High efficiency two-photon uncaging coupled by the correction of spontaneous hydrolysis

Pálfi, D [Pálfi, Dénes (Idegtudomány), author] MTA-PPKE ITK-NAP B Two-photon measurement techn... (PPCU / ITK); Neuronhálózat és Dendritikus Aktivitás Kutatócs...; Chiovini, B* [Chiovini, Balázs (Neurobiológia), author] MTA-PPKE ITK-NAP B Two-photon measurement techn... (PPCU / ITK); Neuronhálózat és Dendritikus Aktivitás Kutatócs...; Szalay, G [Szalay, Gergely (Idegtudomány), author] Neuronhálózat és Dendritikus Aktivitás Kutatócs...; Kaszás, A [Kaszás, Attila (Farmakológia), author]; Turi, GF [Turi, Gergely (Farmakológia), author] Neuronhálózat és Dendritikus Aktivitás Kutatócs...; Katona, G [Katona, Gergely (Farmakológia), author] MTA-PPKE ITK-NAP B Two-photon measurement techn... (PPCU / ITK); Neuronhálózat és Dendritikus Aktivitás Kutatócs...; Ábrányi-Balogh, P [Ábrányi-Balogh, Péter (szerves kémia), author] Institute of Organic Chemistry (MTA TTK); Gyógyszerkémiai Kutatócsoport (IOC); Szori, M [Szőri, Milán (Anyagtudomány, Sz...), author] Kémiai Intézet (UM / AVK); Potor, A; Frigyesi, O; Lukácsné, Haveland C; Szadai, Z [Szadai, Zoltán (Idegtudomány), author] Neuronhálózat és Dendritikus Aktivitás Kutatócs...; Madarász, M [Madarász, Miklós (Neurobiológia), author] School of Ph. D. Studies (SU); Vasanits-Zsigrai, A [Vasanits, Anikó (Környezetanalitik...), author] Insititute of Chemistry (ELTE / ELU FoS); Laboratory of Environmental Chemistry and Bioan... (ELTE / ELU FoS / IC); Molnár-Perl, I [Perlné Molnár, Ibolya (Analitikai kémia), author] Department of Analytical Chemistry (ELTE / ELU FoS / IC); Viskolcz, B [Viskolcz, Béla (Anyagtudomány és ...), author] Kémiai Intézet (UM / AVK); Csizmadia, IG [Csizmadia, Imre Gyula (elméleti szerves ...), author]; Mucsi, Z ✉ [Mucsi, Zoltán (szerves kémia), author]; Rózsa, B [Rózsa J., Balázs (Idegtudomány, fizika), author] Neuronhálózat és Dendritikus Aktivitás Kutatócs...

English Article (Journal Article) Scientific
Published: ORGANIC & BIOMOLECULAR CHEMISTRY 1477-0520 1477-0539 16 (11) pp. 1958-1970 2018
  • SJR Scopus - Organic Chemistry: Q1
Identifiers
Subjects:
  • Biological sciences
  • Pharmaceutical chemistry
  • Chemical sciences
  • Organic reaction mechanism
Two-photon (TP) uncaging of neurotransmitter molecules is the method of choice to mimic and study the subtleties of neuronal communication either in the intact brain or in slice preparations. However, the currently available caged materials are just at the limit of their usability and have several drawbacks. The local and focal nature of their use may for example be jeopardized by a high spontaneous hydrolysis rate of the commercially available compounds with increased photochemical release rate. Here, using quantum chemical modelling we show the mechanisms of hydrolysis and two-photon activation, and synthesized more effective caged compounds. Furthermore, we have developed a new enzymatic elimination method removing neurotransmitters inadvertently escaping from their compound during experiment. This method, usable both in one and two-photon experiments, allows for the use of materials with an increased rate of photochemical release. The efficiency of the new compound and the enzymatic method and of the new compound are demonstrated in neurophysiological experiments. © 2018 The Royal Society of Chemistry.
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2026-01-20 16:01