Department of Geology, Lund University, 223 62 Lund, Sweden.
The Materials and Production Division, RISE Research Institutes of Sweden, 501 15 Borås, Sweden.
Int J Mol Sci. 2020 Dec 26;22(1):161. doi: 10.3390/ijms22010161.
Residual melanins have been detected in multimillion-year-old animal body fossils; however, confident identification and characterization of these natural pigments remain challenging due to loss of chemical signatures during diagenesis. Here, we simulate this post-burial process through artificial maturation experiments using three synthetic and one natural eumelanin exposed to mild (100 °C/100 bar) and harsh (250 °C/200 bar) environmental conditions, followed by chemical analysis employing alkaline hydrogen peroxide oxidation (AHPO) and time-of-flight secondary ion mass spectrometry (ToF-SIMS). Our results show that AHPO is sensitive to changes in the melanin molecular structure already during mild heat and pressure treatment (resulting, e.g., in increased C-C cross-linking), whereas harsh maturation leads to extensive loss of eumelanin-specific chemical markers. In contrast, negative-ion ToF-SIMS spectra are considerably less affected by mild maturation conditions, and eumelanin-specific features remain even after harsh treatment. Detailed analysis of ToF-SIMS spectra acquired prior to experimental treatment revealed significant differences between the investigated eumelanins. However, systematic spectral changes upon maturation reduced these dissimilarities, indicating that intense heat and pressure treatment leads to the formation of a common, partially degraded, eumelanin molecular structure. Our findings elucidate the complementary nature of AHPO and ToF-SIMS during chemical characterization of eumelanin traces in fossilized organismal remains.
在数百万年前的动物体化石中已经检测到残留的黑色素;然而,由于在成岩作用过程中化学特征的丧失,这些天然色素的可靠鉴定和特征仍然具有挑战性。在这里,我们通过使用三种合成黑色素和一种天然黑色素进行人工成熟实验来模拟这个埋藏后的过程,这些黑色素暴露于温和(100°C/100 bar)和苛刻(250°C/200 bar)的环境条件下,然后采用碱性过氧化氢氧化(AHPO)和飞行时间二次离子质谱(ToF-SIMS)进行化学分析。我们的结果表明,AHPO 对黑色素分子结构的变化很敏感,即使在温和的热和压力处理下(例如,导致 C-C 交联增加)也是如此,而苛刻的成熟会导致黑色素特有的化学标记物大量损失。相比之下,负离子 ToF-SIMS 光谱受温和成熟条件的影响较小,即使在苛刻处理后,黑色素特有的特征仍然存在。在实验处理之前获取的 ToF-SIMS 光谱的详细分析表明,所研究的黑色素之间存在显著差异。然而,成熟过程中的系统光谱变化降低了这些差异,表明强烈的热和压力处理会导致形成一种常见的、部分降解的黑色素分子结构。我们的研究结果阐明了 AHPO 和 ToF-SIMS 在化石生物遗骸中黑色素痕迹的化学特征描述中的互补性。