Prof. Alexander G. Rabchevsky
University of Kentucky, USA
Email: [email protected]
Qualifications
1995
Ph.D., University of Florida, Neuroscience
1988 B.Sc., Hampden-Sydney College, Biology
Publications (Selected)
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Gillespie, T.,
Buxton, A., Kondiles, B. R., Leal-Garcia, M., Pacheco, M. R., Tran, A. V., ...
& Dulin, J. N. (2025). Funding Distributions, Trends, Gaps, and Policy
Implications for Spinal Cord Injury Research: A Systematic Analysis of US
Federal Funds. Journal of Neurotrauma, 08977151251392895.
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Ahmed, A. J.,
Gallegos, Z. A., Dinar, M. A. M., Sullivan, P. G., DeRouchey, J. E., Patel, S.
P., ... & Dziubla, T. D. (2025). Physicochemical Characterization of Hyaluronic
Acid‐Methylcellulose
Semi‐Gels for
Mitochondria Transplantation. Journal of Biomedical Materials Research Part B:
Applied Biomaterials, 113(2), e35537.
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Brestoff, J. R.,
Singh, K. K., Aquilano, K., Becker, L. B., Berridge, M. V., Boilard, E., ...
& Zheng, M. (2025). Recommendations for mitochondria transfer and
transplantation nomenclature and characterization. Nature metabolism, 7(1),
53-67.
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Malik, R. N.,
Samejima, S., Shackleton, C., Miller, T., Pedrocchi, A. L. G., Rabchevsky, A.
G., ... & Krassioukov, A. V. (2024). REPORT-SCS: minimum reporting
standards for spinal cord stimulation studies in spinal cord injury. Journal of
neural engineering, 21(1), 016019.
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Velmurugan, G.
V., Hubbard, W. B., Prajapati, P., Vekaria, H. J., Patel, S. P., Rabchevsky, A.
G., & Sullivan, P. G. (2023). LRP1 deficiency promotes mitostasis in
response to oxidative stress: implications for mitochondrial targeting after
traumatic brain injury. Cells, 12(10), 1445.
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Patel, S. P.,
Michael, F. M., Gollihue, J. L., Hubbard, W. B., Sullivan, P. G., &
Rabchevsky, A. G. (2023). Delivery of mitoceuticals or respiratory competent
mitochondria to sites of neurotrauma. Mitochondrion, 68, 10-14.
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Patel, S. P.,
Michael, F. M., Khan, M. A., Duggan, B., Wyse, S., Darby, D. R., ... &
Rabchevsky, A. G. (2022). Erodible thermogelling hydrogels for localized
mitochondrial transplantation to the spinal cord. Mitochondrion, 64, 145-155.
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Hart, S. N.,
Patel, S. P., Michael, F. M., Stoilov, P., Leow, C. J., Hernandez, A. G., ...
& Stamm, S. (2022). Rat spinal cord injury associated with spasticity leads
to widespread changes in the regulation of retained introns. Neurotrauma
Reports, 3(1), 105-121.
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Bourbeau, D.,
Bolon, A., Creasey, G., Dai, W., Fertig, B., French, J., ... & Wierbicky,
J. (2020). Needs, priorities, and attitudes of individuals with spinal cord
injury toward nerve stimulation devices for bladder and bowel function: a
survey. Spinal Cord, 58(11), 1216-1226.
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Rabchevsky, A.
G., Michael, F. M., & Patel, S. P. (2020). Mitochondria focused
neurotherapeutics for spinal cord injury. Experimental neurology, 330, 113332.
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Eldahan, K. C.,
Williams, H. C., Cox, D. H., Gollihue, J. L., Patel, S. P., & Rabchevsky,
A. G. (2020). Paradoxical effects of continuous high dose gabapentin treatment
on autonomic dysreflexia after complete spinal cord injury. Experimental
neurology, 323, 113083.
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Owen, A. M.,
Patel, S. P., Smith, J. D., Balasuriya, B. K., Mori, S. F., Hawk, G. S., ...
& Saito, H. (2019). Chronic muscle weakness and mitochondrial dysfunction
in the absence of sustained atrophy in a preclinical sepsis model. Elife, 8,
e49920.
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Michael, F. M.,
Patel, S. P., & Rabchevsky, A. G. (2019). Intraspinal plasticity associated
with the development of autonomic dysreflexia after complete spinal cord
injury. Frontiers in Cellular Neuroscience, 13, 505.
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Scholpa, N. E.,
Williams, H., Wang, W., Corum, D., Narang, A., Tomlinson, S., ... &
Schnellmann, R. G. (2019). Pharmacological stimulation of mitochondrial
biogenesis using the Food and Drug Administration-approved β2-adrenoreceptor
agonist formoterol for the treatment of spinal cord injury. Journal of
neurotrauma, 36(6), 962-972.
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Gollihue, J. L.,
Patel, S. P., Eldahan, K. C., Cox, D. H., Donahue, R. R., Taylor, B. K., ...
& Rabchevsky, A. G. (2018). Effects of mitochondrial transplantation on
bioenergetics, cellular incorporation, and functional recovery after spinal
cord injury. Journal of neurotrauma, 35(15), 1800-1818.
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Gollihue, J. L.,
Patel, S. P., & Rabchevsky, A. G. (2018). Mitochondrial transplantation
strategies as potential therapeutics for central nervous system trauma. Neural
regeneration research, 13(2), 194-197.
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Eldahan, K. C.,
& Rabchevsky, A. G. (2018). Autonomic dysreflexia after spinal cord injury:
systemic pathophysiology and methods of management. Autonomic Neuroscience,
209, 59-70.
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Rabchevsky, A.
G., Patel, S. P., & Sullivan, P. G. (2017). Targeting mitoNEET with
pioglitazone for therapeutic neuroprotection after spinal cord injury. Neural
Regeneration Research, 12(11), 1807-1808.
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Stamm, S.,
Gruber, S. B., Rabchevsky, A. G., & Emeson, R. B. (2017). The activity of
the serotonin receptor 2C is regulated by alternative splicing. Human Genetics,
136(9), 1079-1091.
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Gollihue, J. L.,
Patel, S. P., Mashburn, C., Eldahan, K. C., Sullivan, P. G., & Rabchevsky,
A. G. (2017). Optimization of mitochondrial isolation techniques for
intraspinal transplantation procedures. Journal of neuroscience methods, 287,
1-12.
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Gollihue, J. L.,
& Rabchevsky, A. G. (2017). Prospects for therapeutic mitochondrial
transplantation. Mitochondrion, 35, 70-79.
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Visavadiya, N.
P., Patel, S. P., VanRooyen, J. L., Sullivan, P. G., & Rabchevsky, A. G.
(2016). Cellular and subcellular oxidative stress parameters following severe
spinal cord injury. Redox biology, 8, 59-67.
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Visavadiya, N.
P., Patel, S. P., VanRooyen, J. L., Sullivan, P. G., & Rabchevsky, A. G.
(2016). Cellular and subcellular oxidative stress parameters following severe spinal
cord injury. Redox biology, 8, 59-67.
Profile
Details
https://medicine.uky.edu/users/agrab
https://scholar.google.com/citations?hl=en&user=L2NxBnIAAAAJ&view_op=list_works&sortby=pubdate
https://www.researchgate.net/profile/Alexander-Rabchevsky
https://2025acvimforum.eventscribe.net/fsPopup.asp?efp=U0FSS1hHWEYyMzY3OQ&PresenterID=2035272&rnd=0.1492457&mode=presenterinfo