Film formation and some structural features of hemicellulose fractions from Pinus densiflora leaves
Author:
Publisher
Springer Science and Business Media LLC
Subject
Biomaterials
Link
http://link.springer.com/content/pdf/10.1007/s10086-014-1440-0.pdf
Reference28 articles.
1. Arai M, Fujimoto K, Hashimoto T, Takishima T, Koya S (1987) Studies on the constituents of Pinus densiflora Sieb. et Zucc. leaves: on the ethanol-extractable amino acids (in Japanese). Yakugaku Zasshi 107:279–286
2. Ogasawara R (1974) Changes of chemical constituents in leaves of Pinus densiflora trees according to tree age and leaf age (in Japanese). Fac Agr Tottori Univ 56:271–275
3. Yokouchi Y, Ambe Y, Fuwa K (1981) The relationship of the monoterpene composition in the atmosphere, the foliar emission gas and the leaf oil of Pinus densiflora. Chemosphere 10:209–213
4. Kim YS, Shin DH (2005) Volatile components and antibacterial effects of pine needle (Pinus densiflora S. and Z.) extracts. Food Microbiol 22:37–45
5. Jo JR, Park JS, Park YK, Chae YZ, Lee GH, Park GY, Jang BC (2012) Pinus densiflora leaf essential oil induces apoptosis via ROS generation and activation of caspases in YD-8 human oral cancer cells. Int J Oncol 40:1238–1245
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