Literature DB >> 33787235

Magnetically Driven Micro and Nanorobots.

Huaijuan Zhou1, Carmen C Mayorga-Martinez1, Salvador Pané2, Li Zhang3, Martin Pumera1,4,5,6,7.   

Abstract

Manipulation and navigation of micro and nanoswimmers in different fluid environments can be achieved by chemicals, external fields, or even motile cells. Many researchers have selected magnetic fields as the active external actuation source based on the advantageous features of this actuation strategy such as remote and spatiotemporal control, fuel-free, high degree of reconfigurability, programmability, recyclability, and versatility. This review introduces fundamental concepts and advantages of magnetic micro/nanorobots (termed here as "MagRobots") as well as basic knowledge of magnetic fields and magnetic materials, setups for magnetic manipulation, magnetic field configurations, and symmetry-breaking strategies for effective movement. These concepts are discussed to describe the interactions between micro/nanorobots and magnetic fields. Actuation mechanisms of flagella-inspired MagRobots (i.e., corkscrew-like motion and traveling-wave locomotion/ciliary stroke motion) and surface walkers (i.e., surface-assisted motion), applications of magnetic fields in other propulsion approaches, and magnetic stimulation of micro/nanorobots beyond motion are provided followed by fabrication techniques for (quasi-)spherical, helical, flexible, wire-like, and biohybrid MagRobots. Applications of MagRobots in targeted drug/gene delivery, cell manipulation, minimally invasive surgery, biopsy, biofilm disruption/eradication, imaging-guided delivery/therapy/surgery, pollution removal for environmental remediation, and (bio)sensing are also reviewed. Finally, current challenges and future perspectives for the development of magnetically powered miniaturized motors are discussed.

Entities:  

Year:  2021        PMID: 33787235     DOI: 10.1021/acs.chemrev.0c01234

Source DB:  PubMed          Journal:  Chem Rev        ISSN: 0009-2665            Impact factor:   60.622


  18 in total

1.  Microrobotics for Precision Biofilm Diagnostics and Treatment.

Authors:  A Babeer; M J Oh; Z Ren; Y Liu; F Marques; A Poly; B Karabucak; E Steager; H Koo
Journal:  J Dent Res       Date:  2022-04-21       Impact factor: 8.924

2.  Immunomodulation and delivery of macrophages using nano-smooth drug-loaded magnetic microrobots for dual targeting cancer therapy.

Authors:  Xiaoxia Song; Wei Fu; U Kei Cheang
Journal:  iScience       Date:  2022-06-02

3.  Self-Healable and Recyclable Dual-Shape Memory Liquid Metal-Elastomer Composites.

Authors:  Xiaobo Deng; Guokang Chen; Yifan Liao; Xi Lu; Shuangyan Hu; Tiansheng Gan; Stephan Handschuh-Wang; Xueli Zhang
Journal:  Polymers (Basel)       Date:  2022-06-01       Impact factor: 4.967

4.  Magnetic-Driven Hydrogel Microrobots Selectively Enhance Synthetic Lethality in MTAP-Deleted Osteosarcoma.

Authors:  Haoran Mu; Chenlu Liu; Qi Zhang; Huanliang Meng; Shimin Yu; Ke Zeng; Jing Han; Xinmeng Jin; Shi Shi; Peiyao Yu; Tianlong Li; Jing Xu; Yingqi Hua
Journal:  Front Bioeng Biotechnol       Date:  2022-07-06

Review 5.  Magnetic Soft Materials and Robots.

Authors:  Yoonho Kim; Xuanhe Zhao
Journal:  Chem Rev       Date:  2022-02-01       Impact factor: 72.087

6.  Collective behavior of magnetic microrobots through immuno-sandwich assay: On-the-fly COVID-19 sensing.

Authors:  Carmen C Mayorga-Martinez; Jan Vyskočil; Filip Novotný; Petr Bednar; Daniel Ruzek; Osamah Alduhaishe; Martin Pumera
Journal:  Appl Mater Today       Date:  2022-01-07

7.  Droplet-Based Microfluidic Preparation of Shape-Variable Alginate Hydrogel Magnetic Micromotors.

Authors:  Cheng Zhang; Yong Wang; Yuduo Chen; Xing Ma; Wenjun Chen
Journal:  Nanomaterials (Basel)       Date:  2021-12-30       Impact factor: 5.076

Review 8.  Powering and Fabrication of Small-Scale Robotics Systems.

Authors:  Salvador Pané; Pedro Wendel-Garcia; Yonca Belce; Xiang-Zhong Chen; Josep Puigmartí-Luis
Journal:  Curr Robot Rep       Date:  2021-10-07

Review 9.  Dental Robotics: A Disruptive Technology.

Authors:  Paras Ahmad; Mohammad Khursheed Alam; Ali Aldajani; Abdulmajeed Alahmari; Amal Alanazi; Martin Stoddart; Mohammed G Sghaireen
Journal:  Sensors (Basel)       Date:  2021-05-11       Impact factor: 3.576

10.  Swarming Aqua Sperm Micromotors for Active Bacterial Biofilms Removal in Confined Spaces.

Authors:  Carmen C Mayorga-Martinez; Jaroslav Zelenka; Jan Grmela; Hana Michalkova; Tomáš Ruml; Jan Mareš; Martin Pumera
Journal:  Adv Sci (Weinh)       Date:  2021-08-08       Impact factor: 16.806

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