Literature DB >> 33141741

Soft erythrocyte-based bacterial microswimmers for cargo delivery.

Yunus Alapan1, Oncay Yasa1, Oliver Schauer2, Joshua Giltinan1, Ahmet F Tabak1, Victor Sourjik2, Metin Sitti3.   

Abstract

Bacteria-propelled biohybrid microswimmers have recently shown to be able to actively transport and deliver cargos encapsulated into their synthetic constructs to specific regions locally. However, usage of synthetic materials as cargo carriers can result in inferior performance in load-carrying efficiency, biocompatibility, and biodegradability, impeding clinical translation of biohybrid microswimmers. Here, we report construction and external guidance of bacteria-driven microswimmers using red blood cells (RBCs; erythrocytes) as autologous cargo carriers for active and guided drug delivery. Multifunctional biohybrid microswimmers were fabricated by attachment of RBCs [loaded with anticancer doxorubicin drug molecules and superparamagnetic iron oxide nanoparticles (SPIONs)] to bioengineered motile bacteria, Escherichia coli MG1655, via biotin-avidin-biotin binding complex. Autonomous and on-board propulsion of biohybrid microswimmers was provided by bacteria, and their external magnetic guidance was enabled by SPIONs loaded into the RBCs. Furthermore, bacteria-driven RBC microswimmers displayed preserved deformability and attachment stability even after squeezing in microchannels smaller than their sizes, as in the case of bare RBCs. In addition, an on-demand light-activated hyperthermia termination switch was engineered for RBC microswimmers to control bacteria population after operations. RBCs, as biological and autologous cargo carriers in the biohybrid microswimmers, offer notable advantages in stability, deformability, biocompatibility, and biodegradability over synthetic cargo-carrier materials. The biohybrid microswimmer design presented here transforms RBCs from passive cargo carriers into active and guidable cargo carriers toward targeted drug and other cargo delivery applications in medicine.
Copyright © 2018 The Authors, some rights reserved; exclusive licensee American Association for the Advancement of Science. No claim to original U.S. Government Works.

Entities:  

Year:  2018        PMID: 33141741     DOI: 10.1126/scirobotics.aar4423

Source DB:  PubMed          Journal:  Sci Robot        ISSN: 2470-9476


  19 in total

1.  Soft actuators for real-world applications.

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Review 2.  Bioinspired and Biomimetic Nanomedicines for Targeted Cancer Therapy.

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Review 3.  Chemical Conjugation in Drug Delivery Systems.

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Journal:  Front Chem       Date:  2022-05-26       Impact factor: 5.545

4.  Magnetically steerable bacterial microrobots moving in 3D biological matrices for stimuli-responsive cargo delivery.

Authors:  Mukrime Birgul Akolpoglu; Yunus Alapan; Nihal Olcay Dogan; Saadet Fatma Baltaci; Oncay Yasa; Gulsen Aybar Tural; Metin Sitti
Journal:  Sci Adv       Date:  2022-07-15       Impact factor: 14.957

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Journal:  Micromachines (Basel)       Date:  2021-04-20       Impact factor: 2.891

7.  Multifunctional magnetic soft composites: a review.

Authors:  Shuai Wu; Wenqi Hu; Qiji Ze; Metin Sitti; Ruike Zhao
Journal:  Multifunct Mater       Date:  2020-12-08

8.  3D Microprinting of Iron Platinum Nanoparticle-Based Magnetic Mobile Microrobots.

Authors:  Joshua Giltinan; Varun Sridhar; Ugur Bozuyuk; Devin Sheehan; Metin Sitti
Journal:  Adv Intell Syst       Date:  2020-11-13

9.  Serial imaging of micro-agents and cancer cell spheroids in a microfluidic channel using multicolor fluorescence microscopy.

Authors:  Mert Kaya; Fabian Stein; Jeroen Rouwkema; Islam S M Khalil; Sarthak Misra
Journal:  PLoS One       Date:  2021-06-15       Impact factor: 3.240

10.  Bioinspired Soft Robot with Incorporated Microelectrodes.

Authors:  Ting Wang; Bianca Migliori; Beatrice Miccoli; Su Ryon Shin
Journal:  J Vis Exp       Date:  2020-02-28       Impact factor: 1.424

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