Connexin-43 induces chemokine release from spinal cord astrocytes to maintain late-phase neuropathic pain in mice

G Chen, CK Park, RG Xie, T Berta, M Nedergaard… - Brain, 2014 - academic.oup.com
Accumulating evidence suggests that spinal cord astrocytes play an important role in
neuropathic pain sensitization by releasing astrocytic mediators (eg cytokines, chemokines …

[HTML][HTML] Connexin-43 induces chemokine release from spinal cord astrocytes to maintain late-phase neuropathic pain in mice

G Chen, CK Park, RG Xie, T Berta, M Nedergaard… - Brain, 2014 - ncbi.nlm.nih.gov
Accumulating evidence suggests that spinal cord astrocytes play an important role in
neuropathic pain sensitization by releasing astrocytic mediators (eg cytokines, chemokines …

[引用][C] Connexin-43 induces chemokine release from spinal cord astrocytes to maintain late-phase neuropathic pain in mice

G Chen, CK Park, RG Xie, T Berta, M Nedergaard… - Brain, 2014 - cir.nii.ac.jp
Connexin-43 induces chemokine release from spinal cord astrocytes to maintain late-phase
neuropathic pain in mice | CiNii Research CiNii 国立情報学研究所 学術情報ナビゲータ[サイニィ] …

Connexin-43 induces chemokine release from spinal cord astrocytes to maintain late-phase neuropathic pain in mice.

G Chen, CK Park, RG Xie, T Berta… - Brain: A Journal of …, 2014 - search.ebscohost.com
Increasing evidence suggests that spinal cord astrocytes maintain neuropathic pain
sensitization, but precisely how they do this is unclear. Using a mouse model of neuropathic …

[引用][C] Connexin-43 induces chemokine release from spinal cord astrocytes to maintain late-phase neuropathic pain in mice

G CHEN, CK PARK, RG XIE, T BERTA… - Brain, 2014 - pascal-francis.inist.fr
Connexin-43 induces chemokine release from spinal cord astrocytes to maintain late-phase
neuropathic pain in mice CNRS Inist Pascal-Francis CNRS Pascal and Francis …

Connexin-43 induces chemokine release from spinal cord astrocytes to maintain late-phase neuropathic pain in mice

G Chen, CK Park, RG Xie, T Berta… - Brain: a journal of …, 2014 - pubmed.ncbi.nlm.nih.gov
Accumulating evidence suggests that spinal cord astrocytes play an important role in
neuropathic pain sensitization by releasing astrocytic mediators (eg cytokines, chemokines …

[PDF][PDF] Connexin-43 induces chemokine release from spinal cord astrocytes to maintain late-phase neuropathic pain in mice

G Chen, CK Park, RG Xie, T Berta, M Nedergaard… - Brain, 2014 - researchgate.net
Accumulating evidence suggests that spinal cord astrocytes play an important role in
neuropathic pain sensitization by releasing astrocytic mediators (eg cytokines, chemokines …

[PDF][PDF] Connexin-43 induces chemokine release from spinal cord astrocytes to maintain late-phase neuropathic pain in mice

G Chen, CK Park, RG Xie, T Berta, M Nedergaard… - Brain, 2014 - Citeseer
Accumulating evidence suggests that spinal cord astrocytes play an important role in
neuropathic pain sensitization by releasing astrocytic mediators (eg cytokines, chemokines …

Connexin-43 induces chemokine release from spinal cord astrocytes to maintain late-phase neuropathic pain in mice.

G Chen, CK Park, RG Xie, T Berta… - Brain: a Journal of …, 2014 - europepmc.org
Accumulating evidence suggests that spinal cord astrocytes play an important role in
neuropathic pain sensitization by releasing astrocytic mediators (eg cytokines, chemokines …

Connexin-43 induces chemokine release from spinal cord astrocytes to maintain late-phase neuropathic pain in mice.

G Chen, CK Park, RG Xie, T Berta… - Brain: A Journal of …, 2014 - psycnet.apa.org
Accumulating evidence suggests that spinal cord astrocytes play an important role in
neuropathic pain sensitization by releasing astrocytic mediators (eg cytokines, chemokines …