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cytokinins (3) 3
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Polymer, ISSN 0032-3861, 10/2015, Volume 77, pp. 387 - 398
Nanofibers are utilized in crucial biomedical applications owing to their unique properties, including an enormous surface-to-volume ratio. Here, we report the... 
Electrospinning | Chemical modification | Immuno-nanofibers | POLYMER SCIENCE | DRUG-DELIVERY SYSTEM | NANOFIBROUS MEMBRANES | ELECTROSPUN | PROLIFERATION | IMMOBILIZATION | FIBERS | IN-VITRO | BIOTIN | SURFACE | SCAFFOLDS | Tissue engineering | Analysis | Stem cells | Biotin | Polyols | Acylation | Integrins | Viral antibodies | Polyethylene glycol | Antibodies | Biomedical engineering | Binding | Conjugates | Decomposition | Nanofibers | Adhesion | Polyvinyl alcohols
Journal Article
Journal of Plant Growth Regulation, ISSN 0721-7595, 11/2009, Volume 28, Issue 4, pp. 341 - 348
The influences of three different aromatic cytokinin derivatives [6-benzylaminopurine, meta-topolin, and 6-(3-methoxybenzylamino)purine-9--D-ribofuranoside... 
IAA | Cytokinins | Micropropagation | Rooting | Wild service tree | Ethylene | ADVENTITIOUS ROOT-FORMATION | BENZYLADENINE | IN-VITRO ORGANOGENESIS | STEM | PLANT SCIENCES | AUXIN | METABOLISM | BIOLOGICAL-ACTIVITY | FOREST TREE | GROWTH | Metabolites | Chemical plants | Developmental biology | Derivatives
Journal Article
Journal of Molecular Structure, ISSN 0022-2860, 2010, Volume 975, Issue 1, pp. 376 - 380
The crystal and molecular structure of 6-(furfurylamino)-9-(tetrahydropyran-2-yl)purine ( 1) was determined at 150(2) K. The compound crystallizes in... 
Aging | X-ray structure analysis | Cytokinin | Stability-in-solution | Kinetin derivative | NMR analysis | KINETIN | PURINES | ADENOSINE-ANALOGS | CHEMISTRY, PHYSICAL | CYTOKININS | AGONISTS | Molecular structure | Methyl alcohol | Crystallization | X-rays | Reflection | Nuclear magnetic resonance | Carbon | Crystal structure
Journal Article
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