arrow
Return

Proteomic Portraits Reveal Evolutionarily Conserved and Divergent Responses to Spinal Cord Injury

delete2021-01-01
delete20
delete
OA
AI
M
Michael A. Skinnider
J
Jason C. Rogalski
S
Seth Tigchelaar
N
Neda Manouchehri
A
Anna Prudova
A
Angela Jackson
K
Karina Nielsen
J
Jaihyun Jeong
S
Shalini Chaudhary
K
Katelyn Shortt
Y
Ylonna Gallagher-Kurtzke
K
Kitty So
A
Allan Fong
R
Rishab Gupta
E
Elena B. Okon
M
Michael A. Rizzuto
K
Kevin Dong
F
Femke Streijger
L
Lise Bélanger
L
Leanna Ritchie
A
Angela Tsang
S
Sean Christie
J
Jean‐Marc Mac‐Thiong
C
Christopher S. Bailey
T
Tamir Ailon
R
Raphaële Charest-Morin
N
Nicolas Dea
J
Jefferson R. Wilson
S
Sanjay S. Dhall
S
Scott Paquette
J
John Street
C
Charles G. Fisher
M
Marcel F. Dvorak
C
Casey P. Shannon
C
Christoph H. Borchers
R
Robert Balshaw
L
Leonard J. Foster *
B
Brian K. Kwon *
DOI:10.1016/j.mcpro.2021.100096delete
deleteOriginal
deleteShare
deleteSave
View PDF
Abstract

Abstract

En 中文
Despite the emergence of promising therapeutic approaches in preclinical studies, the failure of large-scale clinical trials leaves clinicians without effective treatments for acute spinal cord injury (SCI). These trials are hindered by their reliance on detailed neurological examinations to establish outcomes, which inflate the time and resources required for completion. Moreover, therapeutic development takes place in animal models whose relevance to human injury remains unclear. Here, we address these challenges through targeted proteomic analyses of cerebrospinal fluid and serum samples from 111 patients with acute SCI and, in parallel, a large animal (porcine) model of SCI. We develop protein biomarkers of injury severity and recovery, including a prognostic model of neurological improvement at 6 months with an area under the receiver operating characteristic curve of 0.91, and validate these in an independent cohort. Through cross-species proteomic analyses, we dissect evolutionarily conserved and divergent aspects of the SCI response and establish the cerebrospinal fluid abundance of glial fibrillary acidic protein as a biochemical outcome measure in both humans and pigs. Our work opens up new avenues to catalyze translation by facilitating the evaluation of novel SCI therapies, while also providing a resource from which to direct future preclinical efforts.
Keywords:
CEREBROSPINAL-FLUID
CLINICAL-TRIALS
PORCINE MODEL
BIOMARKERS
TRANSLATION
MULTICENTER
DISCOVERY
SEVERITY
MEDICINE
BIOLOGY
AI Summary

AI Summary

Key information extracted from the uploaded paper, including a brief overview, abstract, background, key highlights, visual analysis, and future outlook.

Journal

M
Molecular and Cellular Proteomics
IF:
5.5
Papers:
4.8K
Citations:
1.7W

Organization

W
western university (university of western ontario)
Scholars:
2.9W
Papers: 2.7W
Citations: 33
U
universite de montreal
Scholars:
4.6W
Papers: 3.8W
Citations: 46
L
London Health Sciences Centre
Scholars:
3.5K
Papers: 2.5K
Citations: 2.5K
U
University of Victoria
Scholars:
9.9K
Papers: 1.0W
Citations: 1.5W
D
Dalhousie University
Scholars:
1.9W
Papers: 1.8W
Citations: 2.3W
S
saint michaels hospital toronto
Scholars:
5.9K
Papers: 5.0K
Citations: 12
U
University of British Columbia
Scholars:
6.9W
Papers: 6.1W
Citations: 8.6W
U
university of toronto
Scholars:
14.5W
Papers: 11.9W
Citations: 165
researcher View more organizations