#ArticleoftheWeek published by ScienceDirect.com Exciting advancements in #iPSC research for clinical applications! A new guide has been published, providing valuable insights into the clinical application of induced pluripotent stem cells (#iPSCs). The authors emphasize the critical importance of well-established workflows to ensure consistency and reliability in #research and #therapeutic use. Quality matters! The guide highlights that the quality of the starting material is paramount for successful outcomes in iPSC-based #treatments. For those in the field, this guide is a must-read to stay at the forefront of #iPSCresearch and its clinical #applications. Read the full article here: https://lnkd.in/eDnHNrQm Congratulations to: Hannah W. Song , Jennifer Solomon, Kapil Bharti, Amanda Mack Nisha Durand, Ph.D, Emmanuelle Cameau, Diana Patzelt, PhD, Arwen Hunter, PhD Gary Soh, Brianna Schoen, Matthew Marsh, Christopher Bravery, Cenk Sumen, Dominic Clarke, Uma Lakshmipathy, Julie G. Allickson, PhD #iPSC #StemCells #ClinicalResearch #Biotechnology #HealthcareInnovation
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🔬 Exciting Research Alert! 🔬 This month, we’re excited to spotlight STEMCELL Technologies' latest breakthroughs in human induced pluripotent stem cells (#iPSCs) line generation. Standing at the forefront of #biomedicalresearch, human iPSCs offer unparalleled potential in disease modeling, drug discovery, and regenerative medicine. However, reproducible research with human iPSCs depends on thoroughly characterized and quality-controlled iPSC lines and cell banks. Unlock your research potential with STEMCELL’s latest article to understand some common challenges for iPSC users, the importance of standardizing data reporting and quality control measures, and ways to address these challenges for the best chance of success for your research goals. #ResearchExcellence #ScientificInnovation #ScientificAdvancements #SupplierOrchestration
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Learn how to ensure reproducibility in research using human pluripotent stem cell models in this Science Exchange article: https://bit.ly/3VC6vg6
🔬 Exciting Research Alert! 🔬 This month, we’re excited to spotlight STEMCELL Technologies' latest breakthroughs in human induced pluripotent stem cells (#iPSCs) line generation. Standing at the forefront of #biomedicalresearch, human iPSCs offer unparalleled potential in disease modeling, drug discovery, and regenerative medicine. However, reproducible research with human iPSCs depends on thoroughly characterized and quality-controlled iPSC lines and cell banks. Unlock your research potential with STEMCELL’s latest article to understand some common challenges for iPSC users, the importance of standardizing data reporting and quality control measures, and ways to address these challenges for the best chance of success for your research goals. #ResearchExcellence #ScientificInnovation #ScientificAdvancements #SupplierOrchestration
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Checkout the Biolaminin 521 CTG™ Cell Culture Substrate by BioLamina — available now at FroggaBio! Enhance your cell culture with this innovative product that provides a stable and defined environment for pluripotent stem cell expansion. 🐸🧪🧫 LEARN MORE: https://hubs.li/Q022WbqP0 The Biolaminin 521 CTG™ is a cutting-edge solution for researchers and scientists looking to optimize their cell culture conditions. With its unique formulation, it offers superior performance in maintaining the pluripotency and self-renewal of stem cells. This product is ideal for various applications, including regenerative medicine, drug discovery, and disease modeling. Take your research to the next level with Biolaminin 521 CTG™! 💡🔬 #StemCells #CellCulture #PluripotentStemCells #RegenerativeMedicine #DrugDiscovery #DiseaseModeling #CellExpansion #ScientificResearch #CellTherapy #Biolaminin #Biolaminin521 #CellBiology #CellBasedAssays #CellularResearch #TissueEngineering #BiomedicalResearch #Innovation #AdvancedTechnology #Academics #Academia #Research #Researchstudy #Scientific #Science #Biology #Biotechnology #Biotech #Lifescience #Lifesciences #FroggaBio
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Checkout the Biolaminin 521 CTG™ Cell Culture Substrate by BioLamina — available now at FroggaBio! Enhance your cell culture with this innovative product that provides a stable and defined environment for pluripotent stem cell expansion. 🐸🧪🧫 LEARN MORE: https://hubs.li/Q02FDpY70 The Biolaminin 521 CTG™ is a cutting-edge solution for researchers and scientists looking to optimize their cell culture conditions. With its unique formulation, it offers superior performance in maintaining the pluripotency and self-renewal of stem cells. This product is ideal for various applications, including regenerative medicine, drug discovery, and disease modeling. Take your research to the next level with Biolaminin 521 CTG™! 💡🔬 #StemCells #CellCulture #PluripotentStemCells #RegenerativeMedicine #DrugDiscovery #DiseaseModeling #CellExpansion #ScientificResearch #CellTherapy #Biolaminin #Biolaminin521 #CellBiology #CellBasedAssays #CellularResearch #TissueEngineering #BiomedicalResearch #Innovation #AdvancedTechnology #Academics #Academia #Research #Researchstudy #Scientific #Science #Biology #Biotechnology #Biotech #Lifescience #Lifesciences #FroggaBio
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🌟 Excited to share the Editor’s Choice Paper, Volume 9 Issue 3: Cell Culture Process Scale-Up Challenges for Commercial-Scale Manufacturing of Allogeneic Pluripotent Stem Cell Products. 🥼 This paper is authored by Brian Lee, Sunghoon Jung, Yas Hashimura, Maximilian Lee, Breanna Borys, Tiffany Dang, Michael Kallos, Carlos A. V. Rodrigues, Teresa Silva and Joaquim Cabral. 💡 There are various challenges related to manufacturing PSCs in single-use bioreactors, particularly at larger volumetric scales. This manuscript addresses these challenges and presents potential solutions to alleviate the anticipated bottlenecks for commercial-scale manufacturing of high-quality therapeutic cells derived from PSCs. Welcome to view this paper here👉 : https://lnkd.in/gpt6TpXB. #allogeneic_cell_therapy #induced_pluripotent_stem_cell #human_embryonic_stem_cell #cell_aggregate #expansion #differentiation #scalable_manufacturing #scale_up #bioreactor #vertical_wheel #computational_fluid_dynamics #shear_stress #homogeneous #hydrodynamic #oxygenation #medium_exchange
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Advances in cell therapy have offered countless patients diverse treatment alternatives, especially for previously intractable diseases such as osteoarthritis, autoimmune and infectious diseases, and neurological disorders. However, obtaining high-quality raw materials – such as mesenchymal stem cells (MSCs) – remains challenging as traditional methods of isolating MSCs from bone marrow aspirate (BMA) are complex, time-consuming and yield poor results. Researchers from SMART’s Critical Analytics for Manufacturing Personalized-Medicine (CAMP) IRG, alongside collaborators from the A*STAR - Agency for Science, Technology and Research Bioprocessing Technology Institute (BTI) and National University Health System (NUHS) have developed a technology capable of extracting MSCs directly from BMA ten times faster and with double the yield. This novel method enables quicker drug production in cell therapy manufacturing and shortens the aspiration process for bone marrow donors. Learn more in the team's research paper and infographic below! https://lnkd.in/gCmtjG2G #SMARTMIT #CAMP #MIT #MedicalInnovation #CellTherapyAdvancement
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PhD Candidate at Harvard University in the Biological Sciences in Public Health Program; NIH NRSA NCI F31 Fellow
Excited to advertise an upcoming webinar hosted by Proteintech! REGISTER NOW by clicking on the post. Curious about iPSCs? Are you a stem cell biologist just gearing up to start culturing those iPSCs? This webinar is for you to get ahead of the game and get some quick tips from one of the experts in the field, Dr. Max Friesen from the Whitehead Institute at MIT. Get a quick and informative insight into what it's like to to culture induced pluripotent stem cells. You do not need to be a stem cell biology expert to join this webinar. If you are curious to what iPSC technologies can contribute to the world of science? Hop into our webinar! Don't need basic advice but need to ask a question to the speaker about more complex iPSC questions? Join the live Q&A! See you there! #stemcells #iPSCs #inducedpluripotentstemcells
We understand just how finicky culturing induced pluripotent stem cells (iPSCs) can be. If you’re looking for expert level tips, join us on April 16th as Dr. Max Friesen shares his insights on how to successfully culture iPSCs. Dr. Friesen will cover topics such as harvesting, media formulation, maintenance, differentiation protocols, troubleshooting, and more! All attendees will also be eligible to receive a free sample of one of our HumanKine proteins! Register today: https://ow.ly/iIly50R4ztc #ipsc #cellculture #phdchat #phdlife #scicomm
(Register Here) Best Practices and Techniques for Culturing iPSCs
ptglab.com
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BREAKING NEWS! HBRF is thrilled to share our latest peer-reviewed publication in Frontiers in Medicine, entitled “Safety of multiple intravenous infusions of adipose-derived mesenchymal stem cells for hospitalized cases of COVID-19: a randomized controlled trial.” This is HBRF’s second peer-reviewed piece on work in COVID, and demonstrates that even an acute population found the intervention safe and tolerable. Read the manuscript at https://lnkd.in/gRU_Yix8 #covid #covid19 #clinicalresearch #celltherapy #biotech #published
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