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https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3433840/
Oct 07, 2011 · Cationic polyfluorenes for intracellular delivery of proteins ... In the research described here, we investigated how the simple, and readily accessible, cationic polyfluorenes might function with respect to import of proteins into living cells. Proteins of different sizes and pI values were used, ...Author: Anyanee Kamkaew, Rola Barhoumi, Robert C. Burghardt, Kevin Burgess
https://www.researchgate.net/publication/51574944_Cationic_polyfluorenes_for_intracellular_delivery_of_proteins
Cationic polyfluorenes for intracellular delivery of proteins Article (PDF Available) in Organic & Biomolecular Chemistry 9(19):6513-8 · August 2011 with 1,366 Reads How we measure 'reads'
https://pubs.rsc.org/en/content/articlelanding/2011/ob/c1ob05874f#!
Two cationic polyfluorene derivatives, quaternary amine 1 and guanidine 2 sheathed systems, were prepared as potential carriers to mediate import of proteins into cells without requiring covalent attachment to the protein. Neither polymer showed significant cytotoxicities (IC50 …
http://europepmc.org/articles/PMC3433840
Oct 01, 2011 · Intracellular localization of the proteins featured in this study (GFP, β-galactosidase, and avidin) is of little interest. However, others focused on the delivery of more significant proteins might now consider import using these fluorescent polymers, and the quaternary amine 1 system in particular.
https://research.utwente.nl/en/publications/cationic-polymers-for-intracellular-delivery-of-proteins
Many therapeutic proteins exert their pharmaceutical action inside the cytoplasm or onto individual organelles inside the cell. Intracellular protein delivery is considered to be the most direct, fastest and safest approach for curing gene-deficiency diseases, enhancing vaccination and triggering cell transdifferentiation processes, within other curative applications.Author: G.M.J.P.C. Coué, Johannes F.J. Engbersen
https://www.thermofisher.com/order/catalog/product/89850
Thermo Scientific Pierce Protein Transfection Reagent (formerly Pro-Ject) is a cationic lipid mixture for complexation with proteins, peptides, antibodies and other biologically active molecules to allow their direct intracellular delivery.Features of Protein Transfection Reagent: No need to isolate
https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4333297/
A Cell-Permeable Fluorescent Polymeric Thermometer for Intracellular Temperature Mapping in Mammalian Cell Lines ... Heitz F, Divita G (2001) A peptide carrier for the delivery of biologically active proteins into mammalian cells. Nat ... Kamkaew A, Barhoumi R, Burghardt RC, Burgess K (2011) Cationic polyfluorenes for intracellular delivery of ...Author: Teruyuki Hayashi, Nanaho Fukuda, Seiichi Uchiyama, Noriko Inada
https://www.researchgate.net/publication/5769581_Efficient_intracellular_delivery_of_functional_proteins_using_cationic_polymer_coreshell_nanoparticles
Efficient intracellular delivery of functional proteins using cationic polymer core/shell nanoparticles Article in Biomaterials 29(9):1224-32 · April 2008 with 60 Reads How we measure 'reads'
https://pubs.acs.org/doi/10.1021/cb600127m
Intracellular delivery of bioactive molecules using arginine-rich peptides, including oligoarginine and HIV-1 Tat peptides, is a recently developed technology. Here, we report a dramatic change in the methods of internalization for these peptides brought about by the presence of pyrenebutyrate, a counteranion bearing an aromatic hydrophobic moiety. In the absence of pyrenebutyrate, endocytosis ...Author: Toshihide Takeuchi, Michie Kosuge, Akiko Tadokoro, Yukio Sugiura, Mayumi Nishi, Mitsuhiro Kawata, Na...
https://pubs.rsc.org/en/content/articlelanding/2013/bm/c3bm00178d
A new intracellular protein delivery nanocarrier with protein stabilizing ability was constructed of cationic amphiphilic polysaccharide nanoballs. Amphiphilic enzymatically synthesized glycogen (ESG) made by modification of hydrophobic cholesterol groups to ESG, which is a monodispersed spherical hyper-branAuthor: Haruko Takahashi, Yoshiro Tahara, Shin-ichi Sawada, Kazunari Akiyoshi
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