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44R. Stomberg, V. Langer and K. Lundquist.
A second polymorph of (+)-pinoresinol-dioxane (1/1), Acta Cryst. (2004). E60, o81-o83Â Â Â Â Timothy D. H. Bugg, Mark Ahmad, Elizabeth M. Hardiman and Rahman Rahmanpour.
Pathways for degradation of lignin in bacteria and fungi, Nat. Prod. Rep., 2011, 28, 1883. Liming Zhang, Gunnar Henriksson and Göran Gellerstedt.
The formation of ß–ß structures in lignin biosynthesis—are there two different pathways?, Org. Biomol. Chem., 2003, 1, 3621. Hoon Kim, John Ralph, Fachuang Lu, Sally A. Ralph, Alain-M. Boudet, John J. MacKay, Ronald R. Sederoff, Takashi Ito, Shingo Kawai, Hideo Ohashi and Takayoshi Higuchi.
NMR analysis of lignins in CAD-deficient plants. Part 1. Incorporation of hydroxycinnamaldehydes and hydroxybenzaldehydes into lignins, Org. Biomol. Chem., 2003, 1, 268. Kamal-Eldin Afaf, Moazzami Ali, Washi Sidiga.
Sesame Seed Lignans: Potent Physiological Modulators and Possible Ingredients in Functional Foods & Nutraceuticals, Recent Patents on Food, Nutrition & Agriculturee, 2011 Davin Laurence B., Bedgar Diana L., Katayama Takeshi, Lewis Norman G..
On the stereoselective synthesis of (+)-pinoresinol in Forsythia suspensa from its achiral precursor, coniferyl alcohol, Phytochemistry, 1992 Teponno Rémy Bertrand, Kusari Souvik, Spiteller Michael.
Recent advances in research on lignans and neolignans, Nat. Prod. Rep., 2016 Anticarcinogenic compounds of olive oil and related biomarkers, European Journal of Nutrition Structural Effect of Lignans and Sesamol on Polymerization of Soybean Oil at Frying Temperature, Journal of the American Oil Chemists' Society Chemical structures of constituents from the flowers of Osmanthus fragrans var. aurantiacus, Journal of Natural Medicines