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Sharp graphite tips for nanotechnology applications – Cambridge…
https://www.enterprise.cam.ac.uk/reagents/sharp-graphite-tips-for-nanotechnology-applications/9 May 2022: Sharp graphite tips have been developed in the lab of Dr Amalio Fernandez-Pacheco at the University of Cambridge using a three-step polishing method.
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Tetrabutylammonium…
https://www.enterprise.cam.ac.uk/reagents/tetrabutylammonium-4methyl-22bipyridin-5ylmethanesulfonate/9 May 2022: Tetrabutylammonium (4'methyl-[2,2'bipyridin]-5yl)methanesulfonate is a ligand for iridium to control regioselectivity of iridium-catalysed borylation
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Sheep immunoglobulin G monoclonal antibody SIg 375
https://www.enterprise.cam.ac.uk/reagents/sheep-immunoglobulin-g-monoclonal-antibody-sig-375/9 May 2022: Hybridoma cell line producing SIg 375 antibodies raised against sheep immunoglobulin G which are mouse monoclonal antibodies of the IgG isotype.
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Sheep immunoglobulin G monoclonal antibody SIg 482
https://www.enterprise.cam.ac.uk/reagents/sheep-immunoglobulin-g-monoclonal-antibody-sig-482/9 May 2022: Hybridoma cell line producing SIg 482 antibodies raised against sheep immunoglobulin G which are mouse monoclonal antibodies of the IgG isotype.
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Sheep immunoglobulin G monoclonal antibody SIg 743
https://www.enterprise.cam.ac.uk/reagents/sheep-immunoglobulin-g-monoclonal-antibody-sig-743/9 May 2022: Hybridoma cell line producing SIg 743 antibodies raised against sheep immunoglobulin G which are mouse monoclonal antibodies of the IgG isotype.
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Nyobolt: Supercharging the electric revolution – Cambridge Enterprise
https://www.enterprise.cam.ac.uk/case-studies/nyobolt-supercharging-the-electric-revolution/11 Apr 2022: Nyobolt is a University spin out from the Yusuf Hamied Department of Chemistry, commercialising a novel ultra-high power battery technology
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The Chris Abell Postdoc Business Plan Competition 2022 – Cambridge…
https://www.enterprise.cam.ac.uk/events/the-chris-abell-postdoc-business-plan-competition-2022/3 May 2022: The Chris Abell Postdoc Business Plan Competition is a programme designed to help accelerate the creation of businesses from University research.
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KARPAS 620 Human Plasma Cell Leukaemia cell line
https://www.enterprise.cam.ac.uk/reagents/karpas-620-human-plasma-cell-leukaemia-cell-line/9 May 2022: KARPAS 620 Human Plasma Cell Leukemia cell line useful in oncology research, developed at the University of Cambridge.
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Human HLA-class I monoclonal antibody YTH 862.2
https://www.enterprise.cam.ac.uk/reagents/human-hla-class-i-monoclonal-antibody-yth-862-2/9 May 2022: Hybridoma cell line producing YTH 862.2 antibodies raised against human HLA-class I which are rat monoclonal antibodies of the IgG2b isotype.
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Human insulin receptor monoclonal antibody IR CT-1
https://www.enterprise.cam.ac.uk/reagents/human-insulin-receptor-monoclonal-antibody-ir-ct-1/9 May 2022: Hybridoma cell line producing IR CT-1 antibodies against the C-terminal portion of the human insulin receptor beta subunit, which are of the IgG1 isotype.
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Ceres Agri-Tech Partnership – Cambridge Enterprise
https://www.enterprise.cam.ac.uk/case-studies/ceres-a-rich-harvest-of-agri-tech-projects/11 Apr 2022: This initiative links the Universities of Cambridge, Lincoln, Reading, Hertfordshire, and East Anglia to drive commercialisation of agri-tech research and innovation.
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Human insulin receptor monoclonal antibody IR 83-7
https://www.enterprise.cam.ac.uk/reagents/human-insulin-receptor-monoclonal-antibody-ir-83-7/9 May 2022: Hybridoma cell line producing IR 83-7 antibodies raised against the human insulin receptor, which are mouse monoclonal antibodies of the IgG1 isotype.
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Human insulin receptor monoclonal antibody IR CT-3
https://www.enterprise.cam.ac.uk/reagents/human-insulin-receptor-monoclonal-antibody-ir-ct-3/9 May 2022: Hybridoma cell line producing IR CT-3 antibodies against the C-terminal portion of the human insulin receptor beta subunit, which are of the IgG1 isotype.
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Human insulin receptor monoclonal antibody IR 47-9
https://www.enterprise.cam.ac.uk/reagents/human-insulin-receptor-monoclonal-antibody-ir-47-9/9 May 2022: Hybridoma cell line producing IR 47-9 antibodies raised against the alpha subunit of the human insulin receptor,which are monoclonals of the IgG1 isotype.
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New grafting technique published in Nature - Cambridge Enterprise
https://www.enterprise.cam.ac.uk/news/research-supported-by-cambridge-enterprise-and-ceres-agri-tech-published-in-nature/16 Mar 2022: New grafting techniqe supported by Cambridge Enterprise and Ceres Agri-Tech could combat Cavendish banana disease
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Human insulin receptor monoclonal antibody IR 18-45
https://www.enterprise.cam.ac.uk/reagents/human-insulin-receptor-monoclonal-antibody-ir-18-45/9 May 2022: Hybridoma cell line producing IR 18-45 antibodies against the beta subunit N-terminal region of the human insulin receptor, which are of the IgG1 isotype.
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Human insulin receptor monoclonal antibody IR 18-43
https://www.enterprise.cam.ac.uk/reagents/human-insulin-receptor-monoclonal-antibody-ir-18-43/9 May 2022: Hybridoma cell line producing IR 18-43 antibodies against the beta subunit N-terminal region of the human insulin receptor, which are of the IgG2a isotype.
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Human insulin receptor monoclonal antibody IR 18-42
https://www.enterprise.cam.ac.uk/reagents/human-insulin-receptor-monoclonal-antibody-ir-18-42/9 May 2022: Hybridoma cell line producing IR 18-42 antibodies against the beta subunit N-terminal region of the human insulin receptor, which are of the IgG2b isotype.
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Human insulin receptor monoclonal antibody IR 18-44
https://www.enterprise.cam.ac.uk/reagents/human-insulin-receptor-monoclonal-antibody-ir-18-44/9 May 2022: Hybridoma cell line producing IR 18-44 antibodies raised against beta subunit of the human insulin receptor which are mouse monoclonals of IgG2b isotype.
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Human insulin receptor monoclonal antibody IR 83-14
https://www.enterprise.cam.ac.uk/reagents/human-insulin-receptor-monoclonal-antibody-ir-83-14/9 May 2022: Hybridoma cell line producing IR 83-14 antibodies against the alpha subunit of the human insulin receptor, which are mouse monoclonals of the IgG2a isotype.
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