Citation:
Qiuli Yao, Anjun Wang. 解密食物中的化学反应[J]. University Chemistry,
;2022, 37(1): 210401.
doi:
10.3866/PKU.DXHX202104019
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民以食为天。然而,鲜有中文文献专业、系统地介绍与食物相关的化学反应,这无疑导致化学课程的教学脱离现实生活,阻碍了大众透过现象看到食物背后的本质。因此,本文重点介绍了为食物带来独特美味及色泽的非酶褐变反应,主要包括焦糖反应、美拉德反应、维生素C的氧化反应等;并从化学的角度探讨食物中与医学相关的分子转变现象,如食盐中碘在体内的转化,反式脂肪酸对健康的影响,酒精的代谢过程等。使化学课程的教学密切联系现实生活,为化学与食品科学、医学等学科之间架起桥梁。
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[1]
-
[2]
-
[3]
Corzo-Martínez, M.; Corzo, N.; Villamiel, M.; Dolores del Castillo, M. Food Biochemistry and Food Processing, 2nd ed.; Wiley-Blackwell:Ames, Iowa, USA, 2012; pp. 56-83.
-
[4]
Mossine, V. V.; Mawhinney, T. P. Adv. Carbohydr. Chem. Biochem. 2010, 64, 291.
-
[5]
-
[6]
Mottram, D. S.; Wedzicha, B. L.; Dodson, A. T. Nature 2002, 419, 448.
-
[7]
Stadler, R. H.; Blank, I.; Varga, N.; Robert, F.; Hau, J.; Guy, P. A. Nature 2002, 419, 449.
-
[8]
-
[9]
Lottenberg, A. M.; Afonso Mda, S.; Lavrador, M. S.; Machado, R. M.; Nakandakare, E. R. J. Nutr. Biochem. 2012, 23, 1027.
-
[10]
Garaycoechea, J. I.; Crossan, G. P.; Langevin, F.; Mulderrig, L.; Louzada, S.; Yang, F.; Guilbaud, G.; Park, N.; Roerink, S.; Nik-Zainal, S.; et al. Nature 2018, 553, 171.
-
[11]
Joshi, A. U.; Van Wassenhove, L. D.; Logas, K. R.; Minhas, P. S.; Andreasson, K. I.; Weinberg, K. I.; Chen, C. H.; Mochly-Rosen, D. Acta Neuropathol. Com. 2019, 7, 190.
-
[12]
Suzuki, A.; Katoh, H.; Komura, D.; Kakiuchi, M.; Tagashira, A.; Yamamoto, S.; Tatsuno, K.; Ueda, H.; Nagae, G.; Fukuda, S.; et al. Sci. Adv. 2020, 6, eaav9778.
-
[13]
Griswold, M. G.; Fullman, N.; Hawley, C.; Arian, N.; Zimsen, S. R. M.; Tymeson, H. D.; Venkateswaran, V.; Tapp, A. D.; Forouzanfar, M. H.; Salama, J. S.; et al. Lancet 2018, 392, 1015.
-
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