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Wyniki wyszukiwania dla: KĄT ŚCINANIA

  • Flow cytometry analysis of caspase 3/7 activation in A549, H460 and U2OS cells after exposure to TXT2 and TXT4

    Dane Badawcze
    open access

    The data contains flow cytometry analysis of caspase 3/7 activation in A549, H460 and U2OS cells after exposure to equitoxic concentrations of TXT2 and TXT4. DMSO and MTX were used as positive and negative controls, respectively. Caspase 3/7 activity was detected using CellEvent™ Caspase-3/7 Green Flow Cytometry Assay Kit (#C10427, Thermo Fisher Scientific)....

  • Effect of new bisacridines IKE16, IKE18 and IE10 on the yeast topoisomerase II relaxation activity

    The datasets contain the results of new bisacridines IKE16, IKE18 and IE10 inhibition activity against yeast topoisomerase II.  DNA topoisomerases (Topo) are enzymes that catalyze changes in the spatial structure of DNA and play an important role in replication, transcription and recombination. Beyond their normal functions, DNA topo are significant...

  • The estrogenicity of wastewater samples.

    Dane Badawcze

    The principle of operation of the kit is based on the fact that the tested sample with endocrine activity (containing compounds capable of binding to the human estrogen receptor α, hERα) releases the fluorescently labeled ligand (FluormoneTM ES2) from the receptor-ligand complex, which results in a reduction of the polarization value fluorescence. The...

  • Effect of antitumor compounds on the yeast topoisomerase II relaxation activity

    Dane Badawcze

    The datasets contain results of antitumor compounds* (known inhibitors of human topoisomerase alpha II) inhibitory activity against yeast topoisomerase II.  DNA topoisomerases (Topo) are enzymes that catalyze changes in the spatial structure of DNA and play an important role in replication, transcription and recombination. Beyond their normal functions,...

  • IKE1-IKE3 (C-1305 derivatives) inhibitory effect of the Yeast Topoisomerase II relaxation activity

    Dane Badawcze

    Inhibition of Yeast Topoisomerase II were analyzed according to relaxation assay kit  from Inspiralis. Briefly, 250 ng of supercoiled pBR322 DNA, 1 mM ATP, 1-200 μM of analyzed compound were mixed with reaction buffer (1 mM Tris-HCl (pH 7.9), 10 mM KCl, 0.5 mM MgCl 2, 0.2 % (v/v) glycerol). The reaction was initiated by the addition of an enzyme, allowed...

  • The influence of chitosan hydrogel coating on different redox probes kinetics

    This dataset contains cyclic voltammetry studies of three redox probes: 1 mM K3[Fe(CN)6], [K4Fe(CN)6], C12H14FeO2, and [Ru(NH3)6]Cl2 dissolved in 0.1 M KCl or PBS as the primary electrolyte. The studies are made for glassy carbon electrode (GC) and glassy carbon electrode covered with thin chitosan hydrogel membrane (C2A2). Cyclic voltammograms were...

  • D-loop sequences retrieved from Canis lupus familiaris mitochondrial genome

    Dane Badawcze
    open access
    • K. Kowal
    • B. Ślaska
    • A. Tkaczyk-Wlizło

    Canine mitochondrial genome is built of 16727 bp. Non-coding control region (mtCR), called also D-loop, begins with 15458 nucleotide and ends with 16727 nucleotide. The length of this fragment is 1270 bp (Kim et al., 1998). D-loop region is responsible for replication and transcription of mitochondrial DNA. Mutations that occur within it may cause irregularity...

  • The electrochemical studies for chitosan hydrogel membranes on glassy carbon substrates

    This dataset contains various electrochemical studies carried out to investigate the preconcentration of [Fe(CN)6]3- ions by chitosan hydrogel membranes coating the glassy carbon electrodes.    The glassy carbon electrode (GCE, 3.0 mm diameter) was first polished with Al2O3 powder (0.3 mm) using a polishing kit from Buehler, rinsed with deionized...

  • Supplementary material for: Fungal Planet description sheets: 1478–1549

    Dane Badawcze
    open access
    • P. Crous
    • E.  Osieck
    • R.  Shivas
    • Y.  Tan
    • S.  Bishop-Hurley
    •  . F.
    • E.  Larsson
    • J.  Luangsa-ard
    • F.  Pancorbo
    • S.  Balashov
    • I.  Baseia
    • T. iuribaseia@gmail.com
    • S.  Chandranayaka
    • D.  Cowan
    • R.  Cruz
    • P.  Czachura
    • S.  De la Peña-Lastra
    • F.  Dovana
    • B.  Drury
    • J.  Fell
    • A.  Flakus
    • R.  Fotedar
    • Ž.  Jurjević
    • A.  Kolecka
    • J.  Mack
    • G.  Maggs-Kölling
    • S.  Mahadevakumar
    • A.  Mateos
    • S.  Mongkolsamrit
    • W.  Noisripoom
    • M.  Plaza
    • D. Overy
    • M.  Piatek
    • M.  Sandoval-Denis
    • J.  Vauras
    • M.  Wingfield
    • S.  Abell
    • A.  Ahmadpour
    • A.  Akulov
    • F.  Alavi
    • Z.  Alavi
    • A.  Altés
    • P.  Alvarado
    • G.  Anand
    • N.  Ashtekar
    • B.  Assyov
    • G.  Banc-Prandi
    • K.  Barbosa
    • G.  Barreto
    • J.  Bellanger
    • J.  Bezerra
    • D.  Bhat
    • P.  Bilański
    • T.  Bose
    • F.  Bozok
    • J.  Chaves
    • D.  Costa-Rezende
    • C.  Danteswari
    • V. Darmostuk
    • G.  Delgado
    • S.  Denman
    • A.  Eichmeier
    • J.  Etayo
    • G.  Eyssartier
    • S.  Faulwetter
    • K.  Ganga
    • Y.  Ghosta
    • J.  Goh
    • J.  Góis
    • D.  Gramaje
    • L.  Granit
    • M.  Groenewald
    • G.  Gulden
    • L.  Gusmão
    • A.  Hammerbacher
    • Z.  Heidarian
    • N.  Hywel-Jones
    • R.  Jankowiak
    • M.  Kaliyaperumal
    • O.  Kaygusuz
    • K.  Kezo
    • A.  Khonsanit
    • S.  Kumar
    • C.  Kuo
    • T.  Laessøe
    • K.  Latha
    • M.  Loizides
    • S.  Luo
    • J.  Maciá-Vicente
    • P.  Manimohan
    • P.  Marbach
    • P.  Marinho
    • T.  Marney
    • G.  Marques
    • M.  Martín
    • A.  Miller
    • F.  Mondello
    • G.  Moreno
    • K.  Mufeeda
    • H. Mun
    • T.  Nau
    • T.  Nkomo
    • A.  Okrasińska
    • J.  Oliveira
    • R.  Oliveira
    • D.  Ortiz
    • J.  Pawłowska
    • M.  Pérez-De-Gregorio
    • A.  Podile
    • A.  Portugal
    • N.  Privitera
    • K.  Rajeshkumar
    • I.  Rauf
    • B.  Rian
    • A.  Rigueiro-Rodríguez
    • G.  Rivas-Torres
    • P. Rodriguez-Flakus
    • M.  Romero-Gordillo
    • I.  Saar
    • M.  Saba
    • C.  Santos
    • P.  Sarma
    • J.  Siquier
    • S.  Sleiman
    • M.  Spetik
    • K.  Sridhar
    • M.  Stryjak-Bogacka
    • K.  Szczepańska
    • H.  Taşikn
    • D.  Tennakoon
    • D.  Thanakitpipattana
    • J.  Trovão
    • A.  Türkekul
    • A.  van Iperen
    • P.  van 't Hof
    • G.  Vasquez
    • C.  Visagie
    • B.  Wingfield
    • P.  Wong
    • W.  Yang
    • M.  Yarar
    • O.  Yarden
    • N.  Yilmaz
    • N.  Zhang
    • Y.  Zhu
    • J.  Groenewald

    Novel species of fungi described in this study include those from various countries as follows: Australia, Bolivia, Brazil, Bulgaria, Canada, China, Denmark, Ecuador (Galapagos), Finland, France, India, Iran, Israel, Italy, Namibia, Netherlands, Norway, Pakistan, Poland, Portugal, Qatar, South Africa, South Korea, Spain, Sweden, Thailand, Taiwan region...