Mallol Carolina, Égüez Natalia, Jambrina-Enríquez Margarita, Herrera-Herrera Antonio V
Instituto Universitario de Bio-Orgánica Antonio González, Universidad de La Laguna, Avda. Astrofísico Fco. Sánchez, 2, 38206 San Cristóbal de La Laguna, Spain.
Departamento de Geografía e Historia, UDI Prehistoria, Arqueología e Historia Antigua, Facultad de Humanidades, Universidad de La Laguna, 38206 Tenerife, Spain.
iScience. 2025 Feb 25;28(3):112064. doi: 10.1016/j.isci.2025.112064. eCollection 2025 Mar 21.
This review targets archaeological scientists and geoarchaeologists, examining the current state of lipid biomarker analysis in archaeological sediments-a growing field. Lipid compounds and their stable isotope ratios serve as valuable proxies for reconstructing past climates, vegetation, freshwater availability, human-environment interactions, diet, technology, and subsistence practices. The paper reviews experimental, archaeological, and ethnoarchaeological studies that apply lipid biomarkers to archaeological sedimentary deposits, contributing to paleoenvironmental research and insights into past human behavior. Key topics include fecal biomarkers, revealing diet and subsistence, and pyrogenic biomarkers, shedding light on fire technology and cooking traditions. Methodological guidelines are provided, covering sample collection, lipid extraction, pretreatment, and compound detection. Challenges include standardizing protocols, integrating new biomarkers, microcontextual approaches, and adopting advanced analytical techniques. Advancing lipid biomarker analysis promises to enhance interdisciplinary research and deepen our understanding of archaeological contexts and human-environment dynamics.
本综述面向考古科学家和地质考古学家,审视考古沉积物中脂质生物标志物分析的现状——这是一个不断发展的领域。脂质化合物及其稳定同位素比率是重建过去气候、植被、淡水可利用性、人类与环境相互作用、饮食、技术和生存方式的宝贵代理指标。本文回顾了将脂质生物标志物应用于考古沉积矿床的实验、考古和民族考古学研究,为古环境研究以及对过去人类行为的洞察做出了贡献。关键主题包括揭示饮食和生存方式的粪便生物标志物,以及阐明火技术和烹饪传统的热解生物标志物。提供了方法指南,涵盖样本采集、脂质提取、预处理和化合物检测。挑战包括标准化方案、整合新的生物标志物、微观背景方法以及采用先进的分析技术。推进脂质生物标志物分析有望加强跨学科研究,并加深我们对考古背景和人类与环境动态的理解。