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Dr

Elena-Laura Budusan

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Overview

Availability

Dr Elena-Laura Budusan is:
Available for supervision

Works

Search Professor Elena-Laura Budusan’s works on UQ eSpace

10 works between 2017 and 2024

1 - 10 of 10 works

2024

Journal Article

Revealing molecular determinants governing mambalgin-3 pharmacology at acid-sensing ion channel 1 variants

Cristofori-Armstrong, Ben, Budusan, Elena, Smith, Jennifer J., Reynaud, Steve, Voll, Kerstin, Chassagnon, Irène R., Durek, Thomas and Rash, Lachlan D. (2024). Revealing molecular determinants governing mambalgin-3 pharmacology at acid-sensing ion channel 1 variants. Cellular and Molecular Life Sciences, 81 (1) 266, 266. doi: 10.1007/s00018-024-05276-2

Revealing molecular determinants governing mambalgin-3 pharmacology at acid-sensing ion channel 1 variants

2024

Journal Article

The funnel-web spider venom derived single knot peptide Hc3a modulates acid-sensing ion channel 1a desensitisation

Budusan, Elena, Payne, Colton D., Gonzalez, Tye I., Obergrussberger, Alison, Becker, Nadine, Clark, Richard J., Rosengren, K. Johan, Rash, Lachlan D. and Cristofori-Armstrong, Ben (2024). The funnel-web spider venom derived single knot peptide Hc3a modulates acid-sensing ion channel 1a desensitisation. Biochemical Pharmacology, 228 116175, 1-12. doi: 10.1016/j.bcp.2024.116175

The funnel-web spider venom derived single knot peptide Hc3a modulates acid-sensing ion channel 1a desensitisation

2024

Conference Publication

In-silico application of structure prediction to peptide mechanism of action

Tucker, Isaac, King, Glenn, Saez, Natalie, Deplazes, Evelyne, Rash, Lachlan, Cristofori-Armstrong, Ben and Budusan, Elena (2024). In-silico application of structure prediction to peptide mechanism of action. 37th European Peptide Symposium 14th International Peptide Symposium, Florence, Italy, 25-29 August 2024. Oxford, United Kingdom: John Wiley & Sons.

In-silico application of structure prediction to peptide mechanism of action

2024

Journal Article

Hi1a improves sensorimotor deficit following endothelin-1-induced stroke in rats but does not improve functional outcomes following filament-induced stroke in mice

Knezic, Adriana, Budusan, Elena, Saez, Natalie J., Broughton, Brad R. S., Rash, Lachlan D., King, Glenn F., Widdop, Robert E. and McCarthy, Claudia A. (2024). Hi1a improves sensorimotor deficit following endothelin-1-induced stroke in rats but does not improve functional outcomes following filament-induced stroke in mice. ACS Pharmacology and Translational Science, 7 (4), 1043-1054. doi: 10.1021/acsptsci.3c00328

Hi1a improves sensorimotor deficit following endothelin-1-induced stroke in rats but does not improve functional outcomes following filament-induced stroke in mice

2024

Book Chapter

Targeting acid-sensing ion channels in disease

Senescall, Victor, Budusan, Elena, Knezic, Adriana, Waqar, Maleeha, Butcher, Neville, Khan, Nemat, McCarthy, Claudia, Widopp, Robert, Karatt-Vellat, Aneesh and Rash, Lachlan D. (2024). Targeting acid-sensing ion channels in disease. Ion channels as targets in drug discovery. (pp. 303-355) edited by Gary Stephens and Edward Stevens. Cham, Switzerland: Springer. doi: 10.1007/978-3-031-52197-3_10

Targeting acid-sensing ion channels in disease

2023

Journal Article

Evaluation of peptide ligation strategies for the synthesis of the bivalent acid-sensing ion channel inhibitor Hi1a

Tran, Hue N. T., Budusan, Elena, Saez, Natalie J., Norman, Alexander, Tucker, Isaac J., King, Glenn F., Payne, Richard J., Rash, Lachlan D., Vetter, Irina and Schroeder, Christina I. (2023). Evaluation of peptide ligation strategies for the synthesis of the bivalent acid-sensing ion channel inhibitor Hi1a. Organic Letters, 25 (24), 4439-4444. doi: 10.1021/acs.orglett.3c01346

Evaluation of peptide ligation strategies for the synthesis of the bivalent acid-sensing ion channel inhibitor Hi1a

2023

Conference Publication

Pharmacology of P2X3 and P2X2/3 receptors: an automated patch clamp study

Sirtori, Elena, Rolland, Jean-Francois, Budusan, Elena L., Rotordam, Giustina M., Goetze, Tom A., Becker, Nadine, Obergrussberger, Alison, Strassmaier, Timothy, Bruggemann, Andrea, George, Michael and Fertig, Niels (2023). Pharmacology of P2X3 and P2X2/3 receptors: an automated patch clamp study. Biophysical Society 67th Annual Meeting, San Diego, CA USA, 18-22 February 2023. St. Louis, MO USA: Cell Press. doi: 10.1016/j.bpj.2022.11.1450

Pharmacology of P2X3 and P2X2/3 receptors: an automated patch clamp study

2021

Journal Article

Total synthesis of the spider-venom peptide Hi1a

Duggan, Nisharnthi M., Saez, Natalie J., Clayton, Daniel, Budusan, Elena, Watson, Emma E., Tucker, Isaac J., Rash, Lachlan D., King, Glenn F. and Payne, Richard J. (2021). Total synthesis of the spider-venom peptide Hi1a. Organic Letters, 23 (21) acs.orglett.1c03112, 8375-8379. doi: 10.1021/acs.orglett.1c03112

Total synthesis of the spider-venom peptide Hi1a

2021

Journal Article

Mambalgin-3 potentiates human acid-sensing ion channel 1b under mild to moderate acidosis: implications as an analgesic lead

Cristofori-Armstrong, Ben, Budusan, Elena and Rash, Lachlan D. (2021). Mambalgin-3 potentiates human acid-sensing ion channel 1b under mild to moderate acidosis: implications as an analgesic lead. Proceedings of the National Academy of Sciences, 118 (8) e2021581118, 1-3. doi: 10.1073/pnas.2021581118

Mambalgin-3 potentiates human acid-sensing ion channel 1b under mild to moderate acidosis: implications as an analgesic lead

2017

Journal Article

CRISPR-UMI : single-cell lineage tracing of pooled CRISPR-Cas9 screens

Michlits, Georg, Hubmann, Maria, Wu, Szu-Hsien, Vainorius, Gintautas, Budusan, Elena, Zhuk, Sergei, Burkard, Thomas R., Novatchkova, Maria, Aichinger, Martin, Lu, Yiqing, Reece-Hoyes, John, Nitsch, Roberto, Schramek, Daniel, Hoepfner, Dominic and Elling, Ulrich (2017). CRISPR-UMI : single-cell lineage tracing of pooled CRISPR-Cas9 screens. Nature Methods, 14 (12), 1191-1201. doi: 10.1038/nmeth.4466

CRISPR-UMI : single-cell lineage tracing of pooled CRISPR-Cas9 screens

Supervision

Availability

Dr Elena-Laura Budusan is:
Available for supervision

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