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- Safety Data Sheet
Catalog #: Product Name: 78113 Human Recombinant IFN-beta (HEK293-expressed) 78113.1 Human Recombinant IFN-beta (HEK293-expressed) Catalog #: 78113 Product Name: Human Recombinant IFN-beta (HEK293-expressed) Catalog #: 78113.1 Product Name: Human Recombinant IFN-beta (HEK293-expressed) - Reference(Jun 2024) iScience 27 7
The ATP-exporting channel Pannexin 1 promotes CD8
SummarySensing of extracellular ATP (eATP) controls CD8+ T cell function. Their accumulation can occur through export by specialized molecules, such as the release channel Pannexin 1 (Panx1). Whether Panx1 controls CD8+ T cell immune responses in vivo, however, has not been previously addressed. Here, we report that T-cell-specific Panx1 is needed for CD8+ T cell responses to viral infections and cancer. We found that CD8-specific Panx1 promotes both effector and memory CD8+ T cell responses. Panx1 favors initial effector CD8+ T cell activation through extracellular ATP (eATP) export and subsequent P2RX4 activation, which helps promote full effector differentiation through extracellular lactate accumulation and its subsequent recycling. In contrast, Panx1 promotes memory CD8+ T cell survival primarily through ATP export and subsequent P2RX7 engagement, leading to improved mitochondrial metabolism. In summary, Panx1-mediated eATP export regulates effector and memory CD8+ T cells through distinct purinergic receptors and different metabolic and signaling pathways. Graphical abstract Highlights•The hemichannel Panx1 promotes in vivo effector and memory CD8+ T cell responses•Panx1 promotes effector CD8+ T cells via eATP and lactate extracellular accumulation•Panx1 promotes memory CD8+ T cell survival by eATP export and activation of AMPK Natural sciences; Biological sciences; Biochemistry; Immunology; Immune response; Immune systemCatalog #: Product Name: 19853 EasySep™ Mouse CD8+ T Cell Isolation Kit Catalog #: 19853 Product Name: EasySep™ Mouse CD8+ T Cell Isolation Kit Safety Data SheetCatalog #: Product Name: 03800 ClonaCell™-HY Hybridoma Kit 03805 ClonaCell™-HY Medium E Catalog #: 03800 Product Name: ClonaCell™-HY Hybridoma Kit Catalog #: 03805 Product Name: ClonaCell™-HY Medium E Reference(Jul 2024) Research Square 23Targeted delivery of TGF-β mRNA to lung parenchyma using one-component ionizable amphiphilic Janus Dendrimers
Current clinical strategies for the delivery of pulmonary therapeutics to the lung are primarily targeted to the upper portions of the airways. However, targeted delivery to the lower regions of the lung is necessary for the treatment of parenchymal lung injury and disease. Here, we have developed an mRNA therapeutic for the lower lung using one-component Ionizable Amphiphilic Janus Dendrimers (IAJDs) as a delivery vehicle. We deliver an anti-inflammatory cytokine mRNA, transforming growth factor-beta (TGF-β), to produce transient protein expression in the lower regions of the lung. This study highlights IAJD’s potential for precise, effective, and safe delivery of TGF-β mRNA to the lung. This delivery system offers a promising approach for targeting therapeutics to the specific tissues, a strategy necessary to fill the current clinical gap in treating parenchymal lung injury and disease.Catalog #: Product Name: 18945 EasySep™ Mouse CD45 Positive Selection Kit Catalog #: 18945 Product Name: EasySep™ Mouse CD45 Positive Selection Kit Safety Data SheetCatalog #: Product Name: 78136 Human Recombinant EGF, ACF 78136.1 Human Recombinant EGF, ACF 78136.2 Human Recombinant EGF, ACF Catalog #: 78136 Product Name: Human Recombinant EGF, ACF Catalog #: 78136.1 Product Name: Human Recombinant EGF, ACF Catalog #: 78136.2 Product Name: Human Recombinant EGF, ACF Reference(Jul 2024) Research Square 197 6Trained Immunity Generated by the Recombinant Zoster Vaccine
Trained immunity may play a role in vaccine-induced protection against infections. We showed that the highly efficacious recombinant VZV-gE zoster vaccine (RZV) generated trained immunity in monocytes, natural killer (NK) cells, and dendritic cells (DCs) and that the less efficacious live zoster vaccine did not. RZV stimulated ex vivo gE-specific monocyte, DC and NK cell responses that did not correlate with CD4 + T-cell responses. These responses were also elicited in purified monocyte and NK cell cocultures stimulated with VZV-gE and persisted above prevaccination levels for ≥ 4 years post-RZV administration. RZV administration also increased ex vivo heterologous monocyte and NK cell responses to herpes simplex and cytomegalovirus antigens. ATAC-seq analysis and ex vivo TGFβ1 supplementation and inhibition experiments demonstrated that decreased tgfβ1 transcription resulting from RZV-induced chromatin modifications may explain the development of monocyte trained immunity. The role of RZV-trained immunity in protection against herpes zoster and other infections should be further studied.Catalog #: Product Name: 19055 EasySep™ Human NK Cell Enrichment Kit Catalog #: 19055 Product Name: EasySep™ Human NK Cell Enrichment Kit Safety Data SheetCatalog #: Product Name: 73342 Puromycin (Dihydrochloride) 73344 Puromycin (Dihydrochloride) Catalog #: 73342 Product Name: Puromycin (Dihydrochloride) Catalog #: 73344 Product Name: Puromycin (Dihydrochloride) Reference(May 2024) Cellular and Molecular Gastroenterology and Hepatology 18 3Mesencephalic Astrocyte-derived Neurotrophic Factor Supports Hepatitis B Virus-induced Immunotolerance
Background & AimsThe immune tolerance induced by hepatitis B virus (HBV) is a major challenge for achieving effective viral clearance, and the mechanisms involved are not well-understood. One potential factor involved in modulating immune responses is mesencephalic astrocyte-derived neurotrophic factor (MANF), which has been reported to be increased in patients with chronic hepatitis B. In this study, our objective is to examine the role of MANF in regulating immune responses to HBV.MethodsWe utilized a commonly used HBV-harboring mouse model, where mice were hydrodynamically injected with the pAAV/HBV1.2 plasmid. We assessed the HBV load by measuring the levels of various markers including hepatitis B surface antigen, hepatitis B envelope antigen, hepatitis B core antigen, HBV DNA, and HBV RNA.ResultsOur study revealed that following HBV infection, both myeloid cells and hepatocytes exhibited increased expression of MANF. Moreover, we observed that mice with myeloid-specific MANF knockout (ManfMye-/-) displayed reduced HBV load and improved HBV-specific T cell responses. The decreased HBV-induced tolerance in ManfMye-/- mice was associated with reduced accumulation of myeloid-derived suppressor cells (MDSCs) in the liver. Restoring MDSC levels in ManfMye-/- mice through MDSC adoptive transfer reinstated HBV-induced tolerance. Mechanistically, we found that MANF promoted MDSC expansion by activating the IL-6/STAT3 pathway. Importantly, our study demonstrated the effectiveness of a combination therapy involving an hepatitis B surface antigen vaccine and nanoparticle-encapsulated MANF siRNA in effectively clearing HBV in HBV-carrier mice.ConclusionThe current study reveals that MANF plays a previously unrecognized regulatory role in liver tolerance by expanding MDSCs in the liver through IL-6/STAT3 signaling, leading to MDSC-mediated CD8+ T cell exhaustion. Graphical abstractCatalog #: Product Name: 19856 EasySep™ Mouse Hematopoietic Progenitor Cell Isolation Kit Catalog #: 19856 Product Name: EasySep™ Mouse Hematopoietic Progenitor Cell Isolation Kit Safety Data SheetCatalog #: Product Name: 72262 All-Trans Retinoic Acid 72264 All-Trans Retinoic Acid Catalog #: 72262 Product Name: All-Trans Retinoic Acid Catalog #: 72264 Product Name: All-Trans Retinoic Acid Reference(Jul 2024) Molecular Cancer 23 3Unveiling the PDK4-centered rituximab-resistant mechanism in DLBCL: the potential of the “Smart†exosome nanoparticle therapy
BackgroundDiffuse large B-cell lymphoma (DLBCL) represents a prevalent malignant tumor, with approximately 40% of patients encountering treatment challenges or relapse attributed to rituximab resistance, primarily due to diminished or absent CD20 expression. Our prior research identified PDK4 as a key driver of rituximab resistance through its negative regulation of CD20 expression. Further investigation into PDK4’s resistance mechanism and the development of advanced exosome nanoparticle complexes may unveil novel resistance targets and pave the way for innovative, effective treatment modalities for DLBCL.MethodsWe utilized a DLBCL-resistant cell line with high PDK4 expression (SU-DHL-2/R). We infected it with short hairpin RNA (shRNA) lentivirus for RNA sequencing, aiming to identify significantly downregulated mRNA in resistant cells. Techniques including immunofluorescence, immunohistochemistry, and Western blotting were employed to determine PDK4’s localization and expression in resistant cells and its regulatory role in phosphorylation of Histone deacetylase 8 (HDAC8). Furthermore, we engineered advanced exosome nanoparticle complexes, aCD20@ExoCTX/siPDK4, through cellular, genetic, and chemical engineering methods. These nanoparticles underwent characterization via Dynamic Light Scattering (DLS) and Transmission Electron Microscopy (TEM), and their cellular uptake was assessed through flow cytometry. We evaluated the nanoparticles’ effects on apoptosis in DLBCL-resistant cells and immune cells using CCK-8 assays and flow cytometry. Additionally, their capacity to counteract resistance and exert anti-tumor effects was tested in a resistant DLBCL mouse model.ResultsWe found that PDK4 initiates HDAC8 activation by phosphorylating the Ser-39 site, suppressing CD20 protein expression through deacetylation. The aCD20@ExoCTX/siPDK4 nanoparticles served as effective intracellular delivery mechanisms for gene therapy and monoclonal antibodies, simultaneously inducing apoptosis in resistant DLBCL cells and triggering immunogenic cell death in tumor cells. This dual action effectively reversed the immunosuppressive tumor microenvironment, showcasing a synergistic therapeutic effect in a subcutaneous mouse tumor resistance model.ConclusionsThis study demonstrates that PDK4 contributes to rituximab resistance in DLBCL by modulating CD20 expression via HDAC8 phosphorylation. The designed exosome nanoparticles effectively overcome this resistance by targeting the PDK4/HDAC8/CD20 pathway, representing a promising approach for drug delivery and treating patients with Rituximab-resistant DLBCL.Supplementary InformationThe online version contains supplementary material available at 10.1186/s12943-024-02057-0.Catalog #: Product Name: 19851 EasySep™ Mouse T Cell Isolation Kit Catalog #: 19851 Product Name: EasySep™ Mouse T Cell Isolation Kit Safety Data SheetCatalog #: Product Name: 74032 Geldanamycin 74034 Geldanamycin Catalog #: 74032 Product Name: Geldanamycin Catalog #: 74034 Product Name: Geldanamycin Reference(Jul 2024) Nature Communications 15Engineering programmable material-to-cell pathways via synthetic notch receptors to spatially control differentiation in multicellular constructs
Synthetic Notch (synNotch) receptors are genetically encoded, modular synthetic receptors that enable mammalian cells to detect environmental signals and respond by activating user-prescribed transcriptional programs. Although some materials have been modified to present synNotch ligands with coarse spatial control, applications in tissue engineering generally require extracellular matrix (ECM)-derived scaffolds and/or finer spatial positioning of multiple ligands. Thus, we develop here a suite of materials that activate synNotch receptors for generalizable engineering of material-to-cell signaling. We genetically and chemically fuse functional synNotch ligands to ECM proteins and ECM-derived materials. We also generate tissues with microscale precision over four distinct reporter phenotypes by culturing cells with two orthogonal synNotch programs on surfaces microcontact-printed with two synNotch ligands. Finally, we showcase applications in tissue engineering by co-transdifferentiating fibroblasts into skeletal muscle or endothelial cell precursors in user-defined micropatterns. These technologies provide avenues for spatially controlling cellular phenotypes in mammalian tissues. Synthetic Notch (synNotch) receptors are genetically encoded, modular synthetic receptors that enable mammalian cells to detect environmental signals and respond by activating user-prescribed transcriptional programs. Here the authors apply synNotch receptors to spatially control differentiation of endothelial and skeletal muscle cells in a multicellular construct on assorted biomaterials.Catalog #: Product Name: 18000 EasySepâ„¢ Magnet Catalog #: 18000 Product Name: EasySepâ„¢ Magnet Items 1201 to 1212 of 13914 total
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