Attenuation of neutrophil-mediated liver injury in mice by drug-free E-selectin binding polymer
JOURNAL OF CONTROLLED RELEASE
Authors: Milosevic, Nenad; Rutter, Marie; Ventura, Yvonne; Kezerle, Yarden; Feinshtein, Valeria; David, Ayelet
Abstract
Inflammation with neutrophils infiltration is a prominent feature of alcohol-related liver disease (ARLD) and contributes to the severity of liver injury. Although an array of potential treatments has been studied, the standard treatment regimen is controversial and can induce severe side effects and infection-related complications. E-selectin, a cytokine inducible cell adhesion molecule, mediates the initial interaction of leucocytes with endothelial cells, and facilitates their further adhesion and extravasation into inflamed tissues. Given the important role of E-selectin in leukocytes trafficking, we hypothesized that a synthetic polymer presenting multiple copies of E-selectin binding peptide in a polyvalent manner (P-Esbp) may block the "roads" that facilitate neutrophil infiltration, inhibit the recruitment of neutrophils to the inflamed sites and reduce the extent of liver injury. We now demonstrate in vitro that P-Esbp reduced the recruitment of neutrophils (collected from blood of donors) on activated human umbilical vein endothelial cells (HUVEC) under flow conditions. Pre-treatment of mice with P-Esbp prior to alcohol binge attenuated alcohol-induced serum transaminase (ALT, AST) elevation, reduced pro-inflammatory cytokines (TNF alpha and IL-1 beta) and chemokines (MIP-2/CXCL2 and MCP-1/CCL2) in National Institute on Alcohol Abuse and Alcoholism (NIAAA) model. Also, the up-regulation of neutrophil marker Ly6G and the number of MPO positive cells in the injured tissue was significantly reduced by the treatment, indicating diminished neutrophil infiltration. Moreover, as a result of P-Esbp treatment, E-selectin expression in the liver (mRNA and protein level) was downregulated, suggesting a potential to decrease ongoing local inflammatory response. Overall, our findings highlight the anti-inflammatory properties of the "drug-free" P-Esbp and its therapeutic potential to attenuate an excessive inflammation where infiltrating neutrophils can damage tissues and organs.
Whole-blood expression of inflammasome- and glucocorticoid-related mRNAs correctly separates treatment-resistant depressed patients from drug-free and responsive patients in the BIODEP study
TRANSLATIONAL PSYCHIATRY
Authors: Cattaneo, Annamaria; Ferrari, Clarissa; Turner, Lorinda; Mariani, Nicole; Enache, Daniela; Hastings, Caitlin; Kose, Melisa; Lombardo, Giulia; McLaughlin, Anna P.; Nettis, Maria A.; Nikkheslat, Naghmeh; Sforzini, Luca; Worrell, Courtney; Zajkowska, Zuzanna; Cattane, Nadia; Lopizzo, Nicola; Mazzelli, Monica; Pointon, Linda; Cowen, Philip J.; Cavanagh, Jonathan; Harrison, NeilA; de Boer, Peter; Jones, Declan; Drevets, Wayne C.; Mondelli, Valeria; Bullmore, Edward T.; Pariante, Carmine M.
Abstract
The mRNA expression signatures associated with the 'pro-inflammatory' phenotype of depression, and the differential signatures associated with depression subtypes and the effects of antidepressants, are still unknown. We examined 130 depressed patients (58 treatment-resistant, 36 antidepressant-responsive and 36 currently untreated) and 40 healthy controls from the BIODEP study, and used whole-blood mRNA qPCR to measure the expression of 16 candidate mRNAs, some never measured before: interleukin (IL)-1-beta,IL-6,TNF-alpha, macrophage inhibiting factor (MIF), glucocorticoid receptor (GR),SGK1,FKBP5, the purinergic receptorP2RX7,CCL2,CXCL12, c-reactive protein (CRP), alpha-2-macroglobulin (A2M), acquaporin-4 (AQP4),ISG15,STAT1andUSP-18. All genes butAQP4,ISG15andUSP-18were differentially regulated. Treatment-resistant and drug-free depressed patients had both increased inflammasome activation (higherP2RX7and proinflammatory cytokines/chemokines mRNAs expression) and glucocorticoid resistance (lowerGRand higherFKBP5mRNAs expression), while responsive patients had an intermediate phenotype with, additionally, lowerCXCL12. Most interestingly, using binomial logistics models we found that a signature of six mRNAs (P2RX7,IL-1-beta, IL-6,TNF-alpha, CXCL12andGR) distinguished treatment-resistant from responsive patients, even after adjusting for other variables that were different between groups, such as a trait- and state-anxiety, history of childhood maltreatment and serum CRP. Future studies should replicate these findings in larger, longitudinal cohorts, and test whether this mRNA signature can identify patients that are more likely to respond to adjuvant strategies for treatment-resistant depression, including combinations with anti-inflammatory medications.