Universidad Central del Caribe School of Medicine, Bayamon, Puerto Rico.
University of Maryland School of Medicine, Baltimore, MD.
Photochem Photobiol. 2023 Jul-Aug;99(4):1092-1096. doi: 10.1111/php.13744. Epub 2022 Dec 13.
One of the known important functions of hair is protection from extensive sunlight. This protection is accomplished in large part due to natural hair pigmentation which is known to reflect the number of melanin granules (melanosomes) in the hair shaft, and melanin variants. Melanin takes in excessive light energy and converts it to heat in a process called absorption; heat is then dissipated into the environment as infrared radiation, thereby protecting the underlying skin. We used transmission electron microscopy (TEM) to visualize the melanosome counts in samples of human hair, and used thermal microscopy to measure the temperature changes of the samples when exposed to green and blue light lasers. In our experiments green light conversion to heat was highly correlated to the number of melanosomes, whereas blue light conversion to heat was less correlated, which may be because the reddish melanosomes it contains are less effective in absorbing energy from the blue spectrum of light. Anyway, we have shown the metals accumulation in the melanin can be easily visualized with TEM. We confirmed that the amount of melanin granules in human hair defines the conversion to heat of light energy in the visible spectrum.
头发的一个已知重要功能是保护人体免受强烈阳光的伤害。这种保护在很大程度上是由于天然的头发色素沉着来实现的,这与头发中黑素小体(黑素体)的数量和黑素变体有关。黑色素吸收过多的光能,并将其转化为热量,这个过程称为吸收;然后热量以红外辐射的形式散发到环境中,从而保护下面的皮肤。我们使用透射电子显微镜(TEM)来观察人发样本中的黑素体数量,并使用热显微镜来测量样本在暴露于绿光和蓝光激光时的温度变化。在我们的实验中,绿光转化为热能与黑素体的数量高度相关,而蓝光转化为热能的相关性较低,这可能是因为其中所含的微红黑素体在吸收来自蓝光光谱的能量方面效果较差。无论如何,我们已经表明,TEM 可以轻松地观察到黑色素中的金属积累。我们证实,人发中黑素体颗粒的数量决定了可见光范围内光能向热能的转化。