Lee Jiyoung, Bae Jaehyeong, Youn Doo-Young, Ahn Jaewan, Hwang Won-Tae, Bae Hyunae, Bae Pan Kee, Kim Il-Doo
Department of Materials Science and Engineering, Korea Advanced Institute of Science and Technology (KAIST), 291 Daehak-ro, Yuseong-gu, Daejeon 34141, Republic of Korea.
John A. Paulson School of Engineering and Applied Science, Harvard University, Cambridge, MA 02138, USA.
Chem Eng J. 2022 Sep 15;444:136460. doi: 10.1016/j.cej.2022.136460. Epub 2022 Apr 19.
Most respiratory masks are made of fabrics, which only capture the infectious virus carriers into the matrix. However, these contagious viruses stay active for a long duration (∼7 days) within the fabric matrix possibly inducing post-contact transmissions. Moreover, conventional masks are vulnerable to bacterial growth with prolonged exposure to exhaled breaths. Herein, we combined violacein, a naturally-occurring antimicrobial agent, with porous nanofiber membranes to develop a series of functional filters that autonomously sterilizes viruses and bacteria. The violacein-embedded membrane inactivates viruses within 4 h (99.532 % reduction for influenza and 99.999 % for human coronavirus) and bacteria within 2 h (75.5 % reduction). Besides, its nanofiber structure physically filters out the nanoscale (<0.8 μm) and micron-scale (0.8 μm - 3 μm) particulates, providing high filtration efficiencies (99.7 % and 100 % for PM 1.0 and PM 10, respectively) with long-term stability (for 25 days). In addition, violacein provides additional UV-resistant property, which protects the skin from sunlight. The violacein-embedded membrane not only proved the sterile efficacy of microbe extracted pigments for biomedical products but also provided insights to advance the personal protective equipment (PPE) to fight against contagious pathogens.
大多数呼吸面罩由织物制成,只能将传染性病毒携带者捕获到基质中。然而,这些传染性病毒在织物基质中长时间保持活性(约7天),可能会引发接触后传播。此外,传统口罩长时间接触呼出的气体后容易滋生细菌。在此,我们将天然抗菌剂紫菌素与多孔纳米纤维膜相结合,开发出一系列能自动对病毒和细菌进行杀菌的功能性过滤器。嵌入紫菌素的膜在4小时内可使病毒失活(流感病毒减少99.532%,人类冠状病毒减少99.999%),在2小时内可使细菌减少(减少75.5%)。此外,其纳米纤维结构能物理过滤掉纳米级(<0.8μm)和微米级(0.8μm - 3μm)的颗粒,具有高过滤效率(对PM 1.0和PM 10的过滤效率分别为99.7%和100%)且具有长期稳定性(长达25天)。此外,紫菌素还具有额外的抗紫外线性能,可保护皮肤免受阳光伤害。嵌入紫菌素的膜不仅证明了微生物提取色素对生物医学产品的杀菌效果,还为改进个人防护装备(PPE)以对抗传染性病原体提供了思路。