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Dietary squalene modifies plasma lipoproteins and hepatic cholesterol metabolism in rabbits . Roberto Martínez-Beamonte, Javier Sánchez-Marco, María J. Felices, Cristina Barranquero, Sonia Gascón, Carmen Arnal, Juan C. Burillo, Roberto Lasheras, Rebeca Busto, Miguel A. Lasunción, María Jesús Rodríguez-Yoldi, Jesús Osada
, Food Funct.
, 2021
, 12
, 8141
275. Studies in the sterol group. Part XLII. The constitution of zymosterol . B. Heath-Brown, I. M. Heilbron, E. R. H. Jones
, J. Chem. Soc.
, 1940
, 1482
Inhibition of SC4MOL and HSD17B7 shifts cellular sterol composition and promotes oligodendrocyte formation . Matthew J Pleshinger, Ryan M. Friedrich, Zita Hubler, Adrianna M. Rivera-León, Farrah Gao, David Yan, Joel L. Sax, Ramya Srinivasan, Ilya Bederman, H. Elizabeth Shick, Paul J. Tesar, Drew J. Adams
, RSC Chem. Biol.
, 2022
, 3
, 56
51. The application of the method of molecular rotation differences to steroids. Part VII. Olefinic unsaturation at the 8(9)-position . D. H. R. Barton, J. D. Cox
, J. Chem. Soc.
, 1949
, 214
144. Steroids and related compounds. Part XI. Some derivatives of zymosterol . W. J. Adams, V. Petrow, R. Royer
, J. Chem. Soc.
, 1951
, 678
Formula index
, J. Chem. Soc.
, 1940
, 1603
Index of subjects, 1940
, J. Chem. Soc.
, 1940
, 1586
213. The application of the method of molecular rotation differences to steroids. Part I. Naturally occurring sterols and their simple derivatives . D. H. R. Barton
, J. Chem. Soc.
, 1945
, 813
101. The application of the method of molecular rotation differences to steroids. Part II. Unsaturated sterols and their derivatives . D. H. R. Barton
, J. Chem. Soc.
, 1946
, 512
Organic chemistry . J. C. Smith, T. Henshall, H. B. Watson, D. H. Hey, E. R. H. Jones, T. S. Stevens, F. S. Spring
, Annu. Rep. Prog. Chem.
, 1940
, 37
, 194