Sahitya Chetan Pandanaboina
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Also affiliated: Scuola Internazionale Superiore di Studi Avanzati (2011–2012); Sri Venkateswara University (2011); Arkansas Biosciences Institute (2019–2024); National University of Malaysia (2011)
Research Areas
Biomedical Subjects
Biography and Research Information
OverviewAI-generated summary
Sahitya Chetan Pandanaboina's research focuses on the differentiation of neural stem cells and the neuroprotective effects of natural compounds. He has investigated how exosomes derived from glioma cells influence neural stem cell differentiation into astrocytes. His work also explores the use of nanomaterials, such as plasmonic nanosurfaces and functionalized nanocellulose, to guide neural stem cell differentiation towards neuronal or oligodendrocyte lineages. Additionally, Pandanaboina has studied the alterations in antioxidant enzyme activities and oxidative damage in rat tissues, particularly in the context of alcohol consumption, and has examined the protective roles of plant extracts, such as Thespesia populnea and Hibiscus rosa sinensis, against ethanol-induced neurotoxicity and behavioral changes. His publications include studies on gold nanorod substrates for stem cell differentiation and the neuroprotective mechanisms of plant-based treatments.
Metrics
- h-index: 7
- Publications: 11
- Citations: 109
Selected Publications
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Ethanol-induced behavioral and histopathological changes in albino rats-neuroprotective effects of Hibiscus rosa sinensis flower extract (2025)
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Gold Nanorod Substrate for Rat Fetal Neural Stem Cell Differentiation into Oligodendrocytes (2022)
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Functionalized Nanocellulose Drives Neural Stem Cells toward Neuronal Differentiation (2021)
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TEMPO Cellulose Supports Survival and in vitro Differentiation of Rat Neural Stem Cell (2021)
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Predominant differentiation of rat fetal neural stem cells into functional oligodendrocytes in vitro (2020)
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Glioma-derived exosomes drive the differentiation of neural stem cells to astrocytes (2020)
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Plasmonic nano surface for neuronal differentiation and manipulation (2019)
Collaboration Network
Top Collaborators
- Glioma-derived exosomes drive the differentiation of neural stem cells to astrocytes
- Plasmonic nano surface for neuronal differentiation and manipulation
- Functionalized Nanocellulose Drives Neural Stem Cells toward Neuronal Differentiation
- Predominant differentiation of rat fetal neural stem cells into functional oligodendrocytes in vitro
- Gold Nanorod Substrate for Rat Fetal Neural Stem Cell Differentiation into Oligodendrocytes
Showing 5 of 6 shared publications
- Glioma-derived exosomes drive the differentiation of neural stem cells to astrocytes
- Functionalized Nanocellulose Drives Neural Stem Cells toward Neuronal Differentiation
- Predominant differentiation of rat fetal neural stem cells into functional oligodendrocytes in vitro
- Gold Nanorod Substrate for Rat Fetal Neural Stem Cell Differentiation into Oligodendrocytes
- TEMPO Cellulose Supports Survival and in vitro Differentiation of Rat Neural Stem Cell
- Glioma-derived exosomes drive the differentiation of neural stem cells to astrocytes
- Plasmonic nano surface for neuronal differentiation and manipulation
- Functionalized Nanocellulose Drives Neural Stem Cells toward Neuronal Differentiation
- Predominant differentiation of rat fetal neural stem cells into functional oligodendrocytes in vitro
- Plasmonic nano surface for neuronal differentiation and manipulation
- Gold Nanorod Substrate for Rat Fetal Neural Stem Cell Differentiation into Oligodendrocytes
- Plasmonic nano surface for neuronal differentiation and manipulation
- Gold Nanorod Substrate for Rat Fetal Neural Stem Cell Differentiation into Oligodendrocytes
- Plasmonic nano surface for neuronal differentiation and manipulation
- Gold Nanorod Substrate for Rat Fetal Neural Stem Cell Differentiation into Oligodendrocytes
- Glioma-derived exosomes drive the differentiation of neural stem cells to astrocytes
- Gold Nanorod Substrate for Rat Fetal Neural Stem Cell Differentiation into Oligodendrocytes
- Plasmonic nano surface for neuronal differentiation and manipulation
- Plasmonic nano surface for neuronal differentiation and manipulation
- Plasmonic nano surface for neuronal differentiation and manipulation
- Glioma-derived exosomes drive the differentiation of neural stem cells to astrocytes
- Glioma-derived exosomes drive the differentiation of neural stem cells to astrocytes
- Glioma-derived exosomes drive the differentiation of neural stem cells to astrocytes
- Glioma-derived exosomes drive the differentiation of neural stem cells to astrocytes
- Glioma-derived exosomes drive the differentiation of neural stem cells to astrocytes
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