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Jan C. M. van Hest

University of Warwick · GB
🔎 Find collaborators in Organic Chemistry · Biomaterials →
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Area of research
Organic Chemistry · Biomaterials
Research interest
Research interests include Nanotechnology, Materials science, Polymersome, Nanoparticle, Chemistry, and Copolymer.
h-index
citations
2,008
works
32
NIH funding
primary concept
email

Recent publications

Polymersome-based nanomotors: preparation, motion control, and biomedical applications
Chemical Science 2025cited by 18position: middledoi
Intracompartmental 3D Printing of Enzymatically Active Organelle Mimics
ACS Nano 2025cited by 2position: middledoi
Nanomotors driven by single-atom catalysts
Cell Reports Physical Science 2024cited by 12position: middledoi
Responsive Peptide Nanofibers with Theranostic and Prognostic Capacity
Angewandte Chemie International Edition 2022cited by 21position: lastdoi
Photoactivated nanomotors via aggregation induced emission for enhanced phototherapy
Nature Communications 2021cited by 188position: lastdoi
Exploring the Impact of Morphology on the Properties of Biodegradable Nanoparticles and Their Diffusion in Complex Biological Medium
Biomacromolecules 2020cited by 158position: lastdoi
Photoactivated Polymersome Nanomotors: Traversing Biological Barriers
Angewandte Chemie International Edition 2020cited by 133position: lastdoi
Hyperthermia‐Triggered On‐Demand Biomimetic Nanocarriers for Synergetic Photothermal and Chemotherapy
Advanced Science 2020cited by 98position: middledoi
Hybrid Biodegradable Nanomotors through Compartmentalized Synthesis
Nano Letters 2020cited by 87position: middledoi
Tuning Size and Morphology of mPEG-b-p(HPMA-Bz) Copolymer Self-Assemblies Using Microfluidics
Polymers 2020cited by 25position: lastdoi
Wormlike Nanovector with Enhanced Drug Loading Using Blends of Biodegradable Block Copolymers
Biomacromolecules 2020cited by 24position: middledoi
Photoactivated Polymersome Nanomotors: Traversing Biological Barriers
Angewandte Chemie 2020cited by 24position: lastdoi
Influence of surface charge on the formulation of elongated PEG-<i>b</i>-PDLLA nanoparticles
Polymer Chemistry 2020cited by 10position: lastdoi
Mimicking Cellular Compartmentalization in a Hierarchical Protocell through Spontaneous Spatial Organization
ACS Central Science 2019cited by 153position: middledoi
Myosin II isoforms play distinct roles in adherens junction biogenesis
eLife 2019cited by 89position: middledoi
Biomorphic Engineering of Multifunctional Polylactide Stomatocytes toward Therapeutic Nano‐Red Blood Cells
Advanced Science 2019cited by 51position: lastdoi
Molecular Programming of Biodegradable Nanoworms via Ionically Induced Morphology Switch toward Asymmetric Therapeutic Carriers
Small 2019cited by 30position: middledoi
Myosin II isoforms play distinct roles in <i>adherens</i> junction biogenesis
bioRxiv (Cold Spring Harbor Laboratory) 2019cited by 0position: middledoi
Author response: Myosin II isoforms play distinct roles in adherens junction biogenesis
2019cited by 0position: middledoi
Biodegradable Synthetic Organelles Demonstrate ROS Shielding in Human-Complex-I-Deficient Fibroblasts
ACS Central Science 2018cited by 89position: lastdoi
Effect of Formulation and Processing Parameters on the Size of mPEG-<i>b</i>-p(HPMA-Bz) Polymeric Micelles
Langmuir 2018cited by 76position: middledoi
A filter-free blood-brain barrier model to quantitatively study transendothelial delivery of nanoparticles by fluorescence spectroscopy
Journal of Controlled Release 2018cited by 44position: middledoi
Development of Morphologically Discrete PEG–PDLLA Nanotubes for Precision Nanomedicine
Biomacromolecules 2018cited by 31position: lastdoi
pH-Induced Transformation of Biodegradable Multilamellar Nanovectors for Enhanced Tumor Penetration
ACS Macro Letters 2018cited by 29position: lastdoi
Biodegradable, Drug‐Loaded Nanovectors via Direct Hydration as a New Platform for Cancer Therapeutics
Small 2018cited by 24position: middledoi
Adaptive Polymersome and Micelle Morphologies in Anticancer Nanomedicine: From Design Rationale to Fabrication and Proof‐of‐Concept Studies
Advanced Therapeutics 2018cited by 18position: middledoi
Hierarchical Self-Assembly of a Copolymer-Stabilized Coacervate Protocell
Journal of the American Chemical Society 2017cited by 308position: lastdoi
Morphology Under Control: Engineering Biodegradable Stomatocytes
ACS Macro Letters 2017cited by 62position: lastdoi
Legomedicine—A Versatile Chemo-Enzymatic Approach for the Preparation of Targeted Dual-Labeled Llama Antibody–Nanoparticle Conjugates
Bioconjugate Chemistry 2017cited by 43position: lastdoi
Site-specific peptide and protein immobilization on surface plasmon resonance chips via strain-promoted cycloaddition
Lab on a Chip 2013cited by 28position: middledoi

Grants

No grants ingested yet.

Frequent collaborators

David Williams · Georgia Institute of Technology21 papers (2017–2021) · 13 papers (2017–2021)Shoupeng Cao · Harbin Medical University11 papers (2018–2025)Jingxin Shao · Harbin Institute of Technology9 papers (2018–2025) · 7 papers (2017–2021)Alexander F. Mason · UNSW Sydney5 papers (2017–2025)Roxane Ridolfo · University of Massachusetts Amherst4 papers (2018–2020) · 3 papers (2019–2019)Fenghua Meng · Soochow University3 papers (2018–2020) · 3 papers (2019–2019) · 3 papers (2019–2019)D. D. Joseph · Université Claude Bernard Lyon 13 papers (2019–2019)Cornelus F. van Nostrum · Utrecht University3 papers (2017–2020) · 3 papers (2019–2019)Tien Dang · Weill Cornell Medicine3 papers (2019–2019)Benoît Ladoux · National University of Singapore3 papers (2019–2019)Wim E. Hennink · Utrecht University2 papers (2018–2020) · 2 papers (2018–2020)Heiner Friedrich · Utrecht University2 papers (2020–2021) · 2 papers (2018–2020)
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