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  • Transparent nanocomposite coatings based on epoxy and layered double hydroxide: Nonisothermal cure kinetics and viscoelastic behavior assessments

    Publication
    • H. Rastin
    • M. Saeb
    • M. Nonahal
    • M. Shabanian
    • H. Vahabi
    • K. Formela
    • X. Gabrion
    • F. Seidi
    • P. Zarrintaj
    • M. Sari
    • P. Laheurte

    - PROGRESS IN ORGANIC COATINGS - Year 2017

    Layered double hydroxide (LDH) has a particular place in clay family because of its flame retardant action. The nanoplatelet-like structure of LDH makes possible development of polymer composites with cationic or anionic nature structures in which macromolecules are positioned in between nanoplatelet galleries. In this work, neat epoxy and its transparent nanocomposite coatings with sodium dodecylbenzene sulfonate (SDBS)-modified...

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  • Green products from herbal medicine wastes by subcritical water treatment

    Publication
    • F. Seidi
    • M. K. Yazdi
    • M. Jouyandeh
    • S. Habibzadeh
    • M. T. Munir
    • H. Vahabi
    • B. Bagheri
    • N. Rabiee
    • P. Zarrintaj
    • M. Saeb

    - JOURNAL OF HAZARDOUS MATERIALS - Year 2022

    Herbal medicine wastes (HMWs) are byproducts of medicine factories, which are mainly landfilled for their environmental problems. Only bearing in mind the contamination and concerns caused by the COVID-19 pandemic and environmental emissions, the worth of herbal medicine wastes management and conversion to green products can be understood. In this work, subcritical water treatment was carried out batch-wise in a stainless tube...

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  • Crystalline Polysaccharides: A Review

    Publication
    • F. Seidi
    • M. K. Yazdi
    • M. Jouyandeh
    • S. Habibzadeh
    • M. T. Munir
    • H. Vahabi
    • B. Bagheri
    • N. Rabiee
    • P. Zarrintaj
    • M. Saeb

    - CARBOHYDRATE POLYMERS - Year 2021

    The biodegradability and mechanical properties of polysaccharides are dependent on their architecture (linear or branched) as well as their crystallinity (size of crystals and crystallinity percent). The amount of crystalline zones in the polysaccharide significantly governs their ultimate properties and applications (from packaging to biomedicine). Although synthesis, characterization, and properties of polysaccharides have been...

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  • Mussel‐inspired biomaterials: From chemistry to clinic

    Publication
    • A. Taghizadeh
    • M. Taghizadeh
    • M. K. Yazdi
    • P. Zarrintaj
    • J. D. Ramsey
    • F. Seidi
    • F. J. Stadler
    • H. Lee
    • M. Saeb
    • M. Mozafari

    - Bioengineering & Translational Medicine - Year 2022

    After several billions of years, nature still makes decisions on its own to identify, develop, and direct the most effective material for phenomena/challenges faced. Likewise, and inspired by the nature, we learned how to take steps in developing new technologies and materials innovations. Wet and strong adhesion by Mytilidae mussels (among which Mytilus edulis—blue mussel and Mytilus californianus—California mussel are the most...

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  • The Taste of Waste: The Edge of Eggshell Over Calcium Carbonate in Acrylonitrile Butadiene Rubber

    Publication
    • E. S. Bhagavatheswaran
    • A. Das
    • H. Rastin
    • H. Saeidi
    • S. H. Jafari
    • H. Vahabi
    • H. Khonakdar
    • K. Formela
    • M. Jouyandeh
    • P. Zarrintaj
    • M. Saeb

    - JOURNAL OF POLYMERS AND THE ENVIRONMENT - Year 2019

    Rubber technology experiences a new age by the use of biowaste or natural fillers. In this regard, taking properties of reinforcing agents from biowaste fillers remains as the challenging matter. Chicken eggshell (ES) biowaste has recently been introduced to substitute calcium carbonate (CaCO3) duo to its superior properties and low price. In this work, composites based on acrylonitrile butadiene rubber (NBR) reinforced with ES...

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  • Green Polymer Nanocomposites for Skin Tissue Engineering

    Publication

    - ACS Applied Bio Materials - Year 2022

    Fabrication of an appropriate skin scaffold needs to meet several standards related to the mechanical and biological properties. Fully natural/green scaffolds with acceptable biodegradability, biocompatibility, and physiological properties quite often suffer from poor mechanical properties. Therefore, for appropriate skin tissue engineering and to mimic the real functions, we need to use synthetic polymers and/or additives as complements...

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  • Polylysine for Skin Regeneration: A Review of Recent Advances and Perspectives

    Publication
    • P. Zarrintaj
    • S. Ghorbani
    • M. Barani
    • N. P. Singh Chauhan
    • M. Khodadadi Yazdi
    • M. Saeb
    • J. D. Ramsey
    • M. R. Hamblin
    • M. Mozafari
    • E. Mostafavi

    - Bioengineering & Translational Medicine - Year 2022

    There have been several attempts to find promising biomaterials for skin regeneration, among which polylysine (a homopolypeptide) has shown benefits in the regeneration and treatment of skin disorders. This class of biomaterials has shown exceptional abilities due to their macromolecular structure. Polylysine-based biomaterials can not only be used as tissue engineering scaffolds for skin regeneration, but also as drug carriers...

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  • Adsorption onto zeolites: molecular perspective

    Publication
    • A. Salmankhani
    • F. Seidi
    • A. Hamed Mashhadzadeh
    • P. Zarrintaj
    • S. Habibzadeh
    • A. Mohaddespour
    • N. Rabiee
    • E. C. Lima
    • M. Shokouhimehr
    • R. S. Varma
    • M. Saeb

    - CHEMICAL PAPERS - Year 2021

    2D minerals are among key elements of advanced systems, but the need for understanding their interactions/reactions with materials and systems in which they are involved necessitates tracking their molecular and atomic monitoring. Zeolitic structures are microporous materials formed in the nature through volcanic activities or synthesis. Because of their outstanding physicochemical properties like cation exchange capacity and excellent...

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  • Chitosan-based inks for 3D printing and bioprinting

    Publication
    • M. Taghizadeh
    • A. Taghizadeh
    • M. K. Yazdi
    • P. Zarrintaj
    • F. J. Stadler
    • J. D. Ramsey
    • S. Habibzadeh
    • G. Naderi
    • M. Saeb
    • M. Mozafari
    • U. Schubert

    - GREEN CHEMISTRY - Year 2022

    The advent of 3D-printing/additive manufacturing in biomedical engineering field has introduced great potential for the preparation of 3D structures that can mimic native tissues. This technology has accelerated the progress in numerous areas of regenerative medicine, especially led to a big wave of biomimetic functional scaffold developments for tissue engineering demands. In recent years, the introduction of smart bio-inks has...

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  • Clickable polysaccharides for biomedical applications: A comprehensive review

    Publication
    • M. Khodadadi Yazdi
    • S. M. Sajadi
    • F. Seidi
    • N. Rabiee
    • Y. Fatahi
    • M. Rabiee
    • C. M. Dominic
    • P. Zarrintaj
    • K. Formela
    • M. Saeb
    • S. A. Bencherif

    - PROGRESS IN POLYMER SCIENCE - Year 2022

    Recent advances in materials science and engineering highlight the importance of designing sophisticated biomaterials with well-defined architectures and tunable properties for emerging biomedical applications. Click chemistry, a powerful method allowing specific and controllable bioorthogonal reactions, has revolutionized our ability to make complex molecular structures with a high level of specificity, selectivity, and yield...

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  • Comparative review of piezoelectric biomaterials approach for bone tissue engineering

    Publication
    • A. Samadi
    • M. A. Salati
    • A. Safari
    • M. Jouyandeh
    • M. Barani
    • N. P. Singh Chauhan
    • E. G. Golab
    • P. Zarrintaj
    • S. Kar
    • F. Seidi... and 2 others

    - JOURNAL OF BIOMATERIALS SCIENCE-POLYMER EDITION - Year 2022

    Bone as a minerals’ reservoir and rigid tissue of the body generating red and white blood cells supports various organs. Although the self-regeneration property of bone, it cannot regenerate spontaneously in severe damages and still remains as a challenging issue. Tissue engineering offers several techniques for regenerating damaged bones, where various biomaterials are examined to fabricate scaffolds for bone repair. Piezoelectric...

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  • Poloxamer: A versatile tri-block copolymer for biomedical applications

    Publication
    • P. Zarrintaj
    • J. D. Ramsey
    • A. Samadi
    • Z. Atoufi
    • M. K. Yazdi
    • M. Ganjali
    • L. M. Amirabad
    • E. Zangene
    • M. Farokhi
    • K. Formela... and 3 others

    - Acta Biomaterialia - Year 2020

    Poloxamers, also called Pluronic, belong to a unique class of synthetic tri-block copolymers containing central hydrophobic chains of poly(propylene oxide) sandwiched between two hydrophilic chains of poly(ethylene oxide). Some chemical characteristics of poloxamers such as temperature-dependent self-assembly and thermo-reversible behavior along with biocompatibility and physiochemical properties make poloxamer-based biomaterials...

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  • Electrically Conductive Carbon‐based (Bio)‐nanomaterials for Cardiac Tissue Engineering

    Publication
    • N. Jalilinejad
    • M. Rabiee
    • N. Baheiraei
    • R. Ghahremanzadeh
    • R. Salarian
    • N. Rabiee
    • O. Akhavan
    • P. Zarrintaj
    • A. Hejna
    • M. Saeb... and 4 others

    - Bioengineering & Translational Medicine - Year 2023

    A proper self-regenerating capability is lacking in human cardiac tissue which along with the alarming rate of deaths associated with cardiovascular disorders makes tissue engineering critical. Novel approaches are now being investigated in order to speedily overcome the challenges in this path. Tissue engineering has been revolutionized by the advent of nanomaterials, and later by the application of carbon-based nanomaterials...

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  • Biopolymer-based composites for tissue engineering applications: A basis for future opportunities

    Publication
    • P. Zarrintaj
    • F. Seidi
    • M. Youssefi Azarfam
    • M. Khodadadi Yazdi
    • A. Erfani
    • M. Barani
    • N. P. S. Chauhan
    • N. Rabiee
    • T. Kuang
    • J. Kucińska-Lipka... and 2 others

    - COMPOSITES PART B-ENGINEERING - Year 2023

    Biomimetic scaffolds supporting tissue regeneration are complex materials with multifunctional characteristics. The unique biocompatibility and biodegradability of biopolymers make them excellent candidates for tissue engineering and regenerative medicine. Biopolymers, which have a wide range of properties, can be obtained from different natural sources. Depending on the target tissue, biopolymers can be engineered to meet a series...

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  • Polysaccharide-based Nanocomposites for Biomedical Applications: A Critical Review

    Publication
    • H. Shokrani
    • A. Shokrani
    • S. M. Sajadi
    • M. Khodadadi Yazdi
    • F. Seidi
    • M. Jouyandeh
    • P. Zarrintaj
    • S. Kar
    • S. Kim
    • T. Kuang... and 4 others

    - Nanoscale Horizons - Year 2022

    Polysaccharides (PSA) are taking specific position among biomaterials for advanced applications in medicine. Nevertheless, poor mechanical properties is known as the main drawback of PSA, which highlights need for PSA modification. Nanocomposites PSA (NPSA) are a class of biomaterials widely used as biomedical platforms, but despite their importance and worldwide use have not been reviewed. Herein we critically reviewed application...

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  • Anti-fouling and permeable polyvinyl chloride nanofiltration membranes embedded by hydrophilic graphene quantum dots for dye wastewater treatment

    Publication
    • V. Vatanpour
    • S. Mousavi
    • M. Masteri-Farahani
    • N. Mosleh
    • M. Ganjali
    • A. Badiei
    • E. Pourbashir
    • A. Mashhadzadeh
    • M. Tajammal
    • G. Mahmodi... and 5 others

    - Journal of Water Process Engineering - Year 2020

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  • COVID‐19: A systematic review and update on prevention, diagnosis, and treatment

    Publication
    • H. Aghamirza Moghim Aliabadi
    • R. Eivazzadeh‐Keihan
    • A. Beig Parikhani
    • S. Fattahi Mehraban
    • A. Maleki
    • S. Fereshteh
    • M. Bazaz
    • A. Zolriasatein
    • B. Bozorgnia
    • S. Rahmati... and 11 others

    - MedComm - Year 2022

    Since the rapid onset of the COVID-19 or SARS-CoV-2 pandemic in the world in 2019, extensive studies have been conducted to unveil the behavior and emission pattern of the virus in order to determine the best ways to diagnosis of virus and thereof formulate effective drugs or vaccines to combat the disease. The emergence of novel diagnostic and therapeutic techniques considering the multiplicity of reports from one side and contradictions...

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  • Positive electrostatic therapy of metastatic tumors: selective induction of apoptosis in cancer cells by pure charges

    Publication
    • A. Zandi
    • S. Rafizadeh‐Tafti
    • F. Shojaeian
    • M. Ali
    • F. Abbasvandi
    • M. Faranoush
    • R. Anbiaee
    • S. Najafikhoshnoo
    • P. Hoseinpour
    • S. Assadi... and 18 others

    - Cancer Medicine - Year 2021

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