Seidel Ulrike, Baumhof Elena, Hägele Franziska A, Bosy-Westphal Anja, Birringer Marc, Rimbach Gerald
Kiel University, Institute of Human Nutrition and Food Science, Devision of Food Science, 24118, Kiel, Germany.
Fulda University of Applied Science, Devision of Nutritional, Food and Consumer Science, 36037, Fulda, Germany.
Mol Nutr Food Res. 2019 Jul;63(13):e1900039. doi: 10.1002/mnfr.201900039. Epub 2019 May 21.
Lithium is an important trace element in human nutrition and medicine. Mineral and medicinal waters may represent a significant source of dietary lithium intake.
The lithium concentration of 360 German mineral and 21 medicinal waters is determined. Based on a systematic screening, three different mineral waters exhibiting low (1.7 µg L ), medium (171 µg L ), and high lithium (1724 µg L ) concentrations are chosen for an acute bioavailability study in male healthy volunteers. In Germany, a north-east to south-west gradient of analyzed lithium concentrations is observed in the 381 tested waters. The lithium concentration in the water is significantly correlated with its sodium (r = 0. 810), potassium (r = 0.716), and magnesium (r = 0.361), but not with its calcium concentration. In a randomized cross-over trial, volunteers (n = 3×10 each) drink 1.5 L of the respective mineral waters, and lithium concentrations in serum and urine are monitored over 24 h. Consumption of the mineral waters with a medium and high lithium content results in a dose-dependent response in serum lithium concentrations and total urinary lithium excretion.
Lithium-rich mineral and medicinal waters may be an important and highly bioavailable lithium source for human consumption.
锂是人类营养和医学中的一种重要微量元素。矿泉水和药用矿泉水可能是膳食锂摄入的重要来源。
测定了360种德国矿泉水和21种药用矿泉水的锂浓度。基于系统筛选,选择了三种锂浓度分别为低(1.7微克/升)、中(171微克/升)和高(1724微克/升)的不同矿泉水,在健康男性志愿者中进行急性生物利用度研究。在德国,在所检测的381种矿泉水中观察到锂浓度从东北向西南呈梯度变化。水中的锂浓度与其钠(r = 0.810)、钾(r = 0.716)和镁(r = 0.361)浓度显著相关,但与钙浓度无关。在一项随机交叉试验中,志愿者(每组n = 3×10)饮用1.5升各自的矿泉水,并在24小时内监测血清和尿液中的锂浓度。饮用锂含量中等和高的矿泉水会导致血清锂浓度和尿锂总排泄量呈剂量依赖性反应。
富含锂的矿泉水和药用矿泉水可能是人类消费的重要且生物利用度高的锂源。