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arXiv
arxiv.org › html › 2509.17227v1
Hijacking Living Cells with Surface Engineering for the Internet of Bio-Nano Things
September 21, 2025 - Existing BNT architectures, e.g., ... genetic modification. This paper posits a fourth paradigm: the transient hijacking of living cells via non-genetic cell surface engineering (NG-CSE) to enable living BNTs....
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IEEE Xplore
ieeexplore.ieee.org › document › 11397612
Hijacking Living Cells With Surface Engineering for Internet of Bio-Nano Things | IEEE Journals & Magazine | IEEE Xplore
The Internet of Bio-Nano Things (IoBNT) promises to revolutionize healthcare by interfacing the cyber domain with living systems at unprecedented resolution. Realizing this vision hinges on the development of Bio-Nano Things (BNTs), i.e., functional ...
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arXiv
arxiv.org › pdf › 2509.17227 pdf
Hijacking Living Cells with Surface Engineering for the ...
Hijacking Living Cells with Surface Engineering for · the Internet of Bio-Nano Things
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arXiv
arxiv.org › abs › 2509.17227
[2509.17227] Hijacking Living Cells with Surface Engineering for the Internet of Bio-Nano Things
September 21, 2025 - Abstract page for arXiv paper 2509.17227: Hijacking Living Cells with Surface Engineering for the Internet of Bio-Nano Things
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ADS
ui.adsabs.harvard.edu › abs › 2025arXiv250917227I › abstract
Hijacking Living Cells with Surface Engineering for the Internet of Bio-Nano Things - ADS
Existing BNT architectures, e.g., ... This paper posits a fourth paradigm: the transient hijacking of living cells via non-genetic cell surface engineering (NG-CSE) to enable living BNTs....
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Semantic Scholar
semanticscholar.org › papers › a systematic review of bio-cyber interface technologies and security issues for internet of bio-nano things
[PDF] A Systematic Review of Bio-Cyber Interface Technologies and Security Issues for Internet of Bio-Nano Things | Semantic Scholar
This paper posits a fourth paradigm: the transient hijacking of living cells via non-genetic cell surface engineering (NG-CSE) to enable living BNTs, and proposes novel IoBNT architectures that leverage these capabilities, such as circulating ...
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IEEE Xplore
ieeexplore.ieee.org › document › 7060516
Ieee
The novel paradigm of the Internet of Bio-Nano Things (IoBNT) is introduced in this paper by stemming from synthetic biology and nanotechnology tools that allow the engineering of biological embedded computing devices. Based on biological cells, and their functionalities in the biochemical ...
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ACS Publications
pubs.acs.org › doi › 10.1021 › acs.chemrev.7b00157
Engineering the Surface of Therapeutic “Living” Cells | Chemical Reviews
Ekin Ince, Murat Kuscu. Hijacking Living Cells With Surface Engineering for Internet of Bio-Nano Things. IEEE Internet of Things Journal 2026, 13 (10) , 20359-20374.
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arXiv
arxiv.org › pdf › 2106.14273 pdf
Date of publication xxxx 00, 0000, date of current version xxxx 00, 0000.
engineers to effectively use biological cells as programmable substrates to realize Bio-NanoThings
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IEEE Xplore
ieeexplore.ieee.org › document › 9467302
A Systematic Review of Bio-Cyber Interface Technologies and Security Issues for Internet of Bio-Nano Things | IEEE Journals & Magazine | IEEE Xplore
Advances in synthetic biology and ... cells' structure, as well as enabling engineers to effectively use biological cells as programmable substrates to realize Bio-NanoThings (biological ......
Find elsewhere
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IEEE Xplore
ieeexplore.ieee.org › document › 7060516 › 1000
The internet of Bio-Nano things | IEEE Journals & Magazine | IEEE Xplore
The Internet of Things (IoT) has become an important research topic in the last decade, where things refer to interconnected machines and objects with embedded computing capabilities employed to extend the Internet to many application domains. While research and development continue for general ...
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Ieee
fnwf2023.ieee.org › program › tutorials › tut11 internet-bio-nano-things-getting-practical-molecular-communications
TUT11: Internet of Bio-Nano Things: Getting Practical with Molecular Communications | IEEE Future Networks World Forum
November 6, 2023 - In the center of this holistic approach lies an emerging ICT framework, the Internet of Bio-Nano Things (IoBNT), which envisions heterogeneous collaborative networks of natural and artificial nano-biological devices (e.g., engineered bacteria, human cells, nanobiosensors, microfluidic devices), seamlessly integrated with the Internet infrastructure.
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ResearchGate
researchgate.net › publication › 353037619_A_Systematic_Review_of_Bio-Cyber_Interface_Technologies_and_Security_Issues_for_Internet_of_Bio-Nano_Things
(PDF) A Systematic Review of Bio-Cyber Interface Technologies and Security Issues for Internet of Bio-Nano Things
July 8, 2021 - Advances in synthetic biology and ... as well as enabling engineers to effectively use biological cells as programmable substrates to realize Bio-NanoThings (biological embedded computing devices)....
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ResearchGate
researchgate.net › figure › Taxonomy-of-Systematic-Review-of-Bio-Cyber-Interface-Technologies-and-Security-Issues-in_fig2_353037619
Taxonomy of Systematic Review of Bio-Cyber Interface Technologies and... | Download Scientific Diagram
Download scientific diagram | Taxonomy of Systematic Review of Bio-Cyber Interface Technologies and Security Issues in the Internet of Bio-Nano Things. from publication: A Systematic Review of Bio-Cyber Interface Technologies and Security Issues for Internet of Bio-Nano Things | Advances in synthetic biology and nanotechnology have contributed to the design of tools that can be used to control, reuse, modify, and re-engineer cells' structure, as well as enabling engineers to effectively use biological cells as programmable substrates to realize...
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ITU
itu.int › dms_pub › itu-s › opb › jnl › S-JNL-VOL2.ISSUE3-2021-A08-PDF-E.pdf pdf
INTERNET OF BIO‑NANO THINGS
The requested URL was rejected. Please consult with your administrator. Your support ID is: · [Go Back]
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IEEE Xplore
ieeexplore.ieee.org › document › 10720911
Advancing the Internet of Bio-Nano Things: A Novel DNA-Based Track-Hopper System for Enhanced Efficiency and Reliability | IEEE Journals & Magazine | IEEE Xplore
The thriving domain of the Internet of Bio-Nano Things (IoBNT) promises revolutionary advances in biomedicine, enabling biosensing, health monitoring, and therapeutic capabilities at the cellular level.
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MDPI
mdpi.com › 1420-3049 › 28 › 14 › 5564
A Role for Bottom-Up Synthetic Cells in the Internet of Bio-Nano Things?
July 21, 2023 - This, in the words of these authors, is “to deliver intra-body status parameters (and receive commands and instructions) to (from) a healthcare provider” [1]. To realize IoBNT goals, two key abilities can be identified: (i) computing with bio-nano things and exploiting the related communication abilities thanks to the unique feature of operating across bio/chemical interfaces; (ii) inventing new modalities for managing chemical signals, i.e., developing new versions of Information and Communication Technologies (ICTs) in the bio/chemical domain, i.e., bio/chem-ICTs [4,16,26,27]. The main c
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Ieee
ieeetv.ieee.org › product › internet-bio-nano-things-and-wireless-things
Internet of Bio Nano-Things and Wireless Things | IEEETV
Dr. Yansha Deng, Assistant Professor with the Department of Engineering in King’s College, London discusses her recent research on the topic of the Internet of Bio-Nano Things. She first talks about channel and propagation, then Point-to-Point MC system and finally, moves on to chemical reactions ...
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AIP Publishing
pubs.aip.org › aip › apm › article › 11 › 8 › 080901 › 2905671 › Graphene-and-related-materials-for-the-Internet-of
Graphene and related materials for the Internet of Bio-Nano Things | APL Materials | AIP Publishing
August 7, 2023 - Copyright 2019 IEEE. ... (a) Conceptual drawing of a continuous health monitoring application of IoBNT involving intrabody distributed MC nanonetworks of biosensors and a bio-cyber interface interconnecting the nanonetworks and conventional ...
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arXiv
arxiv.org › html › 2602.00787
Hybrid Artificial-Living Cell Collectives for Wetware Computing
January 31, 2026 - The Internet of Bio-Nano Things (IoBNT) envisions heterogeneous networks in which engineered micro/nanoscale devices and biological entities cooperate inside physiological environments to collectively sense, compute, and actuate [1]. For such networks, the viable exchange of information is ...