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Etiology of Microvascular Changes in Gram-positive Sepsis: Mechanisms and Therapeutic Options

Etiology of Microvascular Changes in Gram-positive Sepsis: Mechanisms and Therapeutic Options
革兰氏阳性脓毒症微血管变化的病因学:机制和治疗选择
批准号:
10433861
负责人:
Perenlei Enkhbaatar
金额:
$31.6万
依托单位国家:
美国
项目类别:
财政年份:
2012
资助国家:
美国
项目状态:
已结题
起止时间:
2012-06-01 至 2024-06-30

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英文摘要
Abstract Septic shock is the most frequent cause of death in the intensive care units. The microvascular hyper- permeability resulting in organ tissue edema and the severe hypotension resulting in organ tissue hypo- perfusion are the most detrimental complications of septic patients leading to such a high mortality rate. To date, there are no specific therapies for sepsis. Norepinephrine is used as a first line vasopressor to attenuate hypotension; however, development of host hypo-responsiveness to norepinephrine often requires its use in higher doses, that bring with them unwanted side effects that further increase mortality of septic patients. Large amount of fluids is administered to expand plasma volume and improve tissue perfusion, but, in presences of increased microvascular hyper-permeability, this approach often augments tissue edema and further worsens the tissue hypoxia and injury. Thus, development of safe and efficient therapy that reduces the requirement for both fluid and vasopressors to maintain blood pressure and adequate tissue perfusion is in urgent need. The goal of this translational proposal is to characterize novel mechanistic aspects of microvascular hyper- permeability during methicillin-resistant Staphylococcus aureus (MRSA) sepsis, with special focus on interplay between arginine vasopressin (AVP) V2 receptor (V2R) and potent permeability factors, such as excessive nitric oxide and its metabolites, angiopoieitin-2, and bradykinin and offer efficient therapeutic option that reduces the need for fluid and norepinephrine, and improves survival. Our general hypothesis is that activation of AVP V2R plays a critical role in microvascular hyper-permeability during sepsis and the use of its antagonist tolvaptan, as an adjunct therapy to norepinephrine will alleviate severity of sepsis-induced multi-organ dysfunctions. We further hypothesize that tolvaptan will effectively reduce fluid and vasopressor requirements. To achieve our goal, we propose to study following two specific aims, using clinically relevant ovine model of MRSA sepsis as well as in vitro studies with cultured human pulmonary microvascular endothelial cells. We are particularly optimistic about the possibility that the proposed research will lead to translational clinical studies for AVP V2R antagonists, as an adjunct therapy to norepinephrine, for management of septic shock. Specific Aim 1. To determine that activation of AVP V2R promotes severity of microvascular hyper- permeability and pulmonary edema during MRSA sepsis and septic shock. The goal of this aim will be achieved performing both in vivo ovine and in vitro cultured cell studies. Specific Aim 2. To demonstrate safety and efficacy AVP V2R antagonist, as a potential adjunct therapy, for treatment of septic shock. The goal of this aim will be achieved comparing effects of AVP V2R antagonist tolvaptan with or without norepinephrine in ovine model of MRSA septic shock with special emphasis on cardiovascular collapse.
期刊论文(14)
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DOI: 10.1038/s41598-021-03320-w
发表时间: 2021-12-14
期刊: Scientific reports
影响因子: 4.6
作者: [Fukuda S, Niimi Y, Hirasawa Y, Manyeza ER, Garner CE, Southan G, Salzman AL, Prough DS, Enkhbaatar P]
通讯作者: Enkhbaatar P
DOI: 10.3389/fimmu.2023.1136964
发表时间: 2023
期刊: Frontiers in immunology
影响因子: 7.3
作者: []
通讯作者:
DOI: 10.1186/s12967-017-1366-6
发表时间: 2017-12-28
期刊: Journal of translational medicine
影响因子: 7.4
作者: [Ito H, Malgerud E, Asmussen S, Lopez E, Salzman AL, Enkhbaatar P]
通讯作者: Enkhbaatar P
DOI: 10.1371/journal.pone.0144345
发表时间: 2015
期刊: PloS one
影响因子: 3.7
作者: [Enkhbaatar P, Nelson C, Salsbury JR, Carmical JR, Torres KE, Herndon D, Prough DS, Luan L, Sherwood ER]
通讯作者: Sherwood ER
10
    Therapeutic Use of High Molecular Weight Hyaluronic Acid in Acute Lung Injury Following Severe Bacterial Pneumonia or Sepsis
    Therapeutic Use of High Molecular Weight Hyaluronic Acid in Acute Lung Injury Following Severe Bacterial Pneumonia or Sepsis
    Airway Delivery of Fibrinolytic Therapy for ISALI
    Augmentation of Innate Anti-Microbial Immunity by TLR4 Agonists
    • 批准号:
      8729497
    • 项目类别:
    • 资助金额:
      $29.53万
    • 财政年份:
      2013
    • 负责人:
      Perenlei Enkhbaatar
    • 依托单位:
    国内基金
    海外基金
    Agonist-GPR119-Gs复合物的结构生物学研究
    • 批准号:
      32000851
    • 项目类别:
      青年科学基金项目
    • 资助金额:
      24.0万元
    • 批准年份:
      2020
    • 负责人:
      乔安娜
    • 依托单位: