Department of Life Science, Tunghai University, Taichung, Taiwan.
Mechanical and Mechatronics Systems Research Laboratories, Industrial Technology Research Institute, Hsinchu, Taiwan.
PLoS One. 2020 Nov 9;15(11):e0241829. doi: 10.1371/journal.pone.0241829. eCollection 2020.
The dragline silk of spiders is of particular interest to science due to its unique properties that make it an exceptional biomaterial that has both high tensile strength and elasticity. To improve these natural fibers, researchers have begun to try infusing metals and carbon nanomaterials to improve mechanical properties of spider silk. The objective of this study was to incorporate carbon nanomaterials into the silk of an orb-weaving spider, Nephila pilipes, by feeding them solutions containing graphene and carbon nanotubes. Spiders were collected from the field and in the lab were fed solutions by pipette containing either graphene sheets or nanotubes. Major ampullate silk was collected and a tensile tester was used to determine mechanical properties for pre- and post-treatment samples. Raman spectroscopy was then used to test for the presence of nanomaterials in silk samples. There was no apparent incorporation of carbon nanomaterials in the silk fibers that could be detected with Raman spectroscopy and there were no significant improvements in mechanical properties. This study represents an example for the importance of attempting to replicate previously published research. Researchers should be encouraged to continue to do these types of investigations in order to build a strong consensus and solid foundation for how to go forward with these new methods for creating novel biomaterials.
蜘蛛的拖曳丝因其独特的性能而引起了科学界的特别关注,这些性能使它成为一种出色的生物材料,具有高强度和弹性。为了改善这些天然纤维,研究人员已经开始尝试注入金属和碳纳米材料,以提高蜘蛛丝的机械性能。本研究的目的是通过喂食含有石墨烯和碳纳米管的溶液将碳纳米材料纳入到一种圆网蛛(Nephila pilipes)的丝中。从野外收集蜘蛛,并在实验室中通过移液器喂食含有石墨烯片或纳米管的溶液。收集大囊蛛丝,并使用拉伸试验机确定处理前后样品的机械性能。然后使用拉曼光谱法测试丝样品中纳米材料的存在。拉曼光谱法无法检测到可检测到的碳纳米材料在丝纤维中的明显掺入,并且机械性能也没有明显改善。这项研究代表了试图复制先前发表的研究的重要性的一个例子。应该鼓励研究人员继续进行这类研究,以建立一个强大的共识和坚实的基础,了解如何使用这些新方法来创建新型生物材料。