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Jing Lin

Researcher at Shenzhen University

Publications -  285
Citations -  19770

Jing Lin is an academic researcher from Shenzhen University. The author has contributed to research in topics: Photothermal therapy & Markov chain Monte Carlo. The author has an hindex of 60, co-authored 266 publications receiving 13047 citations. Previous affiliations of Jing Lin include Hunan University & Australian National University.

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Two-dimensional transition metal carbides and nitrides (MXenes) for biomedical applications.

TL;DR: This review introduces the preparation methods and surface modifications with respect to MXenes, and highlights their various biomedical applications, such as with biosensors, antibacterial materials, bioimaging probes, therapeutics, and theranostics.
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Light-Triggered Theranostics Based on Photosensitizer-Conjugated Carbon Dots for Simultaneous Enhanced-Fluorescence Imaging and Photodynamic Therapy

TL;DR: This paper aims to demonstrate the efforts towards in-situ applicability of EMMARM, as to provide real-time information about concrete mechanical properties such as E-modulus and compressive strength to describe the response of the immune system to EMTs.
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Biodegradable Gold Nanovesicles with an Ultrastrong Plasmonic Coupling Effect for Photoacoustic Imaging and Photothermal Therapy

TL;DR: A novel theranostic platform based on biodegradable plasmonic gold nanovesicles for photoacoustic (PA) imaging and PTT with improved clearance of the dissociated particles after the completion of PTT is reported.
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Photosensitizer-Loaded Gold Vesicles with Strong Plasmonic Coupling Effect for Imaging-Guided Photothermal/Photodynamic Therapy

TL;DR: The strong NIR absorption and the capability of encapsulating photosensitizer Ce6 in GVs enable trimodality NIR fluorescence/thermal/photoacoustic imaging-guided synergistic photothermal/photodynamic therapy (PTT/PDT) with improved efficacy.
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Folic Acid-conjugated Graphene Oxide loaded with Photosensitizers for Targeting Photodynamic Therapy.

TL;DR: Folic acid-conjugated GO loaded Ce6 had great potential as effective drug delivery system in targeting PDT and was suggested to have remarkable photodynamic efficacy on MGC803 cells upon irradiation.