Oniris, Nantes Université, CNRS, GEPEA, UMR 6144, Flavor Plateform, F-44322 Nantes, France.
Centre for Smell, Taste and Feeding Behaviour Science, Developmental Ethology & Cognitive Psychology Laboratory, CNRS (UMR 6265), Université de Bourgogne-Inra-ASD, F-21000 Dijon, France.
Molecules. 2022 Aug 20;27(16):5299. doi: 10.3390/molecules27165299.
The odor of human milk induces search-like movements and oral activation in newborns, which increases their chances of taking advantage of milk intake and benefits. However, the underlying volatile fraction of human milk remains understudied. This study aimed to devise a simple method to extract a wide range of volatile compounds from small-volume human milk samples. Headspace solid phase micro-extraction (HS-SPME) with a Car/PDMS fiber and dynamic headspace extraction (D-HS) with a Tenax or a trilayer sorbent were tested because of their selective affinity for volatiles. Then, innovative variations of these methods were developed to combine their respective advantages in a one-step extraction: Static headspace with multiple SPME fibers (S-HS-MultiSPME), Dynamic headspace with multiple SPME fibers (D-HS-MultiSPME) and dynamic headspace with multiple SPME fibers and Tenax (D-HS-MultiSPME/Tenax). The extracts were analyzed by gas chromatography coupled with mass spectrometric and flame ionization detection. The relative performances of these methods were compared based on qualitative and semi-quantitative analyses of the chromatograms. The D-HS technique showed good sensitivity for most compounds, whereas HS-SPME favored the extraction of acids. The D-HS-MultiSPME/Tenax identified more than 60 compounds from human milk (some for the first time) and evidence of individual singularities. This method that can be applied to volatilome analysis of any biological fluid should further our understanding of human milk odor.
人乳的气味会引起新生儿的搜索样运动和口腔激活,从而增加他们利用摄入母乳并从中受益的机会。然而,人乳的挥发性成分仍未得到充分研究。本研究旨在设计一种简单的方法,从小体积的人乳样本中提取广泛的挥发性化合物。由于对挥发性物质具有选择性亲和力,因此测试了顶空固相微萃取(HS-SPME)与 Car/PDMS 纤维和动态顶空提取(D-HS)与 Tenax 或三层吸附剂。然后,开发了这些方法的创新变体,以在一步提取中结合它们各自的优势:多根 SPME 纤维的静态顶空(S-HS-MultiSPME)、多根 SPME 纤维的动态顶空(D-HS-MultiSPME)和多根 SPME 纤维和 Tenax 的动态顶空(D-HS-MultiSPME/Tenax)。通过气相色谱-质谱联用仪和火焰离子化检测对提取物进行分析。基于色谱图的定性和半定量分析,比较了这些方法的相对性能。D-HS 技术对大多数化合物具有良好的灵敏度,而 HS-SPME 则有利于酸的提取。D-HS-MultiSPME/Tenax 从人乳中鉴定出 60 多种化合物(有些是首次),并证明了个体的独特性。该方法可应用于任何生物流体的挥发组学分析,应能增进我们对人乳气味的理解。