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Cover Feature: Solid‐Phase Synthesis of Fluorinated Analogues of Glycosyl 1‐Phosphate Repeating Structures from Leishmania using the Phosphoramidite Method (ChemistryOpen 6/2018)

The Cover Feature shows the structure of the longest analogue of chemically synthesized glycosyl 1‐phosphate repeating structure from Leishmania. More information can be found in the Full Paper by R. Iwata Hara et al. on page 439 in Issue 6, 2018 (DOI: https://doi.org/10.1002/open.201800030).[Image:...

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Autores principales: Hara, Rintaro Iwata, Yaoita, Aya, Takeda, Katsuya, Ueki, Hiroaki, Ishii, Ayumu, Imoto, Hideyuki, Kobayashi, Satoshi, Sano, Michi, Noro, Mihoko, Sato, Kazuki, Wada, Takeshi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5987814/
http://dx.doi.org/10.1002/open.201800067
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author Hara, Rintaro Iwata
Yaoita, Aya
Takeda, Katsuya
Ueki, Hiroaki
Ishii, Ayumu
Imoto, Hideyuki
Kobayashi, Satoshi
Sano, Michi
Noro, Mihoko
Sato, Kazuki
Wada, Takeshi
author_facet Hara, Rintaro Iwata
Yaoita, Aya
Takeda, Katsuya
Ueki, Hiroaki
Ishii, Ayumu
Imoto, Hideyuki
Kobayashi, Satoshi
Sano, Michi
Noro, Mihoko
Sato, Kazuki
Wada, Takeshi
author_sort Hara, Rintaro Iwata
collection PubMed
description The Cover Feature shows the structure of the longest analogue of chemically synthesized glycosyl 1‐phosphate repeating structure from Leishmania. More information can be found in the Full Paper by R. Iwata Hara et al. on page 439 in Issue 6, 2018 (DOI: https://doi.org/10.1002/open.201800030).[Image: see text]
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spelling pubmed-59878142018-06-20 Cover Feature: Solid‐Phase Synthesis of Fluorinated Analogues of Glycosyl 1‐Phosphate Repeating Structures from Leishmania using the Phosphoramidite Method (ChemistryOpen 6/2018) Hara, Rintaro Iwata Yaoita, Aya Takeda, Katsuya Ueki, Hiroaki Ishii, Ayumu Imoto, Hideyuki Kobayashi, Satoshi Sano, Michi Noro, Mihoko Sato, Kazuki Wada, Takeshi ChemistryOpen Cover Pictures The Cover Feature shows the structure of the longest analogue of chemically synthesized glycosyl 1‐phosphate repeating structure from Leishmania. More information can be found in the Full Paper by R. Iwata Hara et al. on page 439 in Issue 6, 2018 (DOI: https://doi.org/10.1002/open.201800030).[Image: see text] John Wiley and Sons Inc. 2018-05-09 /pmc/articles/PMC5987814/ http://dx.doi.org/10.1002/open.201800067 Text en © 2018 Wiley‐VCH Verlag GmbH & Co. KGaA, Weinheim
spellingShingle Cover Pictures
Hara, Rintaro Iwata
Yaoita, Aya
Takeda, Katsuya
Ueki, Hiroaki
Ishii, Ayumu
Imoto, Hideyuki
Kobayashi, Satoshi
Sano, Michi
Noro, Mihoko
Sato, Kazuki
Wada, Takeshi
Cover Feature: Solid‐Phase Synthesis of Fluorinated Analogues of Glycosyl 1‐Phosphate Repeating Structures from Leishmania using the Phosphoramidite Method (ChemistryOpen 6/2018)
title Cover Feature: Solid‐Phase Synthesis of Fluorinated Analogues of Glycosyl 1‐Phosphate Repeating Structures from Leishmania using the Phosphoramidite Method (ChemistryOpen 6/2018)
title_full Cover Feature: Solid‐Phase Synthesis of Fluorinated Analogues of Glycosyl 1‐Phosphate Repeating Structures from Leishmania using the Phosphoramidite Method (ChemistryOpen 6/2018)
title_fullStr Cover Feature: Solid‐Phase Synthesis of Fluorinated Analogues of Glycosyl 1‐Phosphate Repeating Structures from Leishmania using the Phosphoramidite Method (ChemistryOpen 6/2018)
title_full_unstemmed Cover Feature: Solid‐Phase Synthesis of Fluorinated Analogues of Glycosyl 1‐Phosphate Repeating Structures from Leishmania using the Phosphoramidite Method (ChemistryOpen 6/2018)
title_short Cover Feature: Solid‐Phase Synthesis of Fluorinated Analogues of Glycosyl 1‐Phosphate Repeating Structures from Leishmania using the Phosphoramidite Method (ChemistryOpen 6/2018)
title_sort cover feature: solid‐phase synthesis of fluorinated analogues of glycosyl 1‐phosphate repeating structures from leishmania using the phosphoramidite method (chemistryopen 6/2018)
topic Cover Pictures
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5987814/
http://dx.doi.org/10.1002/open.201800067
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