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Boosting Conductive Bioplastic Applications with SpyCatcher-SpyTag Technology and Cellulose Scaffolds
- Lee, Ji Hyun;
- Lee, Eun Seo;
- Chae, Un Jung;
- Han, Sung Ok;
- Hyeon, Jeong Eun
WEB OF SCIENCE
1SCOPUS
1초록
Bioplastics offer eco-friendly alternatives to conventional plastics. This study aimed to expand the application scope of bioplastics by developing a functional material with enhanced conductivity. We recombined the SpyCatcher-SpyTag system from Streptococcus pyogenes with leghemoglobin from Glycine max to generate SpyCatcher-GmLegC2-SpyTag, SpyCatcher-GmLegC2-SpyCatcher, and SpyTag-GmLegC2-SpyTag proteins, which assembled into a conductive polymer. This polymer exhibited electrical conductivity 2.5 times higher than free hemin in aqueous solution when mixed with hemin. For improved stability, SpyCatcher-GmLegC2 was fused with a carbohydrate-binding module from Clostridium cellulovorans and integrated into bacterial cellulose scaffolds. The resulting composite showed a 141-fold increase in conductivity compared to free hemin and exhibited uniform, stable performance. This eco-friendly conductive bioplastic demonstrates strong potential for applications in wearable sensors, electronic devices, and sustainable conductive materials.
키워드
- 제목
- Boosting Conductive Bioplastic Applications with SpyCatcher-SpyTag Technology and Cellulose Scaffolds
- 저자
- Lee, Ji Hyun; Lee, Eun Seo; Chae, Un Jung; Han, Sung Ok; Hyeon, Jeong Eun
- 발행일
- 2025-11-10
- 유형
- Article
- 권
- 26
- 호
- 11
- 페이지
- 8160 ~ 8166