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Updated: Jul 15, 2026

Kupffer Cell Isolation for Nanoparticle Toxicity Testing
Published on: August 18, 2015
Pro-inflammatory cytokines from Kupffer cells downregulate hepatocyte expression of adrenomedullin binding protein-1
Asha Jacob1, Mian Zhou, Rongqian Wu
1Department of Surgery, North Shore University Hospital and Long Island Jewish Medical Center, Manhasset, NY 11030, USA.
Abstract:
Polymicrobial sepsis is characterized by an early, hyperdynamic phase followed by a late hypodynamic phase. Adrenomedullin (AM), a vasodilatory peptide, inhibits this transition from the early phase to the late phase. Adrenomedullin binding protein-1 (AMBP-1) enhances AM-mediated activities. The decrease of AMBP-1 levels in late sepsis reduces the vascular response to AM and produces the hypodynamic phase. Studies have indicated that the administration of LPS downregulates AMBP-1 production in the liver. Since hepatocytes are the primary source of AMBP-1 biosynthesis in the liver, we employed a co-culture strategy using hepatocyte and Kupffer cells to determine whether LPS directly or by increasing pro-inflammatory cytokines from Kupffer cells downregulates AMBP-1 production. Hepatocytes and Kupffer cells isolated from rats were co-cultured and treated with LPS for 24 h. LPS significantly attenuated AMBP-1 protein expression in a dose-dependent manner. Since AMBP-1 is basically a secretory protein, cell supernatants from co-culture cells treated with LPS were examined for AMBP-1 protein levels. LPS treatment caused a dose related decrease in AMBP-1 protein secretion. Similarly, LPS treatment produced a significant decrease in AMBP-1 protein expression in hepatocytes and Kupffer cells cultured using transwell inserts. LPS had no direct effect on AMBP-1 levels in cultured hepatocytes or Kupffer cells alone. To confirm that the observed effects in co-culture were due to the cytokines released from Kupffer cells, hepatocytes were treated with IL-1beta or TNF-alpha for 24 h and AMBP-1 expression was examined. The results indicated that both cytokines significantly inhibited AMBP-1 protein levels. Thus, pro-inflammatory cytokines released from Kupffer cells are responsible for downregulation of AMBP-1.
Insights
Lipopolysaccharide (LPS) downregulates Adrenomedullin binding protein-1 (AMBP-1) in sepsis by inducing Kupffer cells to release pro-inflammatory cytokines. These cytokines, not LPS directly, inhibit AMBP-1 production in hepatocytes, worsening sepsis progression.
Area of Science:
- Biochemistry
- Immunology
- Pathophysiology
Background:
- Polymicrobial sepsis progresses through hyperdynamic and hypodynamic phases.
- Adrenomedullin (AM) peptide inhibits sepsis phase transition, with Adrenomedullin binding protein-1 (AMBP-1) enhancing its activity.
- Decreased AMBP-1 levels in sepsis reduce vascular response to AM, leading to the hypodynamic phase.
Purpose of the Study:
- To investigate whether lipopolysaccharide (LPS) directly downregulates AMBP-1 production or if it acts indirectly via pro-inflammatory cytokines from Kupffer cells.
- To elucidate the role of Kupffer cell-derived cytokines in LPS-induced AMBP-1 downregulation in hepatocytes.
Main Methods:
- Co-culture of rat hepatocytes and Kupffer cells treated with LPS.
- Analysis of AMBP-1 protein expression and secretion in cell supernatants and lysates.
- Hepatocyte treatment with IL-1beta and TNF-alpha to assess cytokine effects on AMBP-1 levels.
Main Results:
- LPS treatment significantly decreased AMBP-1 protein expression and secretion in co-cultured cells in a dose-dependent manner.
- LPS had no direct effect on AMBP-1 levels in isolated hepatocytes or Kupffer cells.
- IL-1beta and TNF-alpha significantly inhibited AMBP-1 protein levels in hepatocytes.
Conclusions:
- Pro-inflammatory cytokines released from Kupffer cells, not LPS directly, are responsible for the downregulation of AMBP-1 during sepsis.
- This Kupffer cell-mediated suppression of AMBP-1 contributes to the transition to the hypodynamic phase of sepsis.
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