Tudóstér: Sipos Ádám publikációi

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feltöltött közlemény: 11 Open Access: 4
2023
  1. Kola, J., Turarova, B., Csige, D., Sipos, Á., Varga, L., Gergely, B., Refai, F., Uray, I., Docsa, T., Uray, K.: Stretch-Induced Down-Regulation of HCN2 Suppresses Contractile Activity.
    Molecules. 28 (11), 1-14, 2023.
    Folyóirat-mutatók:
    Q2 Analytical Chemistry (2022)
    Q2 Chemistry (miscellaneous) (2022)
    Q2 Drug Discovery (2022)
    Q2 Medicine (miscellaneous) (2022)
    Q3 Molecular Medicine (2022)
    Q2 Organic Chemistry (2022)
    Q1 Pharmaceutical Science (2022)
    Q2 Physical and Theoretical Chemistry (2022)
2022
  1. Docsa, T., Sipos, Á., Cox, C., Uray, K.: The Role of Inflammatory Mediators in the Development of Gastrointestinal Motility Disorders.
    Int. J. Mol. Sci. 23 (13), 1-22, 2022.
    Folyóirat-mutatók:
    Q2 Catalysis
    Q1 Computer Science Applications
    D1 Inorganic Chemistry
    Q1 Medicine (miscellaneous)
    Q2 Molecular Biology
    Q1 Organic Chemistry
    Q1 Physical and Theoretical Chemistry
    D1 Spectroscopy
2021
  1. Sipos, Á., Szennyes, E., Hajnal, É., Kun, S., Szabó, E., Uray, K., Somsák, L., Docsa, T., Bokor, É.: Dual-Target Compounds against Type 2 Diabetes Mellitus: proof of Concept for Sodium Dependent Glucose Transporter (SGLT) and Glycogen Phosphorylase (GP) Inhibitors.
    Pharmaceuticals. 14 (4), 1-27, 2021.
    Folyóirat-mutatók:
    Q1 Drug Discovery
    Q2 Molecular Medicine
    Q1 Pharmaceutical Science
2020
  1. Docsa, T., Bhattarai, D., Sipos, Á., Wade, C., Cox, C., Uray, K.: CXCL1 is upregulated during the development of ileus resulting in decreased intestinal contractile activity.
    Neurogastroenterol. Motil. 32 (3), 1-12, 2020.
    Folyóirat-mutatók:
    Q2 Endocrine and Autonomic Systems
    Q1 Gastroenterology
    Q1 Physiology
2019
  1. Kun, S., Kánya, N., Galó, N., Páhi, A., Mándi, A., Kurtán, T., Makleit, P., Veres, S., Sipos, Á., Docsa, T., Somsák, L.: Glucopyranosylidene-spiro-benzo[b][1,4]oxazinones and -benzo[b][1,4]thiazinones: Synthesis and Investigation of Their Effects on Glycogen Phosphorylase and Plant Growth Inhibition.
    J. Agric. Food Chem. 67 (24), 6884-6891, 2019.
    Folyóirat-mutatók:
    Q1 Agricultural and Biological Sciences (miscellaneous)
    Q1 Chemistry (miscellaneous)
  2. Szabó, E., Kyriakis, E., Psarra, A., Karra, A., Sipos, Á., Docsa, T., Stravodimos, G., Katsidou, E., Skamnaki, V., Liggri, P., Zographos, S., Mándi, A., Király, S., Kurtán, T., Leonidas, D., Somsák, L.: Glucopyranosylidene-spiro-imidazolinones, a New Ring System: Synthesis and Evaluation as Glycogen Phosphorylase Inhibitors by Enzyme Kinetics and X-ray Crystallography.
    J. Med. Chem. 62 (13), 6116-6136, 2019.
    Folyóirat-mutatók:
    D1 Drug Discovery
    Q1 Molecular Medicine
  3. Barr, D., Szennyes, E., Bokor, É., Al-Oanzi, Z., Moffatt, C., Kun, S., Docsa, T., Sipos, Á., Davies, M., Mathomes, R., Snape, T., Agius, L., Somsák, L., Hayes, J.: Identification of C-[béta]-d-Glucopyranosyl Azole-Type Inhibitors of Glycogen Phosphorylase That Reduce Glycogenolysis in Hepatocytes: in Silico Design, Synthesis, in Vitro Kinetics, and ex Vivo Studies.
    ACS Chem. Biol. 14 (7), 1460-1470, 2019.
    Folyóirat-mutatók:
    Q1 Biochemistry
    D1 Medicine (miscellaneous)
    Q1 Molecular Medicine
  4. Szennyes, E., Bokor, É., Docsa, T., Sipos, Á., Somsák, L.: Synthesis of C-β-D-glucopyranosyl derivatives of some fused azoles for the inhibition of glycogen phosphorylase.
    Carbohydr. Res. 472 33-41, 2019.
    Folyóirat-mutatók:
    Q2 Analytical Chemistry
    Q3 Biochemistry
    Q2 Medicine (miscellaneous)
    Q2 Organic Chemistry
2018
  1. Kun, S., Begum, J., Kyriakis, E., Stamati, E., Barkas, T., Szennyes, E., Bokor, É., Szabó, E., Stravodimos, G., Sipos, Á., Docsa, T., Gergely, P., Moffatt, C., Patraskaki, M., Kokolaki, M., Gkerdi, A., Skamnaki, V., Leonidas, D., Somsák, L., Hayes, J.: A multidisciplinary study of 3-(β-D-glucopyranosyl)-5-substituted-1,2,4-triazole derivatives as glycogen phosphorylase inhibitors: computation, synthesis, crystallography and kinetics reveal new potent inhibitors.
    Eur. J. Med. Chem. 147 266-278, 2018.
    Folyóirat-mutatók:
    Q1 Drug Discovery
    Q1 Medicine (miscellaneous)
    Q1 Organic Chemistry
    Q1 Pharmacology
  2. Kun, S., Bokor, É., Sipos, Á., Docsa, T., Somsák, L.: Synthesis of New C- and N-beta-D-Glucopyranosyl Derivatives of Imidazole, 1,2,3-Triazole and Tetrazole, and Their Evaluation as Inhibitors of Glycogen Phosphorylase.
    Molecules. 23 (3), 1-17, 2018.
    Folyóirat-mutatók:
    Q2 Analytical Chemistry
    Q1 Chemistry (miscellaneous)
    Q2 Drug Discovery
    Q2 Medicine (miscellaneous)
    Q3 Molecular Medicine
    Q2 Organic Chemistry
    Q1 Pharmaceutical Science
    Q2 Physical and Theoretical Chemistry
  3. Szennyes, E., Bokor, É., Langer, P., Gyémánt, G., Docsa, T., Sipos, Á., Somsák, L.: The first general synthesis of 2-C-(beta-D-glycopyranosyl)pyrimidines and their evaluation as inhibitors of some glycoenzymes.
    New J. Chem. 42 (21), 17439-17446, 2018.
    Folyóirat-mutatók:
    Q3 Catalysis
    Q2 Chemistry (miscellaneous)
    Q1 Materials Chemistry
feltöltött közlemény: 11 Open Access: 4
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A szolgáltatást nyújtja: DEENK