nanomedicines for the treatment of bone disease and regeneration

    , Article Medicinal Research Reviews ; Volume 41, Issue 3 , 2021 , Pages 1221-1254 ; 01986325 (ISSN) Ordikhani, F ; Zandi, N ; Mazaheri, M ; Luther, G. A ; Ghovvati, M ; Akbarzadeh, A ; Annabi, N ; Sharif University of Technology
    John Wiley and Sons Inc  2021
    Abstract
    Targeted delivery by either passive or active targeting of therapeutics to the bone is an attractive treatment for various bone related diseases such as osteoporosis, osteosarcoma, multiple myeloma, and metastatic bone tumors. Engineering novel drug delivery carriers can increase therapeutic efficacy and minimize the risk of side effects. Developmnet of nanocarrier delivery systems is an interesting field of ongoing studies with opportunities to provide more effective therapies. In addition, preclinical nanomedicine research can open new opportunities for preclinical bone-targeted drug delivery; nevertheless, further research is needed to progress these therapies towards clinical... 

    Simvastatin-loaded nano-niosomes confer cardioprotection against myocardial ischemia/reperfusion injury

    , Article Drug Delivery and Translational Research ; Volume 12, Issue 6 , 2022 , Pages 1423-1432 ; 2190393X (ISSN) Naseroleslami, M ; Mousavi Niri , N ; Akbarzade, I ; Sharifi, M ; Aboutaleb, N ; Sharif University of Technology
    Springer  2022
    Abstract
    Although simvastatin (SIM) has been proven to be a powerful agent against myocardial ischemia/reperfusion (MI/R) injury, poor water solubility, short half-life, and low bioavailability have made it futile while using conventional drug delivery system. Hence, this study aims to investigate therapeutic efficacy of SIM-loaded nano-niosomes on MI/R injury. Surface active agent film hydration method was used to synthesize nano-niosomes. The physicochemical properties of nano-niosomes were characterized using dynamic light scattering (DLS) and transmission electron microscopy (TEM). Moreover, niosomes were characterized in entrapment efficiency (EE) and releasing pattern. Male Wistar rats were... 

    Niosomal formulation for antibacterial applications

    , Article Journal of Drug Targeting ; Volume 30, Issue 5 , 2022 , Pages 476-493 ; 1061186X (ISSN) Mehrarya, M ; Gharehchelou, B ; Haghighi Poodeh, S ; Jamshidifar, E ; Karimifard, S ; Farasati Far, B ; Akbarzadeh, I ; Seifalian, A ; Sharif University of Technology
    Taylor and Francis Ltd  2022
    Abstract
    Infection is a disease that is mainly caused by different Gram-negative and Gram-positive bacteria. Treatment of infections requires a considerable amount of antibiotics, which can cause serious damage to the patient's body. Delivering the antibiotic only to the site of infection can prevent these destructive effects, such as the destruction of the normal intestinal flora. The drug delivery system through carriers will take antibiotics into a part of the body involved in the disease. Niosome nanoparticles, which have been made from non-ionic surfactants, have been emerging as ideal drug/antibiotics delivery vehicles. Recently, niosome formulations have been targeted to reduce toxicity and... 

    Anti-HER2 VHH targeted magnetoliposome for intelligent magnetic resonance imaging of breast cancer cells

    , Article Cellular and Molecular Bioengineering ; Volume 10, Issue 3 , 2017 , Pages 263-272 ; 18655025 (ISSN) Khaleghi, S ; Rahbarizadeh, F ; Ahmadvand, D ; Madaah Hosseini, H. R ; Sharif University of Technology
    Abstract
    The combination of liposomes with magnetic nanoparticles, because of their strong effect on T2 relaxation can open new ways in the innovative cancer therapy and diagnosis. In order to design an intelligent contrast agent in MRI, we chose anti-HER2 nanobody the smallest fully functional antigen-binding fragments evolved from the variable domain, the VHH, of a camel heavy chain-only antibody. These targeted magnetoliposomes bind to the HER2 antigen which is highly expressed on breast and ovarian cancer cells so reducing the side effects as well as increasing image contrast and effectiveness. Cellular iron uptake analysis and in vitro MRI of HER2 positive cells incubated with targeted... 

    A machine learning framework for predicting entrapment efficiency in niosomal particles

    , Article International Journal of Pharmaceutics ; Volume 627 , 2022 ; 03785173 (ISSN) Kashani Asadi Jafari, F ; Aftab, A ; Ghaemmaghami, S ; Sharif University of Technology
    Elsevier B.V  2022
    Abstract
    Niosomes are vesicles formed mostly by nonionic surfactant and cholesterol incorporation as an excipient. The drug entrapment efficiency of niosomal vesicles is particularly important and depends on many parameters. Changing the effective parameters to have maximum entrapment efficiency in the laboratory is time-consuming and costly. In this study, a machine learning framework was proposed to address these problems. In order to find the most critical parameter affecting the entrapment efficiency and its optimal value in a specific experiment, data were first extracted from articles of the last decade using keywords of niosome and thin-film hydration method. Then, deep neural network (DNN),... 

    PH-Sensitive stimulus-responsive nanocarriers for targeted delivery of therapeutic agents

    , Article Wiley Interdisciplinary Reviews: Nanomedicine and Nanobiotechnology ; Volume 8, Issue 5 , 2016 , Pages 696-716 ; 19395116 (ISSN) Karimi, M ; Eslami, M ; Sahandi Zangabad, P ; Mirab, F ; Farajisafiloo, N ; Shafaei, Z ; Ghosh, D ; Bozorgomid, M ; Dashkhaneh, F ; Hamblin, M. R ; Sharif University of Technology
    Wiley-Blackwell  2016
    Abstract
    In recent years miscellaneous smart micro/nanosystems that respond to various exogenous/endogenous stimuli including temperature, magnetic/electric field, mechanical force, ultrasound/light irradiation, redox potentials, and biomolecule concentration have been developed for targeted delivery and release of encapsulated therapeutic agents such as drugs, genes, proteins, and metal ions specifically at their required site of action. Owing to physiological differences between malignant and normal cells, or between tumors and normal tissues, pH-sensitive nanosystems represent promising smart delivery vehicles for transport and delivery of anticancer agents. Furthermore, pH-sensitive systems... 

    Nanotechnology in diagnosis and treatment of coronary artery disease

    , Article Nanomedicine ; Volume 11, Issue 5 , 2016 , Pages 513-530 ; 17435889 (ISSN) Karimi, M ; Zare, H ; Bakhshian Nik, A ; Yazdani, N ; Hamrang, M ; Mohamed, E ; Sahandi Zangabad, P ; Moosavi Basri, S. M ; Bakhtiari, L ; Hamblin, M. R ; Sharif University of Technology
    Future Medicine Ltd 
    Abstract
    Nanotechnology could provide a new complementary approach to treat coronary artery disease (CAD) which is now one of the biggest killers in the Western world. The course of events, which leads to atherosclerosis and CAD, involves many biological factors and cellular disease processes which may be mitigated by therapeutic methods enhanced by nanotechnology. Nanoparticles can provide a variety of delivery systems for cargoes such as drugs and genes that can address many problems within the arteries. In order to improve the performance of current stents, nanotechnology provides different nanomaterial coatings, in addition to controlled-release nanocarriers, to prevent in-stent restenosis.... 

    Preparation, physicochemical properties, in vitro evaluation and release behavior of cephalexin-loaded niosomes

    , Article International Journal of Pharmaceutics ; Volume 569 , 2019 ; 03785173 (ISSN) Ghafelehbashi, R ; Akbarzadeh, I ; Tavakkoli Yaraki, M ; Lajevardi, A ; Fatemizadeh, M ; Heidarpoor Saremi, L ; Sharif University of Technology
    Elsevier B.V  2019
    Abstract
    In this study, optimized cephalexin-loaded niosomal formulations based on span 60 and tween 60 were prepared as a promising drug carrier system. The niosomal formulations were characterized using a series of techniques such as scanning electron microscopy, Fourier transformed infrared spectroscopy, dynamic light scattering, and zeta potential measurement. The size and drug encapsulation efficiency are determined by the type and composition of surfactant. The developed niosomal formulations showed great storage stability up to 30 days with low change in size and drug entrapment during the storage, making them potential candidates for real applications. Moreover, the prepared niosomes showed... 

    A novel niosome formulation for encapsulation of anthocyanins and modelling intestinal transport

    , Article Food Chemistry ; Volume 293 , 2019 , Pages 57-65 ; 03088146 (ISSN) Fidan Yardimci, M ; Akay, S ; Sharifi, F ; Sevimli Gur, C ; Ongen, G ; Yesil Celiktas, O ; Sharif University of Technology
    Elsevier Ltd  2019
    Abstract
    The bioavailability of drugs can be improved by regulating the structural properties, particularly lipoid systems, such as niosomes, can increase cellular uptake. Herein, we optimized double emulsion and niosomal formulations for encapsulating anthocyanin-rich black carrot extract. Nanoparticles obtained by selected formulation were characterized in terms of morphology, particle size, drug encapsulation efficiency, in vitro release and cytotoxicity. The optimum conditions for niosomal formulation were elicited as 30 mg of cholesterol, 150 mg of Tween 20 and feeding time of 1 min at a stirring rate of 900 rpm yielding the lowest average particle size of 130 nm. In vitro release data showed...