Drug Delivery in Plants Using Silk Microneedles

被引:20
作者
Cao, Yunteng [1 ]
Koh, Sally Shuxian [2 ,3 ]
Han, Yangyang [4 ]
Tan, Javier Jingheng [2 ]
Kim, Doyoon [1 ]
Chua, Nam-Hai [2 ,4 ]
Urano, Daisuke [2 ,3 ,4 ]
Marelli, Benedetto [1 ,4 ]
机构
[1] MIT, Dept Civil & Environm Engn, Cambridge, MA 02139 USA
[2] Natl Univ Singapore, Temasek Life Sci Lab, Singapore 117604, Singapore
[3] Natl Univ Singapore, Dept Biol Sci, Singapore 119077, Singapore
[4] Singapore MIT Alliance Res & Technol, Singapore 119077, Singapore
基金
新加坡国家研究基金会;
关键词
gibberellins; payload delivery; plants' wounding responses; silk microneedles; sustainable agriculture; GROWTH REGULATORS; GIBBERELLIN; NANOPARTICLES; BIODIVERSITY; AGRICULTURE; DEGRADATION; FABRICATION; RELEASE;
D O I
10.1002/adma.202205794
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
New systems for agrochemical delivery in plants will foster precise agricultural practices and provide new tools to study plants and design crop traits, as standard spray methods suffer from elevated loss and limited access to remote plant tissues. Silk-based microneedles can circumvent these limitations by deploying a known amount of payloads directly in plants' deep tissues. However, plant response to microneedles' application and microneedles' efficacy in deploying physiologically relevant biomolecules are unknown. Here, it is shown that gene expression associated with Arabidopsis thaliana wounding response decreases within 24 h post microneedles' application. Additionally, microinjection of gibberellic acid (GA(3)) in A. thaliana mutant ft-10 provides a more effective and efficient mean than spray to activate GA(3) pathways, accelerating bolting and inhibiting flower formation. Microneedle efficacy in delivering GA(3) is also observed in several monocot and dicot crop species, i.e., tomato (Solanum lycopersicum), lettuce (Lactuca sativa), spinach (Spinacia oleracea), rice (Oryza Sativa), maize (Zea mays), barley (Hordeum vulgare), and soybean (Glycine max). The wide range of plants that can be successfully targeted with microinjectors opens the doors to their use in plant science and agriculture.
引用
收藏
页数:14
相关论文
共 67 条
[1]   Nanotechnology: A novel tool to enhance the bioavailability of micronutrients [J].
Arshad, Rizwan ;
Gulshad, Lubaba ;
Haq, Iahtisham-Ul- ;
Farooq, Muhammad Adil ;
Al-Farga, Ammar ;
Siddique, Rabia ;
Manzoor, Muhammad Faisal ;
Karrar, Emad .
FOOD SCIENCE & NUTRITION, 2021, 9 (06) :3354-3361
[2]   Brassinosteroid, gibberellin and phytochrome impinge on a common transcription module in Arabidopsis [J].
Bai, Ming-Yi ;
Shang, Jian-Xiu ;
Oh, Eunkyoo ;
Fan, Min ;
Bai, Yang ;
Zentella, Rodolfo ;
Sun, Tai-ping ;
Wang, Zhi-Yong .
NATURE CELL BIOLOGY, 2012, 14 (08) :810-U78
[3]   New insights into gibberellin signaling in regulating flowering in Arabidopsis [J].
Bao, Shengjie ;
Hua, Changmei ;
Shen, Lisha ;
Yu, Hao .
JOURNAL OF INTEGRATIVE PLANT BIOLOGY, 2020, 62 (01) :118-131
[4]   Gibberellin Localization and Transport in Plants [J].
Binenbaum, Jenia ;
Weinstain, Roy ;
Shani, Eilon .
TRENDS IN PLANT SCIENCE, 2018, 23 (05) :410-421
[5]   Growth stage-based phenotypic analysis of arabidopsis:: A model for high throughput functional genomics in plants [J].
Boyes, DC ;
Zayed, AM ;
Ascenzi, R ;
McCaskill, AJ ;
Hoffman, NE ;
Davis, KR ;
Görlach, J .
PLANT CELL, 2001, 13 (07) :1499-1510
[6]   Current advances in gibberellic acid (GA3) production, patented technologies and potential applications [J].
Camara, Marcela C. ;
Vandenberghe, Luciana P. S. ;
Rodrigues, Cristine ;
de Oliveira, Juliana ;
Faulds, Craig ;
Bertrand, Emmanuel ;
Soccol, Carlos R. .
PLANTA, 2018, 248 (05) :1049-1062
[7]   Precision Delivery of Multiscale Payloads to Tissue-Specific Targets in Plants [J].
Cao, Yunteng ;
Lim, Eugene ;
Xu, Menglong ;
Weng, Jing-Ke ;
Marelli, Benedetto .
ADVANCED SCIENCE, 2020, 7 (13)
[8]   Leaf infiltration in plant science: old method, new possibilities [J].
Chincinska, Izabela Anna .
PLANT METHODS, 2021, 17 (01)
[9]   Oxytetracycline Dynamics on Peach Leaves in Relation to Temperature, Sunlight, and Simulated Rain [J].
Christiano, R. S. C. ;
Reilly, C. C. ;
Miller, W. P. ;
Scherm, H. .
PLANT DISEASE, 2010, 94 (10) :1213-1218
[10]   Fabrication of Dissolving Polymer Microneedles for Controlled Drug Encapsulation and Delivery: Bubble and Pedestal Microneedle Designs [J].
Chu, Leonard Y. ;
Choi, Seong-O ;
Prausnitz, Mark R. .
JOURNAL OF PHARMACEUTICAL SCIENCES, 2010, 99 (10) :4228-4238