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Xiaoli Liu

Researcher at Technical University of Denmark

Publications -  6
Citations -  144

Xiaoli Liu is an academic researcher from Technical University of Denmark. The author has contributed to research in topics: Methemoglobin & Red blood cell. The author has an hindex of 4, co-authored 6 publications receiving 67 citations.

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Therapeutic applications of multifunctional nanozymes

TL;DR: The novel applications of multifunctional nanozymes in various biomedical-related fields ranging from cancer diagnosis, cancer and antibacterial therapy to regenerative medicine are summarized.
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Haemoglobin-loaded metal organic framework-based nanoparticles camouflaged with a red blood cell membrane as potential oxygen delivery systems

TL;DR: This study presents a novel oxygen carrier system which might find applications as a blood surrogate by entrap Hb within a type of metal organic framework ( MOF)-based nanoparticle (MOF-NP) and shows that the structure and functionality of the encapsulated Hb are well preserved.
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Low-Fouling Electrosprayed Hemoglobin Nanoparticles with Antioxidant Protection as Promising Oxygen Carriers.

TL;DR: A novel HBOCs with high Hb content is fabricated and its potential as an artificial blood substitute is evaluated, demonstrating that the as-prepared Hb-NPs are hemo- and biocompatible while offering antioxidant protection and decreasing the formation of metHb.
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Hemoglobin-Based Oxygen Carriers Incorporating Nanozymes for the Depletion of Reactive Oxygen Species.

TL;DR: Results demonstrate that the reported nanocarriers show potential as novel oxygen delivery systems with prolonged catalytic activity against ROS, and are shown to be hemo- and bio-compatible.
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Metal-organic framework-based oxygen carriers with antioxidant protection as a result of a polydopamine coating.

TL;DR: In this paper, the surface of the as-prepared MOFHb-NPs with an antioxidant polydopamine (PDA) coating was modified to achieve minimal metHb conversion, and the ability of the resulting PDA-coated nanoparticles to scavenge important reactive oxygen species was demonstrated both in a test tube and in the presence of two relevant cell lines.