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maxiloplastia · 4 years ago
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Exodoncia de #cordales😤🤳, Procedimiento relativamente sencillo en manos expertas #maxilofacial. Duración procedimeinto 15 minutos #stemcells, Aqui existen 4 valiosas fuentes de células madre que como cirujanos podemos aislar y aplicar a pacientes que las necesitan #hDPSCs. #maxiloplastia, #tipscirubucal 💯😷 (at Bogotá, Colombia) https://www.instagram.com/p/CS10OK7L9a0/?utm_medium=tumblr
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researchgmi · 3 years ago
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Bioglass Fiber Market share by application, 2021 & 2027
Over the recent years, an extensive array of bioglass benefits including good osteostimulativity, osteoconductivity, mechanical strength, and degradability have been instrumental in unlocking critical growth opportunities for bioglass fiber market players across the orthopedics application. Upon implantation into the body, these products effectively reinforce the bonding between hard and soft tissues, promote the formation of dense HA (hydroxyapatite) layer on the surface, and rapidly combine with bone tissue for inducing and accelerating the process of bone growth.
These properties of bioactive glass have propelled an increase in studies pertaining to BG application in numerous orthopedic areas comprising BG bone cement, BG nanoparticles, BG coating, BG nanofibers, drug and biological factor-load BG, BG scaffolds, injectable BG-based hydrogels/pastes, metal ion-loaded BG, and others. Similar initiatives are expected to augment bioglass fiber market size, which is anticipated to surpass USD 15.3 million by 2027, according to Global Market Insights Inc.
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Here are a few key trends that are slated to stimulate the business landscape in the near future:
Rising demand for borate-based glass and glass ceramic products
While the market revenue from borate-based glass is estimated to exhibit a CAGR of 9% through the estimated period, the glass ceramic segment is expected to account for an appreciable valuation through 2027.
This growth can be attributed to the mounting adoption of glass ceramics in dental care products including corrosion inhibitors and filler materials. Optimum bone-grafting ability and good biocompatibility are additional factors expected to push product demand over the coming years.
Growing research activities pertaining to dental application
Numerous organizations are taking a keen interest in conducting research initiatives centered on the applicability of bioglass fiber in the field of dental care. One such study, published in May 2021, aimed at investigating the bioactivity and cytotoxicity of a novel nanocomposite containing nBGs (nanoparticles of bioactive glass) on human dental pulp stem cells (hDPSCs).
The research found that the use of nBG/BD not only enabled hDPSC proliferation and attachment but also escalated the expression of ALP in mineral-producing cells. The findings are slated to create opportunities for the deployment of nBG/BD in vital pulp therapies.
Europe bioglass fiber market: Increasing number of product approvals to drive business landscape in the region
The European region has recorded an upsurge in the approval of newly developed products by regulatory bodies across various countries. For instance, in May 2021, Prosidyan, Inc., secured two CE Marks for its FIBERGRAFT BG Morsels, FIBERGRAFT BG Putty GPS, and FIBERGRAFT BG Putty. Made from proprietary micro- and nano-sized bioactive glass fibers, the FIBERGRAFT substitute provides numerous advantages such as optimized rates of resorption, high surface area, and direct connectivity.
Steps taken by leading industry players: A brief overview
Major companies in the bioglass fiber industry comprise Mo-Sci Corporation (The Heraeus Group), Vetra Biomaterials, Corbion Biotech, Inc., Prosidyan, Inc., ETS Wound Care LLC., and others. These participants are depicting a greater inclination towards the implementation of strategic initiatives including collaborative agreements, mergers, and acquisitions for consolidating their position in the market.
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For instance, in September 2021, The Heraeus Group acquired ETS Technology Holdings LLC and Mo-Sci Corporation. The move strengthened the group’s healthcare and medical technology portfolio, which comprises market leadership in the supply of medical devices and components.
In a nutshell, the increasing product adoption across healthcare systems in developed countries, owing to multiple benefits such as voluntary funding, government schemes, and attractive medical insurances, is expected to bolster bioglass fiber market share through the forthcoming years.
Notable participants in the Bioglass Fiber Market include: Corbion Biotech, Inc., Mo-Sci Corporation, ETS Wound Care LLC., Prosidyan, Inc., and Vetra Biomaterials.
About Global Market Insights
Global Market Insights Inc., headquartered in Delaware, U.S., is a global market research and consulting service provider, offering syndicated and custom research reports along with growth consulting services. Our business intelligence and industry research reports offer clients with penetrative insights and actionable market data specially designed and presented to aid strategic decision making. These exhaustive reports are designed via a proprietary research methodology and are available for key industries such as chemicals, advanced materials, technology, renewable energy, and biotechnology.
Contact Us Arun Hegde Corporate Sales, USA Global Market Insights Inc. Phone: 1-302-846-7766 Toll-Free: 1-888-689-0688 Email: [email protected]
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rnomics · 7 years ago
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IJMS, Vol. 19, Pages 2434: Cholinergic Nerve Differentiation of Mesenchymal Stem Cells Derived from Long-Term Cryopreserved Human Dental Pulp In Vitro and Analysis of Their Motor Nerve Regeneration Potential In Vivo
The reduction of choline acetyltransferase, caused by the loss of cholinergic neurons, leads to the absence of acetylcholine (Ach), which is related to motor nerve degeneration. The aims of the present study were to evaluate the in vitro cholinergic nerve differentiation potential of mesenchymal stem cells from cryopreserved human dental pulp (hDPSCs-cryo) and to analyze the scale of in vivo motor nerve regeneration. The hDPSCs-cryo were isolated and cultured from cryopreserved dental pulp tissues, and thereafter differentiated into cholinergic neurons using tricyclodecane-9-yl-xanthogenate (D609). Differentiated cholinergic neurons (DF-chN) were transplanted into rats to address sciatic nerve defects, and the scale of in vivo motor nerve regeneration was analyzed. During in vitro differentiation, the cells showed neuron-like morphological changes including axonal fibers and neuron body development, and revealed high expression of cholinergic neuron-specific markers at both the messenger #RNA (#mRNA) and protein levels. Importantly, DF-chN showed significant Ach secretion ability. At eight weeks after DF-chN transplantation in rats with sciatic nerve defects, notably increased behavioral activities were detected with an open-field test, with enhanced low-affinity nerve growth factor receptor (p75NGFR) expression detected using immunohistochemistry. These results demonstrate that stem cells from cryopreserved dental pulp can successfully differentiate into cholinergic neurons in vitro and enhance motor nerve regeneration when transplanted in vivo. Additionally, this study suggests that long-term preservation of dental pulp tissue is worthwhile for use as an autologous cell resource in the field of nerve regeneration, including cholinergic nerves. http://bit.ly/2OJybtA #MDPI
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realtimeslive · 7 years ago
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Stem Cells Extracted from Baby Teeth Can Help Regrow Dental Tissues
Stem Cells Extracted from Baby Teeth Can Help Regrow Dental Tissues
Dental stem cells extracted from baby teeth can help in the regeneration of dental tissues, reports a new study. The findings of the study are published in the journal Science Translational Medicine.
Sometimes kids trip and fall, and their teeth take the hit. Nearly half of children suffer some injury to a tooth during childhood. When that trauma affects an immature permanent tooth, it can…
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ct3ch · 7 years ago
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Baby tooth stem cells could regrow kids' dental tissue
Baby tooth stem cells could regrow kids’ dental tissue
If you injure a tooth as a kid, there’s a real chance you’ll grow up with a ‘dead’ tooth whose roots didn’t grow properly due to tissue damage. However, scientists have conducted a successful trial for a method that could regrow kids’ dental tissue using stem cellsfrom their baby teeth. The team extracted human deciduous pulp stem cells (hDPSC) from patients’ healthy baby teeth, allowed…
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