Coaxial 3D printing of hierarchical structured hydrogel scaffolds for repair of spinal cord injury
In vivo evaluation of bone scaffold fabricated by 3D bioprinting method by researchers of OmidAfrinan company
Fabrication of 3D printed hybrid scaffolds carrying dental pulp stem cells
Bioprinting Bone Constructs During Surgery
The beating of the first bioprinted human heart created from stem cells
۳D Bioprinted Multicellular Vascular Models
۳D Printed Punctal Plugs for Controlled Ocular Drug Delivery
Priming mesenchymal stem cells in vivo: A game-changer to treat myocardial infarction induced hearts
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Despite the great potential of mesenchymal stem cells in various regeneration therapies, their application to treat myocardial infarction (MI)–induced hearts is limited. In recent research by an international joint research team of POSTECH, Seoul St. Mary’s Hospital, and City...
Development of functional scaffolds for bone tissue engineering using 3D-bioprinting
- 3DBioprinting, Bioprinting Event, Workshops
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Extrusion-based 3D-printing is among the additive manufacturing (AM) techniques that have attracted much attention for the fabrication of bone tissue engineering scaffolds with defined geometries and internal structure. The aim of the studies performed in this thesis was to...
Development of high performance nano- bioink
- 3DBioprinting, Technology, Workshops
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Despite considerable development of bioprinting methods, real applications in tissue engineering are still limited due to challenges in development of a suitable bioink with high printability and cell viability. Therefore, we will host Dr. Zandi for the introduction of...
۳D-Bio Club: 3D Bioprinting novel applications
- 3DBioprinting, Bioprinting Event, Workshops
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Due to Covid-19 outbreak, OmidAfarinan team decided to hold an online webinar entitled “۳D Bioprinting Novel Applications” from “۳D-Bio Club” series. In this session, Mr. Majid Hajihosseinali as the co-founder and CEO at OmidAfarinan Company, will discuss the recent...
(A Handheld 3D Bioprinter is Developed to Reconstruct Volumetric Muscle Loss (VML
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Reconstructive surgery is yet not successful in the regeneration of volumetric muscle loss (VML). The defect geometry is patient dependent which limits the reliability of many common methods. 3D bioprinting, as a new emerging technology, can circumvent many of...
The importance of neural and muscular cells integration in 3D bioprinted skeletal muscle constructs
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Regenerative medicine has been promised regeneration of muscular constructs that mimic structural and functional characteristics of native skeletal muscles. Recently, scientists at Wake Forest Institute for Regenerative Medicine (WFIRM), have accelerated restoration of skeletal muscle through integration of neural...
A New Kit from Omiad Afarinan Company for Printing of Hollow and Core/Shell structures
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Nowadays, technologies such as 3D bioprinting boost the fabrication of various tissue and organ models. One of the challenging models is tubular structures preset in various body parts. Omid Afarinan company has recently provided an innovative kit named 3DbioHollow®...
Fabrication of Hydrogel Fibers with Controllable Biophysical and Biochemical Features
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Hydrogel structures with morphological features at microscale have various applications in tissue engineering and regenerative medicine due to their ability to induce cellular behavior in a controlled and desired manner. In a very recent study managed by Iranian researchers...
A New Product from Omiad Afarinan Company for Treatment of Bone Defects
- 3DBioprinting, Activities, Technology
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۳D printing can be used for many industrial and biomedical purposes. Omid Afarinan company has recently produced an innovative product named Cranio® for treatment of diseases such as craniosynostosis, hemifacial microsomia (HFM), and hypertelorism in which a person is inflicted...
۳D Bioprinting Technology in Plant Science: A New Approach
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Over the last decade, the development of technologies such as 3D bioprinting has engendered paradigm shift in many scientific areas including plant biology. For instance, 3D bioprinted constructs of plant cells or inspired by plants decipher information about single-cell,...
Experts at OmidAfarinan Mohandesi Ayande Hold Special Training Courses and Workshops
- Bioprinting Event, Technology, Workshops
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For the first time, the team of experts at OmidAfarinan Mohandesi Ayande, the first commercial group focusing on 3D Bioprinting in Iran, hold Special Training Courses and Workshops in the following context Training (Theoretical And Practical) Workshops Comprehensive Course...
Creation of full-thickness skin in the very near future using a new 3D bioprinting technique
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Scientists at the University of Huddersfield have pioneered the development of a new technique (named SLAM) for using 3D printing to produce soft gel medical implants customized to the needs of individual patients
Patient‐Specific 3D Bioprinted Model for treatment of pediatric cardiology
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In a collaboration between Georgia Tech, Emory and Children’s Healthcare of Atlanta, a patient‐specific 3D bioprinted model based on modified gelatin was developed for treatment of pediatric cardiology
The First International One-day Symposium on Additive Manufacturing and Bioprinting
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First International one-day symposium on Additive Manufacturing” will be held in Tehran at AmirKabir University of Technology on January 22, 2020. Major attractions of this event would revolve around workshop, oral presentations, competition and exhibition. 3D bioprinting competition and...
Creation of functional liver tissue in 90 days using 3D bioprinting
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Brizilian researchers have succeeded to create liver organoids using human blood cells. These mini-livers are able to perform all of the livers’ functions including production of vital proteins, storing vitamins, and bile secretion, to name a few. In this...
Unveiling the Latest Achievements of Omid Afarinan Mohandesi Ayandeh Company in the Field of 3D Bioprinting
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The latest achievements of Omid Afarinan Mohandesi Ayandeh company in the field of 3D Bioprinting have been unveiled at the 7th IranLabExpo (Laboratory Equipment and Chemicals Exhibition) in the presence of Dr. Sattari, Vice President for Science and Technology...
Time-Consuming And Cost-Effective Medical Testing Using A Microfluidic Kit, A New Product From Omid Afarinan Mohandesi Ayandeh Company
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Recently, the manufacture of microfluidic chips has been provided by researchers of Omid Afarinan Co. using 3D printing technology. With this modern technology, researchers are able to perform many experiments at low cost
: Bioprinting a wide range of biomaterials and cell lines are now possible with modular printheads provided by OmidAfarinan
- 3DBioprinting, Activities, Technology
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According to recent advances in bioprinting and to meet new needs from researchers, 3D-Bio introduced a new modular system for bioprinting a wide range of biomaterials. These printheads made 3D-Bio bioprinters one of the most flexible devices in the...
Conducted researches by Omid Afrinan BioPrinters customers caught the attention of researchers participating in the 4th international and 6th national Congress of Wound and Tissue Repair
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The 4th international and 6th national Congress of Wound and Tissue Repair was held at Razi Conference Hall of Iran University of Medical Sciences from 19 to 22 November. Among the latest achievements in the field of dermatology, wound...
A step closer to bone tissue engineering with aid of new Bioink manufactured by OmidAfarinan Co
- 3DBioprinting, Activities, News, Recently News, Technology
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Restoration of bone defects requires creative strategies that can be applied to the hierarchical structure of bone tissue from the nanoscale to the macro. For this purpose, we have to select materials that provide porous structures, with cell compatibility,...
Implantable blood vessels 3D bioprinted from human cells
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Researchers in South Korea have reported, 3D printed a biomimetic blood vessel – derived from human smooth muscle and endothelial cells – bringing 3D printed vascular structures a step closer to clinical use Reference
Harvard researchers have found SWIFT way to make 3D-printed organs more viable
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Researchers from the Wyss Institute and Harvard demonstrated a new biomanufacturing method, known as SWIFT, which uses stem-cell-derived OBB tissue matrices that exhibit the requisite cell density, microarchitecture, and function approaching that of native tissues. Reference
UNIVERSITY OF BIRMINGHAM RESEARCHERS DEVELOP SLAM 3D BIOPRINTING METHOD
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Researchers from the University of Birmingham have developed a new 3D printing method for soft materials which could enable the manufacture of artificial medical implants. Known as Suspended Layer Additive Manufacturing (SLAM), this technique uses a polymer-based hydrogel containing...
Invitation for the challenge of development of bioinks in bio-printing technology
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One of the most vital components in bio-printing is bio-ink. For this reason, the development of different inks with unique capabilities is very important. Following this, Convergent Technologies Strategic Center has been holding a competition called “The Challenge of...