Synthetic Biology Journal ›› 2022, Vol. 3 ›› Issue (4): 617-620.DOI: 10.12211/2096-8280.2022-046
Previous Articles Next Articles
Received:
2022-08-22
Revised:
2022-08-23
Online:
2022-09-08
Published:
2022-08-31
陈国强1, 钟超2
作者简介:
CLC Number:
陈国强, 钟超. 生物材料创造可持续未来[J]. 合成生物学, 2022, 3(4): 617-620.
Add to citation manager EndNote|Ris|BibTeX
URL: https://synbioj.cip.com.cn/EN/10.12211/2096-8280.2022-046
1 | 魏岱旭,龚海伦,张旭维. 抗菌肽的生物合成及医学应用[J]. 合成生物学,2022,3(4): 709-727. |
WEI Daixu, GONG Hailun, ZHANG Xuwei. Biosynthesis of antimicrobial peptides and its medical application[J]. Synthetic Biology Journal,2022,3(4): 709-727. | |
2 | 林思思,潘超,张一帆,等. 基于表面涂层益生菌的肿瘤抗原口服递送系统[J]. 合成生物学,2022,3(4): 810-820. |
LIN Sisi, PAN Chao, ZHANG Yifan,et al. Coated probiotic-based drug carriers for oral delivery of tumor antigens[J]. Synthetic Biology Journal,2022,3(4): 810-820. | |
3 | 张璨,施李杨,戴建武. 细胞培养肉用生物材料的设计[J]. 合成生物学,2022,3(4): 676-689. |
ZHANG Can, SHI Liyang, DAI Jianwu. Cultured meat from biomaterials:challenges and prospects[J]. Synthetic Biology Journal,2022,3(4): 676-689. | |
4 | 宋成治,孙阳,曹毅. 力信号在干细胞命运决定过程中的影响[J]. 合成生物学,2022,3(4): 781-794. |
SONG Chengzhi, SUN Yang, CAO Yi. Effects of mechanical signals on stem cell fate determination[J]. Synthetic Biology Journal,2022,3(4): 781-794. | |
5 | 吉博涛,钱志刚,夏小霞. 无细胞合成策略在生物材料研究中的应用[J]. 合成生物学,2022,3(4): 658-675. |
JI Botao, QIAN Zhigang, XIA Xiaoxia. Application of cell-free synthesis strategy in biomaterial research[J]. Synthetic Biology Journal,2022,3(4): 658-675. | |
6 | 易琪昆,孙晨博,杨中光,等. 可基因编码点击化学在材料合成生物学中的应用[J]. 合成生物学,2022,3(4): 690-708. |
YI Qikun, SUN Chenbo, YANG Zhongguang,et al. Genetically encoded click chemistry,an enabling tool for materials synthetic biology[J]. Synthetic Biology Journal,2022,3(4): 690-708. | |
7 | 王宇翔,吴夏泠,张文彬. 生物活体功能材料研究进展[J]. 合成生物学,2022,3(4): 621-625. |
WANG Yuxiang, WU Xialing, ZHANG Wenbin. Current advance in engineered living materials[J]. Synthetic Biology Journal,2022,3(4): 621-625. | |
8 | 朱润涛,钟超,戴卓君. 细菌生物被膜的软物质特性及其工程化应用[J]. 合成生物学,2022,3(4): 626-637. |
ZHU Runtao, ZHONG Chao, DAI Zhuojun. Biofilm matrixes-from soft matters to engineered materials[J]. Synthetic Biology Journal,2022,3(4): 626-637. | |
9 | 王倩,祁庆生. 聚羟基脂肪酸酯的低碳生物制造:基于碳转化率的分析与应用[J]. 合成生物学,2022,3(4): 748-762. |
WANG Qian, QI Qingsheng. Low-carbon biomanufacturing of polyhydroxyalkanoates:analysis and application based on carbon conversion rate[J]. Synthetic Biology Journal,2022,3(4): 748-762. | |
10 | 杨兆颖,张帆,郭建文,等. 类弹性蛋白多肽的生物合成及其药物递送应用[J]. 合成生物学,2022,3(4): 728-747. |
YANG Zhaoying, ZHANG Fan, GUO Jianwen,et al. Biosynthesis of elastin-like polypeptides and their applications in drug delivery[J]. Synthetic Biology Journal,2022,3(4): 728-747. | |
11 | 李磊,高鑫,齐宏斌,等. 现代生物技术推动塑料中聚对苯二甲酸乙二酯绿色降解的研究进展[J]. 合成生物学,2022,3(4): 763-780. |
LI Lei, GAO Xin, QI Hongbin,et al. Research progress of modern biotechnology-promoted green degradation of polyethylene terephthalate in plastics[J]. Synthetic Biology Journal,2022,3(4): 763-780. | |
12 | 邵云菲,王卉,朱怡然,等. 基于丝素蛋白材料构建骨组织修复支架的三维多孔结构体系的研究进展[J]. 合成生物学,2022,3(4): 795-809. |
SHAO Yunfei, WANG Hui, ZHU Yiran,et al. Research progress on the construction of three-dimensional porous structure of bone tissue repair scaffolds based on silk fibroin materials[J]. Synthetic Biology Journal,2022,3(4): 795-809. | |
13 | 李敬敬,马超,王帆,等. 生物合成高性能蛋白及材料应用[J]. 合成生物学,2022,3(4): 638-657. |
LI Jingjing, MA Chao, WANG Fan,et al. Biosynthesis of high-performance protein materials and their applications[J]. Synthetic Biology Journal,2022,3(4): 638-657. |
[1] | Yang SUN, Lichao CHEN, Yanyun SHI, Ke WANG, Dandan LU, Xiumei XU, Lixin ZHANG. Strategies and prospects of synthetic biology in crop photosynthesis [J]. Synthetic Biology Journal, 2025, (): 1-16. |
[2] | Naicai ZHONG, Yuan CHEN, Wenfeng PAN, Xiaofeng SU, Jingwen LIAO, Jinyi ZHONG. Application progress of plasma microbial breeding technology in biofabrication [J]. Synthetic Biology Journal, 2025, (): 1-17. |
[3] | Zeyan DI, Shuo ZHOU, Mingfang YANG, Xin LIU, Yao CHEN. Application of functional framework materials in C1 biotransformation [J]. Synthetic Biology Journal, 2025, (): 1-18. |
[4] | Chengxin ZHANG. Challenges and opportunities in text mining-based protein function annotation [J]. Synthetic Biology Journal, 2025, (): 1-14. |
[5] | Yuanxu JIANG, Yingying FAN, Ping WEI. Design principles and artificial synthesis of biological oscillators [J]. Synthetic Biology Journal, 2025, (): 1-15. |
[6] | Shuhan HUANG, He MA, Yunzi LUO. Research progress on biosynthesis of salidroside [J]. Synthetic Biology Journal, 2025, (): 1-16. |
[7] | Qian LI, E. Ferrell James, Yuping CHEN. Cytoplasmic concentration: an old question and a new parameter in cell biology [J]. Synthetic Biology Journal, 2025, (): 1-18. |
[8] | Baiyi Jiang, Long Qian. Application and prospect of live cell molecular recorder in cell lineage tracing [J]. Synthetic Biology Journal, 2025, (): 1-17. |
[9] | XU Huaisheng, SHI Xiaolong, LIU Xiaoguang, XU Miaomiao. Key technologies for DNA storage: encoding, error correction, random access, and security [J]. Synthetic Biology Journal, 2025, 6(1): 157-176. |
[10] | WEN Yanhua, LIU Hedong, CAO Chunlai, WU Ruibo. Applications of protein engineering in pharmaceutical industry [J]. Synthetic Biology Journal, 2025, 6(1): 65-86. |
[11] | ZHONG Quanzhou, SHAN Yiyi, PEI Qingyun, JIN Yanyun, WANG Yihan, MENG Luyuan, WANG Xinyun, ZHANG Yuxin, LIU Kunyuan, WANG Huizhong, FENG Shangguo. Research progress in the production of α-arbutin through biosynthesis [J]. Synthetic Biology Journal, 2025, 6(1): 118-135. |
[12] | ZHANG Yi-Heng P. Job, CHEN Xuemei, SHI Ting. Price to Cost-of-raw-materials Ratio (PC) of biomanufacturing: definition and application [J]. Synthetic Biology Journal, 2025, 6(1): 8-17. |
[13] | GAO Ge, BIAN Qi, WANG Baojun. Synthetic genetic circuit engineering: principles, advances and prospects [J]. Synthetic Biology Journal, 2025, 6(1): 45-64. |
[14] | DONG Ying, MA Mengdan, HUANG Weiren. Progress in the miniaturization of CRISPR-Cas systems [J]. Synthetic Biology Journal, 2025, 6(1): 105-117. |
[15] | LIU Xiaoyue, WANG Pandi, WU Gang, LIU Fang. Efficient biosynthesis of glucoraphanin in Brassicaceae crops by genetic engineering [J]. Synthetic Biology Journal, 2025, 6(1): 136-156. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||