Dipartimento di Chimica, Università degli Studi di Bari Aldo Moro, Campus Universitario, Via E. Orabona, 4, 70126 Bari, Italy.
Centro Interdipartimentale di Spettrometria di MAssa per Ricerche Tecnologiche (SMART), Università degli Studi di Bari Aldo Moro, Campus Universitario, Via E. Orabona, 4, 70126 Bari, Italy.
Int J Mol Sci. 2024 May 29;25(11):5919. doi: 10.3390/ijms25115919.
While edible algae might seem low in fat, the lipids they contain are crucial for good health and preventing chronic diseases. This study introduces a binary matrix to analyze all the polar lipids in both macroalgae (Wakame-, Dulse-, and Nori- spp.) and microalgae (Spirulina-, and Chlorella-) using matrix-assisted laser desorption ionization mass spectrometry (MALDI-MS). The key lies in a new dual matrix made by combining equimolar amounts of 1,5-diaminonaphthalene (DAN) and 9-aminoacridine (9AA). This combination solves the limitations of single matrices: 9AA is suitable for sulfur-containing lipids and acidic phospholipids, while DAN excels as an electron-transfer secondary reaction matrix for intact chlorophylls and their derivatives. By employing the equimolar binary matrix, a wider range of algal lipids, including free fatty acids, phospholipids, glycolipids, pigments, and even rare arsenosugarphospholipids were successfully detected, overcoming drawbacks related to ion suppression from readily ionizable lipids. The resulting mass spectra exhibited a good signal-to-noise ratio at a lower laser fluence and minimized background noise. This improvement stems from the binary matrix's ability to mitigate in-source decay effects, a phenomenon often encountered for certain matrices. Consequently, the data obtained are more reliable, facilitating a faster and more comprehensive exploration of algal lipidomes using high-throughput MALDI-MS/MS analysis.
虽然可食用藻类的脂肪含量似乎较低,但它们所含的脂质对于保持健康和预防慢性病至关重要。本研究采用基质辅助激光解吸电离质谱(MALDI-MS),使用一种二元矩阵分析大型海藻(裙带菜、杜氏藻和紫菜)和微藻(螺旋藻和小球藻)中的所有极性脂质。关键在于一种新的二元基质,它由等摩尔量的 1,5-二氨基萘(DAN)和 9-氨基吖啶(9AA)组成。这种组合解决了单一基质的局限性:9AA 适合含硫脂质和酸性磷脂,而 DAN 则是完整叶绿素及其衍生物的电子转移次级反应基质。通过使用等摩尔二元基质,可以成功检测到更广泛的藻类脂质,包括游离脂肪酸、磷脂、糖脂、色素,甚至罕见的砷糖磷脂,克服了与易电离脂质有关的离子抑制的缺点。所得质谱在较低的激光能量下显示出良好的信噪比,并且最小化了背景噪声。这种改进源于二元基质缓解源内衰减效应的能力,对于某些基质来说,这种现象经常发生。因此,使用高通量 MALDI-MS/MS 分析可以获得更可靠的数据,从而更快、更全面地探索藻类脂质组。