Rongjun Chen

Rongjun Chen

Imperial College London

H-index: 29

Europe-United Kingdom

About Rongjun Chen

Rongjun Chen, With an exceptional h-index of 29 and a recent h-index of 23 (since 2020), a distinguished researcher at Imperial College London, specializes in the field of Biomaterials, Nanomedicine, Drug Delivery, Vaccine Formulation, Cell and Gene Therapy.

His recent articles reflect a diverse array of research interests and contributions to the field:

Selective binding of cationic fibrinogen-mimicking chitosan nanoparticles to activated platelets and efficient drug release for antithrombotic therapy

Mitocytosis Mediated by an Enzyme‐activable Mitochondrion‐disturbing Polymer‐drug Conjugate Enhances Active Penetration in Glioblastoma Therapy

Thermally Robust Solvent-Free Liquid Polyplexes for Heat-Shock Protection and Long-Term Room Temperature Storage of Therapeutic Nucleic Acids

Potentiating the Immune Responses of HBsAg-VLP Vaccine Using a Polyphosphoester-Based Cationic Polymer Adjuvant

Development of Nanopackaging for Storage and Transport of Loaded Lipid Nanoparticles

Modulating tumor-stromal crosstalk via a redox-responsive nanomedicine for combination tumor therapy

Feasibility of Coacervate-Like Nanostructure for Instant Drug Nanoformulation

Impairing Tumor Metabolic Plasticity Via a Stable Metal‐Phenolic Based Polymeric Nanomedicine to Suppress Colorectal Cancer

Rongjun Chen Information

University

Position

Reader in Biomaterials Engineering

Citations(all)

2856

Citations(since 2020)

1642

Cited By

1699

hIndex(all)

29

hIndex(since 2020)

23

i10Index(all)

58

i10Index(since 2020)

44

Email

University Profile Page

Google Scholar

Rongjun Chen Skills & Research Interests

Biomaterials

Nanomedicine

Drug Delivery

Vaccine Formulation

Cell and Gene Therapy

Top articles of Rongjun Chen

Selective binding of cationic fibrinogen-mimicking chitosan nanoparticles to activated platelets and efficient drug release for antithrombotic therapy

International Journal of Biological Macromolecules

2024/4/21

Mitocytosis Mediated by an Enzyme‐activable Mitochondrion‐disturbing Polymer‐drug Conjugate Enhances Active Penetration in Glioblastoma Therapy

Advanced Materials

2024/2/1

Thermally Robust Solvent-Free Liquid Polyplexes for Heat-Shock Protection and Long-Term Room Temperature Storage of Therapeutic Nucleic Acids

Biomacromolecules

2024

Potentiating the Immune Responses of HBsAg-VLP Vaccine Using a Polyphosphoester-Based Cationic Polymer Adjuvant

ACS Applied Materials & Interfaces

2023/10/10

Development of Nanopackaging for Storage and Transport of Loaded Lipid Nanoparticles

Nano Letters

2023/6/6

Peter K Petrov
Peter K Petrov

H-Index: 16

Rongjun Chen
Rongjun Chen

H-Index: 19

Modulating tumor-stromal crosstalk via a redox-responsive nanomedicine for combination tumor therapy

Journal of Controlled Release

2023/4/1

Impairing Tumor Metabolic Plasticity Via a Stable Metal‐Phenolic Based Polymeric Nanomedicine to Suppress Colorectal Cancer

Advanced Materials

2023/3/14

Attenuating Metabolic Competition of Tumor Cells for Favoring the Nutritional Demand of Immune Cells by a Branched Polymeric Drug Delivery System

Advanced Materials

2023/3

Development and optimisation of cationic lipid nanoparticles for mRNA delivery

bioRxiv

2023

A Fibrinogen‐mimicking, Activated‐platelet‐sensitive Nanocoacervate Enhances Thrombus Targeting and Penetration of Tissue Plasminogen Activator for Effective Thrombolytic Therapy

Advanced Healthcare Materials

2022/7/21

Poly (L-lysine isolphthalamide)(PLP) polymers with hydrophobic pendant chains

2022/4/5

A Transformable Amphiphilic and Block Polymer− Dendron Conjugate for Enhanced Tumor Penetration and Retention with Cellular Homeostasis Perturbation via Membrane Flow

Advanced Materials

2022/4

A dendritic polymer‐based nanosystem mediates drug penetration and irreversible endoplasmic reticulum stresses in tumor via neighboring effect

Advanced Materials

2022/3/15

Synergistic disruption of metabolic homeostasis through hyperbranched poly (ethylene glycol) conjugates as nanotherapeutics to constrain cancer growth

Advanced Materials

2022/3

Branched Polymer‐Based Redox/Enzyme‐Activatable Photodynamic Nanoagent to Trigger STING‐Dependent Immune Responses for Enhanced Therapeutic Effect

Advanced Functional Materials

2022/3

Stimuli‐Sensitive Linear–Dendritic Block Copolymer–Drug Prodrug as a Nanoplatform for Tumor Combination Therapy

Advanced Materials

2022/2

A pH-responsive, Endosomolytic Liposome Functionalized with Membrane-anchoring, Comb-like Pseudopeptides for Enhanced Intracellular Delivery and Cancer Treatment

Biomaterials Science

2022

Siyuan Chen
Siyuan Chen

H-Index: 0

Rongjun Chen
Rongjun Chen

H-Index: 19

Multiphysics Modelling and Simulation of Thrombolysis via Activated Platelet-Targeted Nanomedicine

Pharmaceutical Research

2022/1

Enhanced chemo-photodynamic therapy of an enzyme-responsive prodrug in bladder cancer patient-derived xenograft models

Biomaterials

2021/10/1

See List of Professors in Rongjun Chen University(Imperial College London)