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Chemistry

D-Index
53
Citations
8730
World Ranking
13212
National Ranking
527

Overview

Ling Peng is affiliated with Aix-Marseille University in France and has a research focus primarily in Biochemistry, Genetics and Molecular Biology as well as Medicine. Their work spans several subfields, including Molecular Biology, Polymers and Plastics, Organic Chemistry, Infectious Diseases, and Pulmonary and Respiratory Medicine.

The scientist's publications frequently explore topics related to dendrimers and hyperbranched polymers, RNA interference and gene delivery, advanced biosensing and bioanalysis techniques, nanoparticle-based drug delivery, nanoplatforms for cancer theranostics, and research on SARS-CoV-2 and COVID-19 clinical studies.

Notable recent papers authored by Ling Peng include:

  • "Therapeutic siRNA: state of the art" (2020, Signal Transduction and Targeted Therapy)
  • "Natural killer cells modulate motor neuron-immune cell cross talk in models of Amyotrophic Lateral Sclerosis" (2020, Nature Communications)
  • "Self-Assembling Supramolecular Dendrimers for Biomedical Applications: Lessons Learned from Poly(amidoamine) Dendrimers" (2020, Accounts of Chemical Research)
  • "Dendrimeric nanosystem consistently circumvents heterogeneous drug response and resistance in pancreatic cancer" (2021, Exploration)
  • "Thermostable ionizable lipid-like nanoparticle (iLAND) for RNAi treatment of hyperlipidemia" (2022, Science Advances)

Ling Peng frequently collaborates with several coauthors, including Juan Iovanna, Yi Xia, Sabrina Pricl, Yingxia Liu, and Erik Laurini. Their collaborative efforts have contributed to advancing knowledge in their shared fields of study.

The scientist publishes regularly in several venues, with a particular presence in Research Square (Research Square), Advanced Materials, Chemical Communications, Science Advances, and the Proceedings of the National Academy of Sciences.

Best Publications

  • Anticancer drug nanomicelles formed by self-assembling amphiphilic dendrimer to combat cancer drug resistance

    Tuo Wei;Chao Chen;Juan Liu;Cheng Liu

  • PAMAM dendrimers for efficient siRNA delivery and potent gene silencing.

    Jiehua Zhou;Jiangyu Wu;Jiangyu Wu;Nadia Hafdi;Jean-Paul Behr

  • Heterocyst differentiation and pattern formation in cyanobacteria: a chorus of signals

    Cheng-Cai Zhang;Sophie Laurent;Samer Sakr;Ling Peng

  • 19F NMR: a valuable tool for studying biological events.

    Han Chen;Stéphane Viel;Fabio Ziarelli;Ling Peng

  • An Amphiphilic Dendrimer for Effective Delivery of Small Interfering RNA and Gene Silencing In Vitro and In Vivo

    Tianzhu Yu;Xiaoxuan Liu;Xiaoxuan Liu;Anne-Laure Bolcato-Bellemin;Yang Wang

  • Adaptive amphiphilic dendrimer-based nanoassemblies as robust and versatile siRNA delivery systems.

    Xiaoxuan Liu;Jiehua Zhou;Tianzhu Yu;Chao Chen

  • Carbon/Nitrogen Metabolic Balance: Lessons from Cyanobacteria.

    Cheng-Cai Zhang;Cheng-Cai Zhang;Cong-Zhao Zhou;Robert L. Burnap;Ling Peng

  • A Dual Targeting Dendrimer-Mediated siRNA Delivery System for Effective Gene Silencing in Cancer Therapy

    Yiwen Dong;Tianzhu Yu;Ling Ding;Erik Laurini

  • Dynamic deconvolution of a pre-equilibrated dynamic combinatorial library of acetylcholinesterase inhibitors.

    Taridaporn Bunyapaiboonsri;Olof Ramström;Sophie Lohmann;Jean-Marie Lehn

  • Nonmetabolizable analogue of 2-oxoglutarate elicits heterocyst differentiation under repressive conditions in Anabaena sp. PCC 7120

    Sophie Laurent;Han Chen;Sylvie Bédu;Fabio Ziarelli

  • Poly(amidoamine) dendrimers: covalent and supramolecular synthesis

    Z. Lyu;L. Ding;A.Y.-T. Huang;A.Y.-T. Huang;C.-L. Kao

  • Highly efficient single atom cobalt catalyst for selective oxidation of alcohols

    Min Li;Shujie Wu;Xiaoyuan Yang;Jing Hu

  • Nanodrug formed by coassembly of dual anticancer drugs to inhibit cancer cell drug resistance

    Yuanyuan Zhao;Fei Chen;Yuanming Pan;Zhipeng Li

  • Self-Assembling Supramolecular Dendrimers for Biomedical Applications: Lessons Learned from Poly(amidoamine) Dendrimers.

    Zhenbin Lyu;Ling Ding;Aura Tintaru;Ling Peng

  • Efficient delivery of sticky siRNA and potent gene silencing in a prostate cancer model using a generation 5 triethanolamine-core PAMAM dendrimer.

    Xiaoxuan Liu;Cheng Liu;Erik Laurini;Paola Posocco

  • Dendrimers as non-viral vectors for siRNA delivery

    Xiaoxuan Liu;Xiaoxuan Liu;Xiaoxuan Liu;Palma Rocchi;Ling Peng

  • Arginine-terminated generation 4 PAMAM dendrimer as an effective nanovector for functional siRNA delivery in vitro and in vivo.

    Cheng Liu;Xiaoxuan Liu;Palma Rocchi;Fanqi Qu

  • Novel triazole ribonucleoside down-regulates heat shock protein 27 and induces potent anticancer activity on drug-resistant pancreatic cancer.

    Yi Xia;Yi Xia;Yang Liu;Jinqiao Wan;Menghua Wang

  • Photoactivatable lipid probes for studying biomembranes by photoaffinity labeling.

    Yi Xia;Ling Peng

  • Mastering Dendrimer Self-Assembly for Efficient siRNA Delivery: From Conceptual Design to In Vivo Efficient Gene Silencing.

    Chao Chen;Chao Chen;Paola Posocco;Xiaoxuan Liu;Qiang Cheng

  • Importance of size-to-charge ratio in construction of stable and uniform nanoscale RNA/dendrimer complexes

    Xin-Cheng Shen;Jiehua Zhou;Xiaoxuan Liu;Xiaoxuan Liu;Jiangyu Wu;Jiangyu Wu

  • why pentose- and not hexose-nucleic acids? purine-purine pairing in homo-dna: guanine, isoguanine, 2,6-diaminopurine, and xanthine.

    K. Groebke;J. Hunziker;W. Fraser;L. Peng

Frequent Co-Authors

Sabrina Pricl
Sabrina Pricl University of Trieste
Maurizio Fermeglia
Maurizio Fermeglia University of Trieste
John J. Rossi
John J. Rossi City Of Hope National Medical Center
Johan Neyts
Johan Neyts Rega Institute for Medical Research
Justin Stebbing
Justin Stebbing Imperial College London
Zicai Liang
Zicai Liang Peking University
Jakob Wirz
Jakob Wirz University of Basel
Xing-Jie Liang
Xing-Jie Liang National Center for Nanoscience and Technology, China
Donald A. Tomalia
Donald A. Tomalia Michigan State University

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