PARPi decrease PARP activity in a dose-dependent manner. PARP activity of primary monocytes treated with different concentrations of PARPi AIQ (A) and olaparib (B). Results are presented as the mean ± SEM (*P < 0.05, **P < 0.01 vs. untreated control) from two independent experiments for at least three replicates. Figure S2. PARP activity significantly diminished in ex vivo treated mouse leukocytes. (A) PARP activity was measured in freshly isolated and ex vivo PARPi-treated mouse leukocytes. Data are presented as mean ± SEM for at least three replicates from three/four donor mice. ***P < 0.005 indicate significance vs. non-treated. (B) Flow cytometry data presenting leukocyte profile of isolated leukocytes with or without PARPi treatment
The effect of calcium chelator (BAPTA-AM) on the LPS-plus-trypsin-induced ERK/p38 MAPK phosphorylati...
LPAR5 controls LPA-mediated downstream signaling. (A) BV-2 microglia cells were cultured in 6-well p...
Figure S3. P2X7Rs do not regulate microglial intracellular pH, IL-1β/IL-18 release, blebbing, or pho...
PARP1 antibody validation. (A) Western blot of PARP1 and actin were performed on OVCAR8 cells infect...
Figure S1. Purity of primary microglia cultures. Figure S2. Par1b/MARK2 is expressed in microglia. F...
DPI post-treatment had no effect to attenuate IL10on attenuating IL-10 and IL-12 expression in brain...
Characterization of the cerebral vasculature and blood flow. a Immediately after euthanasia, Poldip2...
Er-NPC-treated animals recover olfactory capabilities. Five groups of animals were analyzed with thi...
Figure S1. Treatment of rat cortical microglia with Apo-SAA or LPS upregulates, in a time-dependent ...
Figure S3. (A) Stimulation with Aβ1–42 led to a concentration-dependent LDH-release. For further exp...
DPI post-treatment after LPS stimulation had no significant effect on NOX1 expression. C57BL/6 mice ...
Figure S6. (A) 10 μM Aβ1–42 significantly increased caspase 1 mRNA. Co-treatment with A1AT blocked t...
Figure S1.. Effect of extended perfusion of subpressive Ang II on cerebral inflammation. Iba-1 (A) a...
TNF neutralization limits OLG and T cell apoptosis during progressive EAE in GFAPγR1Δ mice. Longitud...
PKD family inhibition abrogates LPA-mediated downstream signaling. (A) BV-2 microglia cells were cul...
The effect of calcium chelator (BAPTA-AM) on the LPS-plus-trypsin-induced ERK/p38 MAPK phosphorylati...
LPAR5 controls LPA-mediated downstream signaling. (A) BV-2 microglia cells were cultured in 6-well p...
Figure S3. P2X7Rs do not regulate microglial intracellular pH, IL-1β/IL-18 release, blebbing, or pho...
PARP1 antibody validation. (A) Western blot of PARP1 and actin were performed on OVCAR8 cells infect...
Figure S1. Purity of primary microglia cultures. Figure S2. Par1b/MARK2 is expressed in microglia. F...
DPI post-treatment had no effect to attenuate IL10on attenuating IL-10 and IL-12 expression in brain...
Characterization of the cerebral vasculature and blood flow. a Immediately after euthanasia, Poldip2...
Er-NPC-treated animals recover olfactory capabilities. Five groups of animals were analyzed with thi...
Figure S1. Treatment of rat cortical microglia with Apo-SAA or LPS upregulates, in a time-dependent ...
Figure S3. (A) Stimulation with Aβ1–42 led to a concentration-dependent LDH-release. For further exp...
DPI post-treatment after LPS stimulation had no significant effect on NOX1 expression. C57BL/6 mice ...
Figure S6. (A) 10 μM Aβ1–42 significantly increased caspase 1 mRNA. Co-treatment with A1AT blocked t...
Figure S1.. Effect of extended perfusion of subpressive Ang II on cerebral inflammation. Iba-1 (A) a...
TNF neutralization limits OLG and T cell apoptosis during progressive EAE in GFAPγR1Δ mice. Longitud...
PKD family inhibition abrogates LPA-mediated downstream signaling. (A) BV-2 microglia cells were cul...
The effect of calcium chelator (BAPTA-AM) on the LPS-plus-trypsin-induced ERK/p38 MAPK phosphorylati...
LPAR5 controls LPA-mediated downstream signaling. (A) BV-2 microglia cells were cultured in 6-well p...
Figure S3. P2X7Rs do not regulate microglial intracellular pH, IL-1β/IL-18 release, blebbing, or pho...