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  • Cooperative Effects  (1)
  • Dermatology  (1)
  • 1
    Keywords: Neurofibromatoses genetics ; Neurofibromatoses physiopathology ; Dermatology ; Genetics ; Genomics ; Molecular Biology ; Neurology ; Neurosurgery ; Pediatrics
    Description / Table of Contents: The neurofibromatoses are autosomal-dominant genetic disorders of the nervous system that primarily affect the development and growth of neural cell tissue. These disorders cause tumors to grow on nerves and produce other abnormalities such as skin changes and bone deformities. In recent years, the genes and mutations causing neurofibromatoses have been identified. The main types of neurofibromatoses, type 1 (NF1) and type 2 (NF2), have been shown to be distinctive disorders both clinically and genetically. More recently, allelic and non-allelic subtypes of NF1 have been defined as well as the NF2-related condition schwannomatosis. Many of the complex molecular mechanisms leading to the neurofibromatoses have been elucidated, resulting in a growing body of publications which are difficult to keep up with.This volume provides an important overview of recent findings on the neurofibromatoses. It focuses on the genetics and molecular biology underlying these diseases, but also covers their clinical features, diagnosis and treatment, stressing the need for interdisciplinary medical care. With contributions by the foremost investigators in the field, this timely book will appeal to geneticists, genetic counselors, pediatricians, neurologists and oncologists
    Type of Medium: Online Resource
    Pages: X + 192 S
    Edition: Online-Ausg. Online-Ressource Karger eBooks Collection 1997-2009
    ISBN: 9783805585217
    Series Statement: Monographs in human genetics 16
    RVK:
    Language: English
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  • 2
    ISSN: 0009-2940
    Keywords: Biaryls ; Boron ; Chirality ; Cooperative Effects ; Lewis acids ; Chemistry ; Inorganic Chemistry
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Notes: A number of Lewis acid binaphthyl systems, substituted in 2-or 2,2′-position, are synthesized by lithiation of 2,2′-dibromo-1,l ′-binaphthyl (5), followed by addition of various electrophiles. Stepwise lithiation and subsequent borylation with trimethyl borate leads to the bromoboronic acid 6, which can be stabilized by esterification with pinacol giving 7. By increasing the reaction mixture to 2 equiv. of n-butyllithium and 2 equiv. of methyl borate the path to the binaphthylmonoboronic acid ester 9 is opened up. A further increase in the quantity of electrophile also leads to the binaphthylbisboronic acid ester 12. The 2,2′-disubstituted silyl, germyl, and stannyl derivatives 13a-15a are accessible in good yields. Treatment with boron halides leads exclusively to methyl/halogen exchange, giving the bidentate Lewis acids 13b-15b, the former of which can be bridged by oxygen.Only in case of the bis(tributylstannyl)binaphthyl 16a does ipso substitution occur in the presence of boron trichloride, giving the bis(dichloroboryl)-substituted binaphthyl 16b which can then be hydrolysed to 11. The structures of the majority of the compounds were investigated by X-ray diffraction. In case of the 2,2′-disubstituted compounds 13a-15a the naphthyl groups are orientated perpendicular to each other. The intra- and intermolecular interactions are dominated by this binaphthyl system. In case of the oxygenbridged compounds 13c and 14c the angle between the naphthyl planes decreases to about 70°. This also has an effect on the packing of the molecule; in this instance the orientation of two naphthyl in neighbouring molecules is nearly parallel. The structure of the diboronic acid is dominated by intra- and intermolecular hydrogen bonding.
    Additional Material: 3 Ill.
    Type of Medium: Electronic Resource
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