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Ac-GCRDGPQGIWGQDRCG-OH
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Ac-GCRDGPQGIWGQDRCG-OH

Ref. 3D-PP45539

Taille indéfinieÀ demander
Livraison estimée en/au États-Unis, le vendredi 13 décembre 2024

Informations sur le produit

Nom :
Ac-GCRDGPQGIWGQDRCG-OH
Synonymes :
  • Ac-Gly-Cys-Arg-Asp-Gly-Pro-Gln-Gly-Ile-Trp-Gly-Gln-Asp-Arg-Cys-Gly-OH
Description :

Peptide Ac-GCRDGPQGIWGQDRCG-OH is a Research Peptide with significant interest within the field academic and medical research. This peptide is available for purchase at Cymit Quimica in multiple sizes and with a specification of your choice. Recent citations using Ac-GCRDGPQGIWGQDRCG-OH include the following: Engineering peptides in hydrogels for cartilage tissue regeneration Z Ye , J Elisseeff - Hybrid Biomaterials: A Reference for Material , 2010 - books.google.comhttps://books.google.com/books?hl=en&lr=&id=mOxpDQAAQBAJ&oi=fnd&pg=PA311&dq=(%22Ac-GCRDGPQGIWGQDRCG-OH%22+OR+%22Ac-Gly-Cys-Arg-Asp-Gly-Pro-Gln-Gly-Ile-Trp-Gly-Gln-Asp-Arg-Cys-Gly-OH%22+OR+%22GCRDGPQGIWGQDRCG%22)+AND+peptide&ots=AIi7NPd2sF&sig=F-jjLGlIFxBIrICqeV8S3dEHQlw Engineering peptides in hydrogels for cartilage tissue regeneration Z Ye , J Elisseeff - Hybrid Biomaterials: A Reference for Material , 2010 - books.google.comhttps://books.google.com/books?hl=en&lr=&id=mOxpDQAAQBAJ&oi=fnd&pg=PA311&dq=(%22Ac-GCRDGPQGIWGQDRCG-OH%22+OR+%22Ac-Gly-Cys-Arg-Asp-Gly-Pro-Gln-Gly-Ile-Trp-Gly-Gln-Asp-Arg-Cys-Gly-OH%22+OR+%22GCRDGPQGIWGQDRCG%22)+AND+peptide&ots=AIi7NPd2wJ&sig=52le5iEDnmCL122Nmh343yX54oI Implantable bioresponsive hydrogel prevents local recurrence of breast cancer by enhancing radiosensitivity Z Fu, H Li , P Xue, H Yu, S Yang, C Tao, W Li - in Bioengineering and , 2022 - frontiersin.orghttps://www.frontiersin.org/articles/10.3389/fbioe.2022.881544/full A synthetic MMP-sensitive PEG-based hydrogel for cartilage repair Y Park, M Lutolf , J Hubbell , E Hunziker - TRANSACTIONS OF THE , 2002 - ors.orghttps://www.ors.org/transactions/48/0296.pdf Bovine primary chondrocyte culture in synthetic matrix metalloproteinase-sensitive poly (ethylene glycol)-based hydrogels as a scaffold for cartilage repair Y Park , MP Lutolf , JA Hubbell , EB Hunziker - Tissue , 2004 - liebertpub.comhttps://www.liebertpub.com/doi/abs/10.1089/107632704323061870 MMP-responsive in situ forming hydrogel loaded with doxorubicin-encapsulated biodegradable micelles for local chemotherapy of oral squamous cell carcinoma W Li, C Tao, J Wang, Y Le, J Zhang - RSC advances, 2019 - pubs.rsc.orghttps://pubs.rsc.org/en/content/articlehtml/2019/ra/c9ra04343h Combination of three angiogenic growth factors has synergistic effects on sprouting of endothelial cell/mesenchymal stem cell-based spheroids in a 3D matrix SK Kim, J Lee, M Song , M Kim - Research Part B , 2016 - Wiley Online Libraryhttps://onlinelibrary.wiley.com/doi/abs/10.1002/jbm.b.33498 In vivo degradation behavior of enzyme-degradable poly (trimethylene carbonate)-based biohybrid networks of varying water content S Taghavi, BG Amsden - Biomedical Materials, 2020 - iopscience.iop.orghttps://iopscience.iop.org/article/10.1088/1748-605X/ab62ff/meta Peptides as 3D printable feedstocks: Design strategies and emerging applications RD Murphy , RV Garcia , A Heise , CJ Hawker - Progress in Polymer Science, 2022 - Elsevierhttps://www.sciencedirect.com/science/article/pii/S0079670021001349 Synthetic hydrogels for human intestinal organoid generation and colonic wound repair R Cruz-Acuaca±a , M Quiros , AE Farkas , PH Dedhia - Nature cell , 2017 - nature.comhttps://www.nature.com/articles/ncb3632 Integration of microfluidic chip with biomimetic hydrogel for 3D controlling and monitoring of cell alignment and migration KH Lee, KH Lee, J Lee, H Choi , D Lee - Research Part A, 2014 - Wiley Online Libraryhttps://onlinelibrary.wiley.com/doi/abs/10.1002/jbm.a.34772 In vivo evaluation of MMP sensitive high-molecular weight HA-based hydrogels for bone tissue engineering J Kim, IS Kim, TH Cho, HC Kim, SJ Yoon - Research Part A, 2010 - Wiley Online Libraryhttps://onlinelibrary.wiley.com/doi/abs/10.1002/jbm.a.32884 Biomaterials and biosensors in intestinal organoid culture, a progress review J Huang, Y Jiang, Y Ren , Y Liu, X Wu - Journal of Biomedical , 2020 - Wiley Online Libraryhttps://onlinelibrary.wiley.com/doi/abs/10.1002/jbm.a.36921 Microfluidic assay of endothelial cell migration in 3D interpenetrating polymer semi-network HA-Collagen hydrogel GS Jeong , GH Kwon, AR Kang, BY Jung, Y Park - Biomedical , 2011 - Springerhttps://link.springer.com/article/10.1007/s10544-011-9541-7 Blocking of matrix metalloproteinases-13 responsive peptide in poly (urethane urea) for potential cartilage tissue engineering applications G Wu , H Wang, J Xiao, L Wang, Y Ke - Journal of , 2018 - journals.sagepub.comhttps://journals.sagepub.com/doi/abs/10.1177/0885328217753414 NR2F2 regulates chondrogenesis of human mesenchymal stem cells in bioprinted cartilage G Gao, XF Zhang , K Hubbell - Biotechnology and , 2017 - Wiley Online Libraryhttps://onlinelibrary.wiley.com/doi/abs/10.1002/bit.26042 Inkjet-bioprinted acrylated peptides and PEG hydrogel with human mesenchymal stem cells promote robust bone and cartilage formation with minimal printhead G Gao, T Yonezawa, K Hubbell, G Dai - Biotechnology , 2015 - Wiley Online Libraryhttps://analyticalsciencejournals.onlinelibrary.wiley.com/doi/abs/10.1002/biot.201400635 Tough and Enzyme-Degradable Hydrogels G Chen, S Taghavi, D Marecak - Macromolecular , 2018 - Wiley Online Libraryhttps://onlinelibrary.wiley.com/doi/abs/10.1002/mame.201700162 JAGGED1 stimulates cranial neural crest cell osteoblast commitment pathways and bone regeneration independent of canonical NOTCH signaling A Kamalakar , JM McKinney, DS Duron , AM Amanso - Bone, 2021 - Elsevierhttps://www.sciencedirect.com/science/article/pii/S8756328220304373 Delivery of A Jagged1-PEG-MAL hydrogel with Pediatric Human Bone Cells Regenerates Critically-Sized Craniofacial Bone Defects A Kamalakar , B Tobin , S Kaimari, MH Robinson - bioRxiv, 2023 - biorxiv.orghttps://www.biorxiv.org/content/10.1101/2023.10.06.561291.abstract

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Propriétés chimiques

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Informations sur les risques

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