Showing 1 - 2 of 2 results for "70042"
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- ReferenceH. Zhang et al. ( 2020) Cell host {\&} microbe 27 4 556--570.e6
TMEM173 Drives Lethal Coagulation in Sepsis.
The discovery of TMEM173/STING-dependent innate immunity has recently provided guidance for the prevention and management of inflammatory disorders. Here, we show that myeloid TMEM173 occupies an essential role in regulating coagulation in bacterial infections through a mechanism independent of type I interferon response. Mechanistically, TMEM173 binding to ITPR1 controls calcium release from the endoplasmic reticulum in macrophages and monocytes. The TMEM173-dependent increase in cytosolic calcium drives Gasdermin D (GSDMD) cleavage and activation, which triggers the release of F3, the key initiator of blood coagulation. Genetic or pharmacological inhibition of the TMEM173-GSDMD-F3 pathway blocks systemic coagulation and improves animal survival in three models of sepsis (cecal ligation and puncture or bacteremia with Escherichia coli or Streptococcus pneumoniae infection). The upregulation of the TMEM173 pathway correlates with the severity of disseminated intravascular coagulation and mortality in patients with sepsis. Thus, TMEM173 is a key regulator of blood clotting during lethal bacterial infections. View PublicationCatalog #: Product Name: 19861 EasySep™ Mouse Monocyte Isolation Kit 70042 Human Peripheral Blood Macrophages, Frozen Catalog #: 19861 Product Name: EasySep™ Mouse Monocyte Isolation Kit Catalog #: 70042 Product Name: Human Peripheral Blood Macrophages, Frozen - ReferenceTareen SU et al. (MAR 2014) Molecular therapy : the journal of the American Society of Gene Therapy 22 3 575--87
Design of a novel integration-deficient lentivector technology that incorporates genetic and posttranslational elements to target human dendritic cells.
As sentinels of the immune system, dendritic cells (DCs) play an essential role in regulating cellular immune responses. One of the main challenges of developing DC-targeted therapies includes the delivery of antigen to DCs in order to promote the activation of antigen-specific effector CD8 T cells. With the goal of creating antigen-directed immunotherapeutics that can be safely administered directly to patients, Immune Design has developed a platform of novel integration-deficient lentiviral vectors that target and deliver antigen-encoding nucleic acids to human DCs. This platform, termed ID-VP02, utilizes a novel genetic variant of a Sindbis virus envelope glycoprotein with posttranslational carbohydrate modifications in combination with Vpx, a SIVmac viral accessory protein, to achieve efficient targeting and transduction of human DCs. In addition, ID-VP02 incorporates safety features in its design that include two redundant mechanisms to render ID-VP02 integration-deficient. Here, we describe the characteristics that allow ID-VP02 to specifically transduce human DCs, and the advances that ID-VP02 brings to conventional third-generation lentiviral vector design as well as demonstrate upstream production yields that will enable manufacturing feasibility studies to be conducted. View PublicationCatalog #: Product Name: 70034 Human Peripheral Blood Monocytes, Frozen 70042 Human Peripheral Blood Macrophages, Frozen Catalog #: 70034 Product Name: Human Peripheral Blood Monocytes, Frozen Catalog #: 70042 Product Name: Human Peripheral Blood Macrophages, Frozen
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