Abstract

BackgroundIn the bone marrow microenvironment (BM), endothelial cells are individual cells that form part of the sinusoidal blood vessels called the “bone marrow endothelial-vascular niche.” They account for less than 2% of the bone marrow cells. They play essential functions by generating growth and inhibitory factors that promote the hematopoietic stem cells (HSCs) regulation. In response to inflammatory stimuli, the BMECs increase in proliferation to maintain the blood vessels’ integrity within the BM. The inflammatory response releases cytokines such as tumor necrosis factor-alpha (TNF-α) that promote vascular endothelial cells’ expansion and upregulation of adhesion molecules (ICAM-1 and VCAM-1, respectively) in the BM. However, the evaluation of mouse BMECs in the bone marrow microenvironment is scared by a lack of mouse bone marrow endothelial cell primary cultureMethodsTwo steps approach for isolation of bone marrow endothelial cells (BMECs) from mice. In brief, the bone marrow cells extracted from the mice long bones were cultured overnight with Dulbecco’s modified Eagle’s medium (DMEM) supplemented with 20% fetal bovine serum (FBS) and antibiotics to separate between marrow-derived adherent and non-adherent cells. The floating cells were discarded, and the adhered section detached with accutase and BMECs selected using CD31 microbeads. The isolated BMECs were cultured in a dish pre-coated with rat-tail collagen type 1 with endothelial cells medium supplement with growth factors. The cells were verified by confocal microscopy for morphology and tube formation by matrigel assay. We validate the cells’ purity by flow cytometry, RT-qPCR, immunofluorescence staining, and immunoblotting by established BMEC markers, PECAM-1, VE-cadherin, vascular endothelial cell growth factor receptor-2 (VEGFR2), CD45, E-selectin, and endothelial selectin adhesion molecule (ESAM). Lastly, we characterize BMEC activation with recombinant TNF-α.ResultsOur method clearly defined the cells isolated have the characteristics of BMECs with the expression of CD31, VE-cadherin, E-selectin, VEGFR-2, and ESAM. The cells’ response to TNF-α indicates its inflammatory function by increasing proliferation and upregulation of adhesion molecules.ConclusionsThis study outline a simple new technique of isolating mouse BMEC primary culture and a suitable method to evaluate the function and dysregulation of BMEC in in vitro studies using mouse models.

Highlights

  • In the bone marrow microenvironment (BM), endothelial cells are individual cells that form part of the sinusoidal blood vessels called the “bone marrow endothelial-vascular niche.” They account for less than 2% of the bone marrow cells

  • Most studies have documented that endothelial cells express a positive marker such as von Willebrand factor (VWF), intracellular adhesion molecule 1 (ICAM-1 /CD106), vascular adhesion molecule 1 (VCAM-1/CD105), E-selectin, BMA120, and endothelial selective adhesion molecule (ESAM) [8,9,10]

  • Flow cytometry analysis of bone marrow endothelial cells Briefly, the floating cells were discarded after overnight incubation, and the marrow-adherent cells were detached with accutase solution

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Summary

Introduction

In the bone marrow microenvironment (BM), endothelial cells are individual cells that form part of the sinusoidal blood vessels called the “bone marrow endothelial-vascular niche.” They account for less than 2% of the bone marrow cells. The endothelial cells are part of the sinusoid-vascular niche in the bone marrow microenvironment They play a significant role in producing growth and inhibitory cytokine that regulates the function of the hematopoietic stem cells. The inflammatory response releases cytokines that promote their activation, such as tumor necrosis factor, interleukin 6 These cytokines, in turn, increase the expression of the endothelial adhesion molecule, such as vascular adhesion molecules (VCAM-1), E-selectin, and intracellular adhesion molecules (ICAM-1), respectively [1,2,3]. The adherent marrow-derived cells were suspended with a single magnetic MLECs CD31 microbead incubation and bounded cell isolation to separate the vascular endothelial cells from the rest of the adherent cells We hypothesized that this method could evaluate the primary mouse bone marrow endothelial cells in vitro studies and better understand the genetics, phenotype, or proteomic studies using a mouse model. We will highlight factors that need to take into consideration when using this method

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