Alexander G Rabchevsky
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Explore the profile of Alexander G Rabchevsky including associated specialties, affiliations and a list of published articles.
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55
Citations
2113
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Recent Articles
1.
Ahmed A, Gallegos Z, Dinar M, Sullivan P, DeRouchey J, Patel S, et al.
J Biomed Mater Res B Appl Biomater
. 2025 Feb;
113(2):e35537.
PMID: 39907118
Traumatic spinal cord injury (SCI) presents a significant medical challenge due to its intricate nature and treatment complexities. SCI can cause physical impairments by affecting neural and motor functions as...
2.
Brestoff J, Singh K, Aquilano K, Becker L, Berridge M, Boilard E, et al.
Nat Metab
. 2025 Jan;
7(1):53-67.
PMID: 39820558
Intercellular mitochondria transfer is an evolutionarily conserved process in which one cell delivers some of their mitochondria to another cell in the absence of cell division. This process has diverse...
3.
Malik R, Samejima S, Shackleton C, Miller T, Pedrocchi A, Rabchevsky A, et al.
J Neural Eng
. 2024 Jan;
21(1).
PMID: 38271712
Electrical spinal cord stimulation (SCS) has emerged as a promising therapy for recovery of motor and autonomic dysfunctions following spinal cord injury (SCI). Despite the rise in studies using SCS...
4.
Warner F, Tong B, McDougall J, Martin Ginis K, Rabchevsky A, Cragg J, et al.
Neurotrauma Rep
. 2023 Nov;
4(1):781-789.
PMID: 38028277
Open data sharing of clinical research aims to improve transparency and support novel scientific discoveries. There are also risks, including participant identification and the potential for stigmatization. The perspectives of...
5.
Michael F, Patel S, Bachstetter A, Rabchevsky A
J Inflamm Res
. 2023 Aug;
16:3341-3349.
PMID: 37576153
Introduction: In addition to paralysis and loss of sensation, high-level spinal cord injury (SCI) causes sympathetic dysfunction that can lead to autonomic dysreflexia (AD) and chronic immune suppression involving splenic...
6.
Velmurugan G, Hubbard W, Prajapati P, Vekaria H, Patel S, Rabchevsky A, et al.
Cells
. 2023 Jul;
12(10).
PMID: 37408279
The brain undergoes oxidative stress and mitochondrial dysfunction following physiological insults such as Traumatic brain injury (TBI), ischemia-reperfusion, and stroke. Pharmacotherapeutics targeting mitochondria (mitoceuticals) against oxidative stress include antioxidants, mild...
7.
Patel S, Michael F, Gollihue J, Hubbard W, Sullivan P, Rabchevsky A
Mitochondrion
. 2022 Nov;
68:10-14.
PMID: 36371072
Herein, we review evidence that targeting mitochondrial dysfunction with 'mitoceuticals' is an effective neuroprotective strategy following neurotrauma, and that isolated exogenous mitochondria can be effectively transplanted into host spinal cord...
8.
Hart S, Patel S, Michael F, Stoilov P, Leow C, Hernandez A, et al.
Neurotrauma Rep
. 2022 Apr;
3(1):105-121.
PMID: 35403103
To determine molecular changes that correlate with long-term physiological changes after spinal cord injury associated with spasticity, we used a complete transection model with an injury at sacral spinal level...
9.
Patel S, Michael F, Khan M, Duggan B, Wyse S, Darby D, et al.
Mitochondrion
. 2022 Apr;
64:145-155.
PMID: 35398305
We developed a thermal-gelling, erodible hydrogel system for localized delivery of viable mitochondria in vivo, as well as labeled transplanted mitochondria with specific dyes and/or genetically modified mitochondria tagged with...
10.
Rabchevsky A, Michael F, Patel S
Exp Neurol
. 2020 May;
330:113332.
PMID: 32353464
The mitochondrion is a double membrane structured organelle involved in a variety of regulatory functions such as calcium signaling, production of adenosine triphosphate, apoptosis, reactive oxygen species generation, cell growth,...