Publications by authors named "Anushan Alagaratnam"

A facile one-pot approach for the azidodifluoromethylation of aldehydes via in situ-generated azidodifluoromethenide (NCF) utilizing commercially available TMSCFBr and NaN is disclosed. The formed -silyl ether products are obtained in yields of up to 91% in short reaction times at ambient temperature. Examples of both inter- and intramolecular [3 + 2] azide-alkyne cycloaddition reactions of the installed azidodifluoromethyl handles are also presented, demonstrating the prospective synthetic and biochemical functionality and utility.

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Generating sustainable fuel from sunlight plays an important role in meeting the energy demands of the modern age. Herein, we report two-coordinate carbene-metal-amide (cMa, M = Cu(I) and Au(I)) complexes that can be used as sensitizers to promote the light-driven reduction of water to hydrogen. The cMa complexes studied here absorb visible photons (ε > 10 M cm), maintain long excited-state lifetimes (τ ∼ 0.

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Multidrug resistance (MDR) is one of the major clinical challenges in cancer treatment and compromises the effectiveness of conventional anticancer chemotherapeutics. Among known mechanisms of drug resistance, drug efflux via ATP binding cassette (ABC) transporters, namely P-glycoprotein (P-gp) has been characterized as a major mechanism of MDR. The primary function of ABC transporters is to regulate the transport of endogenous and exogenous small molecules across the membrane barrier in various tissues.

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Synopsis of recent research by authors named "Anushan Alagaratnam"

  • - Anushan Alagaratnam's recent research primarily focuses on innovative synthetic methodologies and their applications in medicinal chemistry and energy conversion technologies, as evidenced by his work on azidodifluoromethanide and coinage metal complexes for solar energy.
  • - His article on azidodifluoromethanide showcases a novel one-pot approach for creating silyl ether products with high yields, supporting the potential for further cycloaddition reactions which highlight its biochemical utility.
  • - Alagaratnam also explores natural compounds with therapeutic properties, investigating how ellagic acid and schisandrins could combat multidrug resistance in cancer treatments, emphasizing their role in overcoming the limitations of current chemotherapy methods.