Eimeria (E.) bovis sporozoites as well as Toxoplasma (T.) gondii and Neospora (N.) caninum tachyzoites can invade bovine endothelial cells (BUVEC) in vitro and develop to next stage meronts within 15-20 and 3-4 days, respectively. The latter differences suggest different immune evasion strategies, particularly concerning innate reactions. Realtime RT-PCR techniques were used to determine transcript levels of genes relevant in this sense, i.e. adhesion molecule, chemokine, growth factor GM-CSF, cyclooxygenase 2 (COX-2) and iNOS genes in infected cells. In addition, adhesion of neutrophils (PMN) to infected BUVEC monolayers was quantified. Effects differed between E. bovis and T. gondii/N. caninum as the latter two species strongly enhance the transcription of all genes in question and induce PMN adhesion to infected BUVEC whereas E. bovis either caused only weak responses or failed to enhance gene transcription as in case of CXC chemokines and COX-2. It even down regulates adhesion molecule expression in response to cytokines. The differences between the species may reflect differing immune evasion strategies, in case of E. bovis favouring its long lasting development to macromeronts.

Download full-text PDF

Source

Publication Analysis

Top Keywords

bovine endothelial
8
endothelial cells
8
eimeria bovis
8
toxoplasma gondii
8
gondii neospora
8
neospora caninum
8
immune evasion
8
evasion strategies
8
adhesion molecule
8
infected buvec
8

Similar Publications

Purpose: To investigate the effect of Rho-associated protein kinase (ROCK) inhibitor Y27632 on bioenergetic capacity and resilience of corneal endothelial cells (CECs) under metabolic stress.

Methods: Bovine CECs (BCECs) were treated with Y27632 and subjected to bioenergetic profiling using the Seahorse XFp Analyzer. The effects on adenosine triphosphate (ATP) production through oxidative phosphorylation and glycolysis were measured.

View Article and Find Full Text PDF

We hypothesized that a strategy employing tissue-specific endothelial cells (EC) might facilitate the identification of tissue- or organ-specific vascular functions of ubiquitous metabolites. An unbiased approach was employed to identify water-soluble small molecules with mitogenic activity on choroidal EC. We identified adenosine diphosphate (ADP) as a candidate, following biochemical purification from mouse EL4 lymphoma extracts.

View Article and Find Full Text PDF

Introduction: Before performing cell therapy clinical trials, it is important to understand how cells are influenced by different growth conditions and to find optimal xeno-free medium formulations. In this study we have investigated the properties of adipose tissue-derived stem cells (ASCs) cultured under xeno-free conditions.

Methods: Human lipoaspirate samples were digested to yield the stromal vascular fraction cells which were then seeded in i) Minimum Essential Medium-α (MEM-α) supplemented with 10 % (v/v) fetal bovine serum (FBS), ii) MEM-α supplemented with 2 % (v/v) human platelet lysate (PLT) or iii) PRIME-XV MSC expansion XSFM xeno-free, serum free medium (XV).

View Article and Find Full Text PDF

Bisphenol S induced endothelial dysfunction via mitochondrial pathway in the vascular endothelial cells, and detoxification effect of albumin binding.

Chem Biol Interact

January 2025

College of Chemistry and Materials, Key Laboratory of Green Catalysis of Jiangxi Education Institutes, Jiangxi Normal University, Nanchang, 330022, China. Electronic address:

As a replacement of bisphenol A, bisphenol S (BPS) is commonly used in the wrappers and food containers of daily life. Epidemiological studies demonstrate a close link between BPS exposure and vascular diseases, where the biological activities of BPS remain scarcely known. Herein, the effects of BPS on endothelial function as well as the underlying mechanism were investigated in human umbilical vein endothelial cells (HUVECs) and mouse arteries.

View Article and Find Full Text PDF

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!