Choi Jaewon, Sahoo Jugal Kishore, Hasturk Onur, Falcucci Thomas, Yao Ya, Kaplan David L
Department of Biomedical Engineering, Tufts University, Medford, Massachusetts 02155, USA; Department of Polymer Science and Engineering, Kyungpook National University, Daegu 41566, Republic of Korea.
Department of Biomedical Engineering, Tufts University, Medford, Massachusetts 02155, USA.
Adv Mater Technol. 2023 Apr 6;8(7). doi: 10.1002/admt.202201392. Epub 2023 Jan 27.
A variety of artificial silk spinning approaches have been attempted to mimic the natural spinning process found in silkworms and spiders, yet instantaneous silk fiber formation with hierarchical structure under physiological and ambient conditions without post-treatment procedures remains unaddressed. Here, we report a new strategy to fabricate silk protein-based aerosols and silk fibers instantaneously (< 1 s) using a simple, portable, spray device, avoiding complicated and costly advanced manufacturing techniques. The key to success is the instantaneous conformational transition of silk fibroin from random coil to β-sheet right before spraying by mixing silk and polyethylene glycol (PEG) solutions in the spray device, allowing aerosols and silk fibers to be sprayed , with further control achieved via the molecular weight of silk. The spinning process of the spray device is based on the use of green solvents, , all steps of instant conformational transition of silk fibroin are carried out in aqueous conditions or with buffers at ambient conditions, in combination with shear and elongational flow caused by the hydraulic pressure generated in the spray container. The system supports a portable and user-friendly system that could be used for drug delivery carriers, wound coating materials and rapid silk fiber conformal coatings on surfaces.
人们尝试了多种人造丝纺丝方法来模仿蚕和蜘蛛的天然纺丝过程,但在生理和环境条件下,无需后处理程序即可瞬间形成具有分级结构的丝纤维这一问题仍未得到解决。在此,我们报告了一种新策略,即使用简单、便携的喷雾装置瞬间(<1秒)制造基于丝蛋白的气溶胶和丝纤维,避免了复杂且昂贵的先进制造技术。成功的关键在于通过在喷雾装置中混合丝溶液和聚乙二醇(PEG)溶液,使丝素蛋白在喷雾前瞬间从无规卷曲转变为β折叠构象,从而实现气溶胶和丝纤维的喷雾,并通过丝的分子量进一步控制。喷雾装置的纺丝过程基于绿色溶剂的使用,丝素蛋白的瞬间构象转变的所有步骤均在水性条件下或在环境条件下与缓冲液一起进行,同时结合喷雾容器中产生的液压引起的剪切流和拉伸流。该系统支持一种便携且用户友好的系统,可用于药物递送载体、伤口涂层材料以及表面快速丝纤维保形涂层。