The Lipopeptide MALP-2 Promotes Collateral Growth.
Kerstin TroidlChristian SchubertAnn-Kathrin VlacilRamesh ChennupatiSören KochJutta SchüttRaghav OberoiWolfgang SchaperThomas Schmitz-RixenBernhard SchiefferKarsten GrotePublished in: Cells (2020)
Beyond their role in pathogen recognition and the initiation of immune defense, Toll-like receptors (TLRs) are known to be involved in various vascular processes in health and disease. We investigated the potential of the lipopeptide and TLR2/6 ligand macrophage activating protein of 2-kDA (MALP-2) to promote blood flow recovery in mice. Hypercholesterolemic apolipoprotein E (Apoe)-deficient mice were subjected to microsurgical ligation of the femoral artery. MALP-2 significantly improved blood flow recovery at early time points (three and seven days), as assessed by repeated laser speckle imaging, and increased the growth of pre-existing collateral arteries in the upper hind limb, along with intimal endothelial cell proliferation in the collateral wall and pericollateral macrophage accumulation. In addition, MALP-2 increased capillary density in the lower hind limb. MALP-2 enhanced endothelial nitric oxide synthase (eNOS) phosphorylation and nitric oxide (NO) release from endothelial cells and improved the experimental vasorelaxation of mesenteric arteries ex vivo. In vitro, MALP-2 led to the up-regulated expression of major endothelial adhesion molecules as well as their leukocyte integrin receptors and consequently enhanced the endothelial adhesion of leukocytes. Using the experimental approach of femoral artery ligation (FAL), we achieved promising results with MALP-2 to promote peripheral blood flow recovery by collateral artery growth.
Keyphrases
- blood flow
- endothelial cells
- nitric oxide synthase
- nitric oxide
- cell proliferation
- high glucose
- healthcare
- adipose tissue
- poor prognosis
- public health
- peripheral blood
- immune response
- vascular endothelial growth factor
- type diabetes
- inflammatory response
- candida albicans
- escherichia coli
- staphylococcus aureus
- biofilm formation
- cognitive decline
- mental health
- atomic force microscopy
- small molecule
- metabolic syndrome
- cell migration
- long non coding rna
- amino acid
- mild cognitive impairment