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Generation of Human Monocyte-derived Dendritic Cells from Whole Blood
Published on: December 24, 2016
Human dendritic cell interactions with the zoonotic parasite Cryptosporidium parvum result in activation and
Ralf Ross1, Seyed Sajjad Hasheminasab2, Iván Conejeros2
1Institute of Molecular Immunology, Justus Liebig University Giessen, Giessen, Germany.
Abstract:
Cryptosporidiosis in humans is caused by infection of the zoonotic apicomplexan parasite Cryptosporidium parvum. In 2006, it was included by the World Health Organization (WHO) in the group of the most neglected poverty-related diseases. It is characterized by enteritis accompanied by profuse catarrhalic diarrhea with high morbidity and mortality, especially in children of developing countries under the age of 5 years and in HIV patients. The vulnerability of HIV patients indicates that a robust adaptive immune response is required to successfully fight this parasite. Little is known, however, about the adaptive immune response against C. parvum. To have an insight into the early events of the adaptive immune response, we generated primary human dendritic cells (DCs) from monocytes of healthy blood donors and exposed them to C. parvum oocysts and sporozoites in vitro. DCs are equipped with numerous receptors that detect microbial molecules and alarm signals. If stimulation is strong enough, an essential maturation process turns DCs into unique activators of naïve T cells, a prerequisite of any adaptive immune response. Parasite exposure highly induced the production of the pro-inflammatory cytokines/chemokines interleukin (IL)-6 and IL-8 in DCs. Moreover, antigen-presenting molecules (HLA-DR and CD1a), maturation markers, and costimulatory molecules required for T-cell stimulation (CD83, CD40, and CD86) and adhesion molecules (CD11b and CD58) were all upregulated. In addition, parasite-exposed human DCs showed enhanced cell adherence, increased mobility, and a boosted but time-limited phagocytosis of C. parvum oocysts and sporozoites, representing other prerequisites for antigen presentation. Unlike several other microbial stimuli, C. parvum exposure rather led to increased oxidative consumption rates (OCRs) than extracellular acidification rates (ECARs) in DCs, indicating that different metabolic pathways were used to provide energy for DC activation. Taken together, C. parvum-exposed human DCs showed all hallmarks of successful maturation, enabling them to mount an effective adaptive immune response.
Insights
Cryptosporidiosis, a neglected disease, requires a strong immune response. Human dendritic cells (DCs) exposed to Cryptosporidium parvum showed successful maturation, indicating their potential to activate adaptive immunity against this parasite.
Area of Science:
- Immunology
- Infectious Diseases
- Cell Biology
Background:
- Cryptosporidiosis is a severe diarrheal disease caused by Cryptosporidium parvum, a neglected tropical disease.
- It disproportionately affects young children and HIV patients, highlighting the need for a robust adaptive immune response.
- The adaptive immune response against C. parvum is not well understood, particularly the role of dendritic cells (DCs).
Purpose of the Study:
- To investigate the early events of the adaptive immune response to Cryptosporidium parvum.
- To determine how human dendritic cells (DCs) respond to C. parvum exposure in vitro.
- To assess the maturation and activation status of DCs upon interaction with C. parvum.
Main Methods:
- Primary human dendritic cells (DCs) were generated from monocytes of healthy donors.
- DCs were exposed to Cryptosporidium parvum oocysts and sporozoites in vitro.
- DC maturation markers, cytokine production, metabolic activity (OCR/ECAR), and antigen-presenting capabilities were analyzed.
Main Results:
- C. parvum exposure significantly induced pro-inflammatory cytokines (IL-6, IL-8) in DCs.
- Upregulation of antigen-presenting (HLA-DR, CD1a), maturation (CD83), costimulatory (CD40, CD86), and adhesion molecules (CD11b, CD58) was observed.
- DCs exhibited enhanced adherence, mobility, and phagocytosis, with altered metabolic profiles (increased OCR).
Conclusions:
- Human dendritic cells exposed to C. parvum demonstrate hallmarks of successful maturation.
- These mature DCs are poised to effectively activate naïve T cells, initiating an adaptive immune response.
- The findings provide crucial insights into the early immune mechanisms against Cryptosporidium parvum infection.
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