Product References
Self-renewing macrophages in dorsal root ganglia contribute to promote nerve regeneration.
Proceedings of the National Academy of Sciences of the United States of America
Feng R,Muraleedharan Saraswathy V,Mokalled MH,Cavalli V
PA5-24949 was used in Immunohistochemistry to reveal the heterogeneity of dorsal root ganglia macrophages and their potential neuro- and glioprotective roles, which may inform future therapeutic approaches to treat nerve injury.
Tue Feb 14 00:00:00 UTC 2023
Defective branched-chain amino acid catabolism in dorsal root ganglia contributes to mechanical pain.
EMBO reports
Xie H,Li J,Lian N,Xie M,Wu M,Tang K,Kang Y,Lu P,Li T
PA5-24949 was used in Immunohistochemistry (Frozen) to demonstrate a causal role of defective BCAA catabolism in mechanical pain by enhancing metabolite-mediated epigenetic regulation.
Mon Nov 06 00:00:00 UTC 2023
Disrupted Association of Sensory Neurons With Enveloping Satellite Glial Cells in Fragile X Mouse Model.
Frontiers in molecular neuroscience
Avraham O,Deng PY,Maschi D,Klyachko VA,Cavalli V
PA5-24949 was used in Immunohistochemistry to show that major structural defects in sensory neuron-satellite glial cell (SGC) association in the dorsal root ganglia, manifested by aberrant covering of the neuron and gaps between SGCs and the neuron along their contact surface.
Fri Feb 04 00:00:00 UTC 2022
Disrupted Association of Sensory Neurons With Enveloping Satellite Glial Cells in Fragile X Mouse Model.
Frontiers in molecular neuroscience
Avraham O,Deng PY,Maschi D,Klyachko VA,Cavalli V
PA5-24949 was used in Immunohistochemistry to show that major structural defects in sensory neuron-satellite glial cell (SGC) association in the dorsal root ganglia, manifested by aberrant covering of the neuron and gaps between SGCs and the neuron along their contact surface.
Fri Feb 04 00:00:00 UTC 2022
Profiling sensory neuron microenvironment after peripheral and central axon injury reveals key pathways for neural repair.
eLife
Avraham O,Feng R,Ewan EE,Rustenhoven J,Zhao G,Cavalli V
PA5-24949 was used in Immunohistochemistry to provide a map of the distinct DRG microenvironment responses to peripheral and central injuries at the single-cell level and highlights that manipulating non-neuronal cells could lead to avenues to promote functional recovery after CNS injuries or disease.
Wed Sep 29 00:00:00 UTC 2021
FABP7 upregulation induces a neurotoxic phenotype in astrocytes.
Glia
Killoy KM,Harlan BA,Pehar M,Vargas MR
Published figure using FABP7 polyclonal antibody (Product # PA5-24949) in Western Blot
Tue Dec 01 00:00:00 UTC 2020
FABP7 upregulation induces a neurotoxic phenotype in astrocytes.
Glia
Killoy KM,Harlan BA,Pehar M,Vargas MR
Published figure using FABP7 polyclonal antibody (Product # PA5-24949) in Western Blot
Tue Dec 01 00:00:00 UTC 2020
FABP7 upregulation induces a neurotoxic phenotype in astrocytes.
Glia
Killoy KM,Harlan BA,Pehar M,Vargas MR
Published figure using FABP7 polyclonal antibody (Product # PA5-24949) in Western Blot
Tue Dec 01 00:00:00 UTC 2020
Satellite glial cells promote regenerative growth in sensory neurons.
Nature communications
Avraham O,Deng PY,Jones S,Kuruvilla R,Semenkovich CF,Klyachko VA,Cavalli V
PA5-24949 was used in Immunohistochemistry to reveal that satellite glial cellsare distinct from Schwann cells and share similarities with astrocytes.
Tue Sep 29 00:00:00 UTC 2020
Satellite glial cells promote regenerative growth in sensory neurons.
Nature communications
Avraham O,Deng PY,Jones S,Kuruvilla R,Semenkovich CF,Klyachko VA,Cavalli V
PA5-24949 was used in Immunohistochemistry to reveal that satellite glial cellsare distinct from Schwann cells and share similarities with astrocytes.
Tue Sep 29 00:00:00 UTC 2020
Satellite glial cells promote regenerative growth in sensory neurons.
Nature communications
Avraham O,Deng PY,Jones S,Kuruvilla R,Semenkovich CF,Klyachko VA,Cavalli V
PA5-24949 was used in Immunohistochemistry to reveal that satellite glial cellsare distinct from Schwann cells and share similarities with astrocytes.
Tue Sep 29 00:00:00 UTC 2020