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Jianping Liu

Researcher at China Pharmaceutical University

Publications -  125
Citations -  2640

Jianping Liu is an academic researcher from China Pharmaceutical University. The author has contributed to research in topics: Medicine & Chemistry. The author has an hindex of 24, co-authored 99 publications receiving 1975 citations.

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Morphology/Interstitial Fluid Pressure-Tunable Nanopomegranate Designed by Alteration of Membrane Fluidity under Tumor Enzyme and PEGylation.

TL;DR: In this article, a dual-functional polymer-polypeptide (Biotin-PEG2000-GKGPRQITITK) was synthesized to construct the "peel" of nanopomegranate-like nanovectors (DI-MPL), in which docetaxel-loaded micelles was encapsulated as "seeds".
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Supramolecular copolymer modified statin-loaded discoidal rHDLs for atherosclerotic anti-inflammatory therapy by cholesterol efflux and M2 macrophage polarization

TL;DR: In this article, atorvastatin calcium-loaded d-rHDL was modified by a PEGylated ferrocene/β-cyclodextrin supramolecular copolymer (PF/TC), which is expected to possess plasma stability and biosafety as well as triggered drug release by cholesterol efflux promotion.
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The water holding ability of powder masses: Characterization and influence on the preparation of pellets via extrusion/spheronization

TL;DR: The water holding ability of powder masses greatly influences their extrusion/spheronization performance during pellets preparation, and two characterized parameters were proposed to quantify this ability and explore its influence on pellets preparation.
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Development of cryptotanshinone-loaded pellets for angina chronotherapy: In vitro/in vivo prediction and evaluation.

TL;DR: This deconvolution-based method could be applied to adjust the in vivo performance of drugs for angina chronotherapy.
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Glycoprotein Ib-regulated micro platelet ghost for biosafe distribution and photothermal oncotherapy.

TL;DR: In this paper , micro-sized cellular platelet "ghosts" (PGs, 1.32 μm, platelet without inner granules and coagulation) were employed as carriers to ship hollow gold nanoparticles (HGNs, 58.7 nm), forming a hierarchical biosafe system to reduce normal tissue interception and enhance tumor targeting delivery of HGNs for improved photothermal therapy.