Elena Galitovskaya
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Formerly Arkansas Affiliated with University of Arkansas, UAMS through 2023; recent publications list Pfizer (United States).
Research Areas
Biomedical Subjects
Links
Biography and Research Information
OverviewAI-generated summary
Elena Galitovskaya's research has focused on photothermal nanotherapeutics and nanodiagnostics, particularly for selective killing of bacteria and cancer cells. Her work has explored the synergistic enhancement of nanophotothermolysis using gold nanoclusters and microbubble-overlapping modes for laser-based cancer cell destruction. Galitovskaya has also investigated photothermal guidance for nanoparticle-mediated photothermolysis. Her research extends to the molecular mechanisms of apoptosis, including identifying key phosphorylation sites in proteins like Bcl-xL and analyzing the role of Bak activation and Bak-Bax interaction in cellular responses to specific inhibitors.
Her scholarship metrics include an h-index of 8, with 17 total publications and 1,271 citations. Galitovskaya has collaborated with Timothy C. Chambers and Meenakshi Upreti at the University of Arkansas for Medical Sciences on multiple publications. Her most recent publication was in 2025, indicating recent activity in her research areas.
Metrics
- h-index: 8
- Publications: 17
- Citations: 1,271
Selected Publications
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Data from Key role for Bak activation and Bak-Bax interaction in the apoptotic response to vinblastine (2023)
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ChemInform Abstract: Synthesis and Anticancer Activity of Sclerophytin‐Inspired Hydroisobenzofurans. (2010)
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Synthesis and anticancer activity of sclerophytin-inspired hydroisobenzofurans (2009)
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Key role for Bak activation and Bak-Bax interaction in the apoptotic response to vinblastine (2008)
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Identification of the Major Phosphorylation Site in Bcl-xL Induced by Microtubule Inhibitors and Analysis of Its Functional Significance (2008)
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Simplified analogs of sclerophytin A as potential anticancer agents (2007)
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Photoacoustics of individual live cells and particles (2006)
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Synergistic enhancement of selective nanophotothermolysis with gold nanoclusters: Potential for cancer therapy (2005)
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Photothermal Nanotherapeutics and Nanodiagnostics for Selective Killing of Bacteria Targeted with Gold Nanoparticles (2005)
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Microbubbles-overlapping mode for laser killing of cancer cells with absorbing nanoparticle clusters (2005)
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Photothermal guidance for selective photothermolysis with nanoparticles (2004)
Collaboration Network
Top Collaborators
- Identification of the Major Phosphorylation Site in Bcl-xL Induced by Microtubule Inhibitors and Analysis of Its Functional Significance
- Key role for Bak activation and Bak-Bax interaction in the apoptotic response to vinblastine
- Synthesis and anticancer activity of sclerophytin-inspired hydroisobenzofurans
- ChemInform Abstract: Synthesis and Anticancer Activity of Sclerophytin‐Inspired Hydroisobenzofurans.
- Simplified analogs of sclerophytin A as potential anticancer agents
Showing 5 of 6 shared publications
- Identification of the Major Phosphorylation Site in Bcl-xL Induced by Microtubule Inhibitors and Analysis of Its Functional Significance
- Key role for Bak activation and Bak-Bax interaction in the apoptotic response to vinblastine
- Synthesis and anticancer activity of sclerophytin-inspired hydroisobenzofurans
- ChemInform Abstract: Synthesis and Anticancer Activity of Sclerophytin‐Inspired Hydroisobenzofurans.
- Data from Key role for Bak activation and Bak-Bax interaction in the apoptotic response to vinblastine
- Photothermal Nanotherapeutics and Nanodiagnostics for Selective Killing of Bacteria Targeted with Gold Nanoparticles
- Synergistic enhancement of selective nanophotothermolysis with gold nanoclusters: Potential for cancer therapy
- Microbubbles-overlapping mode for laser killing of cancer cells with absorbing nanoparticle clusters
- Photothermal guidance for selective photothermolysis with nanoparticles
- Photoacoustics of individual live cells and particles
- Synthesis and anticancer activity of sclerophytin-inspired hydroisobenzofurans
- ChemInform Abstract: Synthesis and Anticancer Activity of Sclerophytin‐Inspired Hydroisobenzofurans.
- Simplified analogs of sclerophytin A as potential anticancer agents
- Synthesis and anticancer activity of sclerophytin-inspired hydroisobenzofurans
- ChemInform Abstract: Synthesis and Anticancer Activity of Sclerophytin‐Inspired Hydroisobenzofurans.
- Simplified analogs of sclerophytin A as potential anticancer agents
- Synthesis and anticancer activity of sclerophytin-inspired hydroisobenzofurans
- ChemInform Abstract: Synthesis and Anticancer Activity of Sclerophytin‐Inspired Hydroisobenzofurans.
- Simplified analogs of sclerophytin A as potential anticancer agents
- Synthesis and anticancer activity of sclerophytin-inspired hydroisobenzofurans
- ChemInform Abstract: Synthesis and Anticancer Activity of Sclerophytin‐Inspired Hydroisobenzofurans.
- Identification of the Major Phosphorylation Site in Bcl-xL Induced by Microtubule Inhibitors and Analysis of Its Functional Significance
- Key role for Bak activation and Bak-Bax interaction in the apoptotic response to vinblastine
- Key role for Bak activation and Bak-Bax interaction in the apoptotic response to vinblastine
- Data from Key role for Bak activation and Bak-Bax interaction in the apoptotic response to vinblastine
- Microbubbles-overlapping mode for laser killing of cancer cells with absorbing nanoparticle clusters
- Photothermal Nanotherapeutics and Nanodiagnostics for Selective Killing of Bacteria Targeted with Gold Nanoparticles
- Photothermal Nanotherapeutics and Nanodiagnostics for Selective Killing of Bacteria Targeted with Gold Nanoparticles
- Synergistic enhancement of selective nanophotothermolysis with gold nanoclusters: Potential for cancer therapy
- Synergistic enhancement of selective nanophotothermolysis with gold nanoclusters: Potential for cancer therapy
- Photothermal guidance for selective photothermolysis with nanoparticles
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