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桑树叶(桑白皮)衍生的蓝光发射碳点喂养蚕,以生产可用于多巴胺比率检测的增强型丝绸。

Mulberry Leaves (Morus Rubra)-Derived Blue-Emissive Carbon Dots Fed to Silkworms to Produce Augmented Silk Applicable for the Ratiometric Detection of Dopamine.

机构信息

Department of Chemistry, CHRIST (Deemed to be University), Bangalore, 560029, India.

School of Biosciences, Mahatma Gandhi University, P.D Hills (P.O), Kottayam, Kerala, 686560, India.

出版信息

Macromol Biosci. 2023 Sep;23(9):e2300081. doi: 10.1002/mabi.202300081. Epub 2023 May 6.

Abstract

Silk fibers (SF) reeled from silkworms are constituted by natural proteins, and their characteristic structural features render them applicable as materials for textiles and packaging. Modification of SF with functional materials can facilitate their applications in additional areas. In this work, the preparation of functional SF embedded with carbon dots (CD) is reported through the direct feeding of a CD-modified diet to silkworms. Fluorescent and mechanically robust SF are obtained from silkworms (Bombyx mori) that are fed on CDs synthesized from the Morus rubra variant of mulberry leaves (MB-CDs). MB-CDs are introduced to silkworms from the third instar by spraying them on the silkworm feed, the mulberry leaves. MB-CDs are synthesized hydrothermally without adding surface passivating agents and are observed to have a quantum yield of 22%. With sizes of ≈4 nm, MB-CDs exhibited blue fluorescence, and they can be used as efficient fluorophores to detect Dopamine (DA) up to the limit of 4.39 nM. The nanostructures and physical characteristics of SF weren't altered when the SF are infused with MB-CDs. Also, a novel DA sensing application based on fluorescence with the MB-CD incorporated SF is demonstrated.

摘要

从家蚕中缫出的丝纤维由天然蛋白质构成,其独特的结构特征使其适用于纺织品和包装材料。通过将功能性材料修饰到丝纤维上,可以促进其在其他领域的应用。在这项工作中,通过直接向家蚕喂食经过修饰的含碳点(CD)的饮食,制备了功能化的丝纤维嵌入 CD。从喂食由桑树叶变体(MB-CDs)合成的 CD 的家蚕(Bombyx mori)中获得了荧光和机械坚固的丝纤维。MB-CDs 通过喷洒在桑蚕饲料即桑叶上来引入到 3 龄家蚕中。MB-CDs 是在没有添加表面钝化剂的条件下通过水热法合成的,其量子产率为 22%。MB-CDs 的尺寸约为 4nm,具有蓝色荧光,可用作高效荧光团,可检测到低至 4.39nM 的多巴胺(DA)。当丝纤维中注入 MB-CDs 时,丝纤维的纳米结构和物理特性并未改变。此外,还展示了一种基于含有 MB-CD 的丝纤维的荧光的新型 DA 传感应用。

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