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Magnetically Aligned Nanorods in Alginate Capsules (MANiACs): Soft Matter Tumbling Robots for Manipulation and Drug Delivery

Soft, untethered microrobots composed of biocompatible materials for completing micromanipulation and drug delivery tasks in lab-on-a-chip and medical scenarios are currently being developed. Alginate holds significant potential in medical microrobotics due to its biocompatibility, biodegradability,...

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Autores principales: Mair, Lamar O., Chowdhury, Sagar, Paredes-Juarez, Genaro A., Guix, Maria, Bi, Chenghao, Johnson, Benjamin, English, Bradley W., Jafari, Sahar, Baker-McKee, James, Watson-Daniels, Jamelle, Hale, Olivia, Stepanov, Pavel, Sun, Danica, Baker, Zachary, Ropp, Chad, Raval, Shailesh B., Arifin, Dian R., Bulte, Jeff W.M., Weinberg, Irving N., Evans, Benjamin A., Cappelleri, David J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6523834/
https://www.ncbi.nlm.nih.gov/pubmed/30935105
http://dx.doi.org/10.3390/mi10040230
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author Mair, Lamar O.
Chowdhury, Sagar
Paredes-Juarez, Genaro A.
Guix, Maria
Bi, Chenghao
Johnson, Benjamin
English, Bradley W.
Jafari, Sahar
Baker-McKee, James
Watson-Daniels, Jamelle
Hale, Olivia
Stepanov, Pavel
Sun, Danica
Baker, Zachary
Ropp, Chad
Raval, Shailesh B.
Arifin, Dian R.
Bulte, Jeff W.M.
Weinberg, Irving N.
Evans, Benjamin A.
Cappelleri, David J.
author_facet Mair, Lamar O.
Chowdhury, Sagar
Paredes-Juarez, Genaro A.
Guix, Maria
Bi, Chenghao
Johnson, Benjamin
English, Bradley W.
Jafari, Sahar
Baker-McKee, James
Watson-Daniels, Jamelle
Hale, Olivia
Stepanov, Pavel
Sun, Danica
Baker, Zachary
Ropp, Chad
Raval, Shailesh B.
Arifin, Dian R.
Bulte, Jeff W.M.
Weinberg, Irving N.
Evans, Benjamin A.
Cappelleri, David J.
author_sort Mair, Lamar O.
collection PubMed
description Soft, untethered microrobots composed of biocompatible materials for completing micromanipulation and drug delivery tasks in lab-on-a-chip and medical scenarios are currently being developed. Alginate holds significant potential in medical microrobotics due to its biocompatibility, biodegradability, and drug encapsulation capabilities. Here, we describe the synthesis of MANiACs—Magnetically Aligned Nanorods in Alginate Capsules—for use as untethered microrobotic surface tumblers, demonstrating magnetically guided lateral tumbling via rotating magnetic fields. MANiAC translation is demonstrated on tissue surfaces as well as inclined slopes. These alginate microrobots are capable of manipulating objects over millimeter-scale distances. Finally, we demonstrate payload release capabilities of MANiACs during translational tumbling motion.
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spelling pubmed-65238342019-06-03 Magnetically Aligned Nanorods in Alginate Capsules (MANiACs): Soft Matter Tumbling Robots for Manipulation and Drug Delivery Mair, Lamar O. Chowdhury, Sagar Paredes-Juarez, Genaro A. Guix, Maria Bi, Chenghao Johnson, Benjamin English, Bradley W. Jafari, Sahar Baker-McKee, James Watson-Daniels, Jamelle Hale, Olivia Stepanov, Pavel Sun, Danica Baker, Zachary Ropp, Chad Raval, Shailesh B. Arifin, Dian R. Bulte, Jeff W.M. Weinberg, Irving N. Evans, Benjamin A. Cappelleri, David J. Micromachines (Basel) Article Soft, untethered microrobots composed of biocompatible materials for completing micromanipulation and drug delivery tasks in lab-on-a-chip and medical scenarios are currently being developed. Alginate holds significant potential in medical microrobotics due to its biocompatibility, biodegradability, and drug encapsulation capabilities. Here, we describe the synthesis of MANiACs—Magnetically Aligned Nanorods in Alginate Capsules—for use as untethered microrobotic surface tumblers, demonstrating magnetically guided lateral tumbling via rotating magnetic fields. MANiAC translation is demonstrated on tissue surfaces as well as inclined slopes. These alginate microrobots are capable of manipulating objects over millimeter-scale distances. Finally, we demonstrate payload release capabilities of MANiACs during translational tumbling motion. MDPI 2019-03-31 /pmc/articles/PMC6523834/ /pubmed/30935105 http://dx.doi.org/10.3390/mi10040230 Text en © 2019 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Mair, Lamar O.
Chowdhury, Sagar
Paredes-Juarez, Genaro A.
Guix, Maria
Bi, Chenghao
Johnson, Benjamin
English, Bradley W.
Jafari, Sahar
Baker-McKee, James
Watson-Daniels, Jamelle
Hale, Olivia
Stepanov, Pavel
Sun, Danica
Baker, Zachary
Ropp, Chad
Raval, Shailesh B.
Arifin, Dian R.
Bulte, Jeff W.M.
Weinberg, Irving N.
Evans, Benjamin A.
Cappelleri, David J.
Magnetically Aligned Nanorods in Alginate Capsules (MANiACs): Soft Matter Tumbling Robots for Manipulation and Drug Delivery
title Magnetically Aligned Nanorods in Alginate Capsules (MANiACs): Soft Matter Tumbling Robots for Manipulation and Drug Delivery
title_full Magnetically Aligned Nanorods in Alginate Capsules (MANiACs): Soft Matter Tumbling Robots for Manipulation and Drug Delivery
title_fullStr Magnetically Aligned Nanorods in Alginate Capsules (MANiACs): Soft Matter Tumbling Robots for Manipulation and Drug Delivery
title_full_unstemmed Magnetically Aligned Nanorods in Alginate Capsules (MANiACs): Soft Matter Tumbling Robots for Manipulation and Drug Delivery
title_short Magnetically Aligned Nanorods in Alginate Capsules (MANiACs): Soft Matter Tumbling Robots for Manipulation and Drug Delivery
title_sort magnetically aligned nanorods in alginate capsules (maniacs): soft matter tumbling robots for manipulation and drug delivery
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6523834/
https://www.ncbi.nlm.nih.gov/pubmed/30935105
http://dx.doi.org/10.3390/mi10040230
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