ML8500

Modulight Spotlights: LASER-SHARP RESEARCH – March 2026

Modulight Spotlights: LASER-SHARP RESEARCH – March 2026 The development of chemoresistance presents a major challenge in treating peritoneal metastasis, which often occurs in advanced ovarian cancer. To tackle this, Kaitlyn Moore and teams at University of Maryland and National Cancer Institute evaluated photoimmunotherapy as a solution to inhibit a drug efflux pump on cancer cells [...]

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Modulight Spotlights: LASER-SHARP RESEARCH – November 2025

Modulight Spotlights: LASER-SHARP RESEARCH – November 2025 We are delighted to highlight new exciting study by Rahman et al. from Dr. Huang-Chiao Huang’s lab at University of Maryland. Multidrug resistance remains a significant barrier to successful chemotherapy outcomes for cancer patients, often caused by active pumping of chemotherapeutics outside of cancer cells. Hence, the team

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Harnessing liposomal nanocellulose hydrogel for NIR-light driven on-demand drug delivery

Published in: Carbohydrate Polymer Technologies and Applications Authors: Puja Gangurde, Zahra Gounani, Jacopo Zini, Roberta Teixeira Polez, Monika Osterberg, Patrick Lauren, Tatu Lajunen, Timo Laaksonen  

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ML8500 – automatic biomedical illumination

ML8500 Automatic biomedical illumination system ML8500 is the world's most versatile illumination device for in-vitro studies. ML8500 can support up to 7 different wavelengths simultaneously, flexible control of illumination parameters, and built-in incubation chamber for cells studies in normoxic and hypoxic conditions. Researcher operating ML8500 at Modulight's Biomedical Laboratories Request quotation! Automatic system for illuminating

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Modulight Spotlights: LASER-SHARP RESEARCH – October 2024

Modulight Spotlights: LASER-SHARP RESEARCH – October 2024 This month, we are highlighting new findings published in RSC Materials Advances by Olga Lem, Roosa Kekki and researchers at Pharmaceutical Nanotechnology research group and Tampere University. The study provides key insights into the role of lipid oxidation in cargo release from light-activated liposomes. These spherical lipid vesicles can

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Modulight Spotlights: LASER-SHARP RESEARCH – September 2024

University of Maryland and Modulight have published together a new research study about the mechanisms of cancer drug resistance. Drug resistance is a leading cause of treatment failure and often has dramatic consequences for survival of cancer patients.

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Ru(II) Oligothienyl Complexes with Fluorinated Ligands: Photophysical, Electrochemical, and Photobiological Properties

Published in: Inorganic Chemistry Authors: Houston D. Cole, Abbas Vali, John A. Roque III, Ge Shi, Alisher Talgatov, Gurleen Kaur, Antonio Francés-Monerris, Marta E. Alberto, Colin G. Cameron, Sherri A. McFarland  

Ru(II) Oligothienyl Complexes with Fluorinated Ligands: Photophysical, Electrochemical, and Photobiological Properties Read More »

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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