Curtin Health Innovation Research Institute, Faculty of Health Sciences, Curtin University, Perth, WA, Australia.
Curtin Medical School, Faculty of Health Sciences, Curtin University, Perth, WA, Australia.
Anal Bioanal Chem. 2023 Mar;415(7):1357-1369. doi: 10.1007/s00216-023-04527-8. Epub 2023 Jan 27.
Despite its critical role in neurodevelopment and brain function, vitamin D (vit-D) homeostasis, metabolism, and kinetics within the central nervous system remain largely undetermined. Thus, it is of critical importance to establish an accurate, highly sensitive, and reproducible method to quantitate vit-D in brain tissue. Here, we present a novel liquid chromatography tandem mass spectrometry (LC-MS/MS) method and for the first time, demonstrate detection of seven major vit-D metabolites in brain tissues of C57BL/6J wild-type mice, namely 1,25(OH)D, 3-epi-1,25(OH)D, 1,25(OH)D, 25(OH)D, 25(OH)D, 24,25(OH)D, and 24,25(OH)D. Chromatographic separation was achieved on a pentaflurophenyl column with 3 mM ammonium formate water/methanol [A] and 3 mM ammonium formate methanol/isopropanol [B] mobile phase components. Detection was by positive ion electrospray tandem mass spectrometry with the EVOQ elite triple quadrupole mass spectrometer with an Advance ultra-high-performance liquid chromatograph and online extraction system. Calibration standards of each metabolite prepared in brain matrices were used to validate the detection range, precision, accuracy, and recovery. Isotopically labelled analogues, 1,25(OH)D-d, 25(OH)D-c, and 24,25(OH)D-d, served as the internal standards for the closest molecular-related metabolite in all measurements. Standards between 1 fg/mL and 10 ng/mL were injected with a resulting linear range between 0.001 and 1 ng, with an LLOD and LLOQ of 1 pg/mL and 12.5 pg/mL, respectively. The intra-/inter-day precision and accuracy for measuring brain vit-D metabolites ranged between 0.12-11.53% and 0.28-9.11%, respectively. Recovery in acetonitrile ranged between 99.09 and 106.92% for all metabolites. Collectively, the sensitivity and efficiency of our method supersedes previously reported protocols used to measure vit-D and to our knowledge, the first protocol to reveal the abundance of 25(OH)D, 1,25(OH)D, and 24,25(OH)D, in brain tissue of any species. This technique may be important in supporting the future advancement of pre-clinical research into the function of vit-D in neurophysiological and neuropsychiatric disorders, and neurodegeneration.
尽管维生素 D(vit-D)在神经发育和大脑功能中起着关键作用,但中枢神经系统内的 vit-D 动态平衡、代谢和动力学仍在很大程度上尚未确定。因此,建立一种准确、高度敏感和可重复的方法来定量检测脑组织中的 vit-D 非常重要。在这里,我们提出了一种新的液相色谱串联质谱(LC-MS/MS)方法,并首次证明可以在 C57BL/6J 野生型小鼠的脑组织中检测到七种主要的 vit-D 代谢物,即 1,25(OH)D、3-epi-1,25(OH)D、1,25(OH)D、25(OH)D、25(OH)D、24,25(OH)D 和 24,25(OH)D。通过使用 pentaflurophenyl 柱和 3 mM 甲酸铵水/甲醇[A]和 3 mM 甲酸铵甲醇/异丙醇 [B]流动相成分实现色谱分离。检测采用正离子电喷雾串联质谱法,使用 EVOQ elite 三重四极杆质谱仪和在线提取系统。每种代谢物的校准标准均在脑基质中制备,用于验证检测范围、精密度、准确度和回收率。在所有测量中,同位素标记的类似物 1,25(OH)D-d、25(OH)D-c 和 24,25(OH)D-d 作为最接近分子相关代谢物的内标。以 1 fg/mL 至 10 ng/mL 浓度注射标准品,线性范围在 0.001 至 1 ng 之间,LLOQ 和 LLOD 分别为 1 pg/mL 和 12.5 pg/mL。测量脑 vit-D 代谢物的日内/日间精密度和准确度在 0.12-11.53%和 0.28-9.11%之间。所有代谢物在乙腈中的回收率在 99.09-106.92%之间。总的来说,我们的方法的灵敏度和效率超过了之前用于测量 vit-D 的报道方案,并且据我们所知,这是第一个揭示任何物种脑组织中 25(OH)D、1,25(OH)D 和 24,25(OH)D 丰度的方案。该技术可能对支持未来 vit-D 在神经生理学和神经精神疾病以及神经退行性变中的功能的临床前研究的进展很重要。