ML6600

Phototruncation cell tracking with near-infrared photoimmunotherapy using heptamethine cyanine dye to visualise migratory dynamics of immune cells

Published in: eBioMedicine Authors: Hiroshi Fukushima, Aki Furusawa, Seiichiro Takao, Siddharth S. Matikonda, Makoto Kano, Shuhei Okuyama, Hiroshi Yamamoto, Peter L. Choyke, Martin J. Schnermann, Hisataka Kobayashi  

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Development of thermosensitive liposomes with the help of ML8500

Background The proper delivery and release of therapeutic drugs to a specific site or cell type is one of the main challenges in the treatment of diseases. Liposomes, which are vesicles composed of lipids, serve as carriers for drug delivery thanks to their long circulation time. This results to reduced toxicity in healthy tissues and

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Distributed Bragg Reflector (DBR) Laser Diodes

Introduction to DRB lasers Distributed Bragg Reflector (DBR) laser diodes are a class of single-frequency monolithic semiconductor lasers. Monolithic semiconductor lasers in general are small in size, mechanically robust, and have good power conversion efficiency. They also provide opportunities for hybrid integration with photonic integrated circuits (PICs). This application note provides an overview of DBR

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Modulight launches ML6600 for Flow Cytometry and Quantum Computing

Modulight launches ML6600 for Flow Cytometry and Quantum Computing Next week at Photonics West 2024, Modulight will unveil significant new additions to the ML6600 laser solution platform. These new innovations include a specialized laser engine tailored for Flow Cytometry applications, and advanced DBR laser cores designed specifically for the Quantum Computing market. Our #LaserFamily are presenting 11 conference papers plus participating in a technical panel,

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Red-Light Activation of a Microtubule Polymerization Inhibitor via Amide Functionalization of the Ruthenium Photocage

Published in: Angew Chem Int Ed Authors: Ludovic Bretin, Yurii Husiev, Vadde Ramu, Liyan Zhang, Matthijs Hakkennes, Selda Abyar, Andrew C. Johns, Sylvia E. Le Dévédec, Tania Betancourt, Alexander Kornienko, Sylvestre Bonnet Leiden University A ruthenium-based compound was developed for PACT (photoactivated chemotherapy), which unlike most existing PACT compounds, can be also activated with clinically relevant

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