Biomimetic Self‐Propelled Asymmetric Nanomotors for Cascade‐Targeted Treatment of Neurological Inflammation DOI Creative Commons
Jiamin Ye,

Yueyue Fan,

Yaoguang She

et al.

Advanced Science, Journal Year: 2024, Volume and Issue: 11(22)

Published: March 9, 2024

Abstract The precise targeted delivery of therapeutic agents to deep regions the brain is crucial for effective treatment various neurological diseases. However, achieving this goal challenging due presence blood‒brain barrier (BBB) and complex anatomy brain. Here, a biomimetic self‐propelled nanomotor with cascade targeting capacity developed inflammatory nanomotors are designed asymmetric structures mesoporous SiO 2 head multiple MnO tentacles. Macrophage membrane modification endows BBB penetration abilities catalyze degradation H O into , not only by reducing inflammation but also providing driving force penetration. Additionally, loaded curcumin, which actively regulates macrophage polarization from M1 M2 phenotype. All in vitro cell, organoid model, vivo animal experiments confirmed effectiveness targeting, penetration, anti‐inflammatory, nervous system function maintenance. Therefore, study introduces platform ability active

Language: Английский

The blood–brain barrier: Structure, regulation and drug delivery DOI Creative Commons
Di Wu, Qi Chen, Xiaojie Chen

et al.

Signal Transduction and Targeted Therapy, Journal Year: 2023, Volume and Issue: 8(1)

Published: May 25, 2023

Abstract Blood–brain barrier (BBB) is a natural protective membrane that prevents central nervous system (CNS) from toxins and pathogens in blood. However, the presence of BBB complicates pharmacotherapy for CNS disorders as most chemical drugs biopharmaceuticals have been impeded to enter brain. Insufficient drug delivery into brain leads low therapeutic efficacy well aggravated side effects due accumulation other organs tissues. Recent breakthrough materials science nanotechnology provides library advanced with customized structure property serving powerful toolkit targeted delivery. In-depth research field anatomical pathological study on further facilitates development brain-targeted strategies enhanced crossing. In this review, physiological different cells contributing are summarized. Various emerging permeability regulation crossing including passive transcytosis, intranasal administration, ligands conjugation, coating, stimuli-triggered disruption, overcome obstacle highlighted. Versatile systems ranging organic, inorganic, biologics-derived their synthesis procedures unique physio-chemical properties summarized analyzed. This review aims provide an up-to-date comprehensive guideline researchers diverse fields, offering perspectives system.

Language: Английский

Citations

598

Trends in Micro‐/Nanorobotics: Materials Development, Actuation, Localization, and System Integration for Biomedical Applications DOI
Ben Wang, Kostas Kostarelos, Bradley J. Nelson

et al.

Advanced Materials, Journal Year: 2020, Volume and Issue: 33(4)

Published: Dec. 4, 2020

Abstract Micro‐/nanorobots (m‐bots) have attracted significant interest due to their suitability for applications in biomedical engineering and environmental remediation. Particularly, vivo diagnosis intervention been the focus of extensive research recent years with various clinical imaging techniques being applied localization tracking. The successful integration well‐designed m‐bots surface functionalization, remote actuation systems, becomes crucial step toward applications, especially uses. This review thus addresses four different aspects m‐bots: design/fabrication, actuation, localization. diagnosis, sensing, microsurgery, targeted drug/cell delivery, thrombus ablation, wound healing are reviewed from these viewpoints. developed m‐bot systems comprehensively compared evaluated based on characteristics. current challenges directions future this field summarized.

Language: Английский

Citations

385

Dual-responsive biohybrid neutrobots for active target delivery DOI
Hongyue Zhang, Ze‐sheng Li, Changyong Gao

et al.

Science Robotics, Journal Year: 2021, Volume and Issue: 6(52)

Published: March 17, 2021

A neutrophil-hybrid microrobot is capable of active accumulation close to the brain and penetration across blood-brain barrier.

Language: Английский

Citations

360

Engineering microrobots for targeted cancer therapies from a medical perspective DOI Creative Commons
Christine K. Schmidt, Mariana Medina‐Sánchez, Richard J. Edmondson

et al.

Nature Communications, Journal Year: 2020, Volume and Issue: 11(1)

Published: Nov. 5, 2020

Abstract Systemic chemotherapy remains the backbone of many cancer treatments. Due to its untargeted nature and severe side effects it can cause, numerous nanomedicine approaches have been developed overcome these issues. However, targeted delivery therapeutics challenging. Engineering microrobots is increasingly receiving attention in this regard. Their functionalities, particularly their motility, allow penetrate tissues reach cancers more efficiently. Here, we highlight how different microrobots, ranging from tailor-made motile bacteria tiny bubble-propelled microengines hybrid spermbots, be engineered integrate sophisticated features optimised for precision-targeting a wide range cancers. Towards this, importance integrating clinicians, public patients early on development novel technologies.

Language: Английский

Citations

338

Chemotaxis-driven delivery of nano-pathogenoids for complete eradication of tumors post-phototherapy DOI Creative Commons
Min Li, Shuya Li, Han Zhou

et al.

Nature Communications, Journal Year: 2020, Volume and Issue: 11(1)

Published: Feb. 28, 2020

Abstract The efficacy of nano-mediated drug delivery has been impeded by multiple biological barriers such as the mononuclear phagocyte system (MPS), well vascular and interstitial barriers. To overcome abovementioned obstacles, we report a nano-pathogenoid (NPN) that can in situ hitchhike circulating neutrophils supplement photothermal therapy (PTT). Cloaked with bacteria-secreted outer membrane vesicles inheriting pathogen-associated molecular patterns native bacteria, NPNs are effectively recognized internalized neutrophils. migrate towards inflamed tumors, extravasate across blood vessels, penetrate through tumors. Then rapidly released from response to inflammatory stimuli subsequently taken up tumor cells exert anticancer effects. Strikingly, due excellent targeting efficacy, cisplatin-loaded combined PTT completely eradicate tumors all treated mice. Such nano-platform represents an efficient generalizable strategy cell hitchhiking enhanced targeted delivery.

Language: Английский

Citations

239

Recent progress in targeted delivery vectors based on biomimetic nanoparticles DOI Creative Commons
Li Chen, Weiqi Hong, Wenyan Ren

et al.

Signal Transduction and Targeted Therapy, Journal Year: 2021, Volume and Issue: 6(1)

Published: June 7, 2021

Abstract Over the past decades, great interest has been given to biomimetic nanoparticles (BNPs) since rise of targeted drug delivery systems and nanotechnology. Biological vectors including cell membranes, extracellular vesicles (EVs), viruses are considered promising candidates for owing their biocompatibility biodegradability. BNPs, integration biological functional agents, anticipated load cargos or camouflage synthetic achieve delivery. Despite excellent intrinsic properties, natural deliberately modified endow multiple functions such as good permeability, improved loading capability, high specificity. Through structural modification transformation vectors, they pervasively utilized more effective vehicles that can deliver contrast chemotherapy drugs, nucleic acids, genes target sites refractory disease therapy. This review summarizes recent advances in based on EVs, viruses, highlighting potential applications BNPs fields biomedical imaging therapy industry, well discussing possibility clinical translation exploitation trend these BNPs.

Language: Английский

Citations

215

Engineering Cell Membrane‐Based Nanotherapeutics to Target Inflammation DOI Creative Commons

Huize Yan,

Dan Shao, Yeh‐Hsing Lao

et al.

Advanced Science, Journal Year: 2019, Volume and Issue: 6(15)

Published: May 22, 2019

Abstract Inflammation is ubiquitous in the body, triggering desirable immune response to defend against dangerous signals or instigating undesirable damage cells and tissues cause disease. Nanomedicine holds exciting potential modulating inflammation. In particular, cell membranes derived from involved inflammatory process may be used coat nanotherapeutics for effective targeted delivery tissues. Herein, recent progress of rationally engineering membrane‐based inflammation therapy highlighted, challenges opportunities presented realizing full cell‐membrane coating targeting manipulating microenvironment are discussed.

Language: Английский

Citations

205

Engineered neutrophil-derived exosome-like vesicles for targeted cancer therapy DOI Creative Commons
Jiahui Zhang, Cheng Ji, Hongbo Zhang

et al.

Science Advances, Journal Year: 2022, Volume and Issue: 8(2)

Published: Jan. 12, 2022

Neutrophil-derived exosomes induce tumor cell apoptosis by delivering cytotoxic proteins and activating caspase signaling pathway.

Language: Английский

Citations

175

Platelet for drug delivery DOI
Yifei Lü, Quanyin Hu, Chen Jiang

et al.

Current Opinion in Biotechnology, Journal Year: 2018, Volume and Issue: 58, P. 81 - 91

Published: Dec. 5, 2018

Language: Английский

Citations

173

Recent advances in photodynamic therapy for cancer and infectious diseases DOI

Xutong Shi,

Can Yang Zhang, Jin Gao

et al.

Wiley Interdisciplinary Reviews Nanomedicine and Nanobiotechnology, Journal Year: 2019, Volume and Issue: 11(5)

Published: May 6, 2019

Abstract Photodynamic therapy (PDT) is a treatment by combining light and photosensitizer to generate reactive oxygen species (ROS) for cellular damage, used treat cancer infectious diseases. In this review, we focus on recent advances in design of new photosensitizers increased production ROS genetic engineering biological study signaling pathways. A concept has been proposed that PDT‐induced acute inflammation can mediate neutrophil infiltration deliver therapeutics deep tumor tissues. Combination PDT immunotherapies (neutrophil‐mediated therapeutic delivery) shown the promising translation therapies. Furthermore, area bacterial infections overcome antimicrobial resistance. Finally, have discussed directions therapies summary, believe rational innovations nanomaterials may great impact This article categorized under: Therapeutic Approaches Drug Discovery > Nanomedicine Oncologic Disease Infectious Nanotechnology Biology Nanoscale Systems

Language: Английский

Citations

162