Related Experiment Video
Updated: Jan 16, 2026

Evaluation of Host-Pathogen Responses and Vaccine Efficacy in Mice
Published on: February 22, 2019
Immunological insights and vaccine advances against apicomplexan parasites: Emerging concepts and innovations
1Department of Biology, College of Science, University of Hafr Al Batin, Hafr Al Batin, Saudi Arabia.
Abstract:
The apicomplexan parasites are globally considered as the major cause of numerous infectious diseases in humans and animals. Apicomplexan parasites include Plasmodium, Toxoplasma gondii, Cryptosporidium, Eimeria and Babesia. The rise in the drug resistance have made the traditional control measures, such as chemotherapy and vector management, inadequate against them. These are the intracellular infectious agent and possess complex life cycles, antigenic variability, and immune evasion abilities. These different abilities hinder the development of vaccines against them. Hence, there is urgent need for development of effective vaccines by novel measures. However, notable progress has been made in past years due to the advancements in immunology, molecular biology, and biotechnology. Different types of vaccines including subunit vaccines have been developed and have demonstrated favorable efficiency. In the meantime, live-attenuated vaccines (LAV) continue to provide protection in animals. Apart from that, there are different innovations like CRISPR/Cas9 gene editing that have enabled the creation of genetically attenuated strains for T. gondii and Eimeria. These attenuated strains are used for the development of vaccines. Furthermore, mRNA vaccine technology, which was successfully utilized during the COVID-19 pandemic, is now being used against parasitic infections. It is now offering fast and rapid development along with vigorous cellular immunity. The use of nanoparticles and novel adjuvants such as TLR agonists and saponins has improved the stability and effectiveness of vaccines. Approaches like mucosal delivery, especially for enteric parasites such as Cryptosporidium and Eimeria, is achieving attention for their ability to provide the localized protection. In spite of these advancements some challenges still persist. Antigenic diversity, short-lived immunity, regulatory barriers, and limited funding need to be addressed. Some of the emerging technologies including systems vaccinology, reverse vaccinology, and vectored delivery platforms, are paving the way for more targeted and effective vaccination. There is need for concerted effort incorporating multidisciplinary research, One Health integration, and scalable manufacturing methodologies for effective translation of these scientific innovations into solutions. By harnessing these emerging technologies within a One Health framework, the next generation of vaccines has the potential to transform the management of apicomplexan diseases worldwide.
More Related Videos
10:39Intranasal Administration of Recombinant Influenza Vaccines in Chimeric Mouse Models to Study Mucosal Immunity
Published on: June 25, 2015
11:07Whole-animal Imaging and Flow Cytometric Techniques for Analysis of Antigen-specific CD8+ T Cell Responses after Nanoparticle Vaccination
Published on: April 29, 2015
Related Concept Videos
Microorganisms in Medicine and Therapeutics
Development of Immunocompetence
The initial cells that migrate from the fetal thymus settle within the skin and epithelial tissues lining the mouth, digestive tract, and in females, the uterus and vagina. These cells, including skin-based dendritic cells, serve as antigen-presenting cells, playing a key role in T cell activation.
Subsequent T...
Vaccinations
Special Features of Adaptive Immunity
The primary cell types involved in adaptive immunity are T cells and B cells. Each type has a unique role in defending the body against pathogens. T cells are responsible for cell-mediated immunity. They identify and eliminate infected cells directly,...
Cancer Vaccines
Cancer vaccines come in two categories: preventive (prophylactic) and treatment (active). Preventive vaccines, such as the Human Papillomavirus (HPV) vaccine, protect against viruses that cause certain...
Immune Response Against Viral Pathogens
NK Cells
NK cells are a crucial part of our innate immune system, acting as the first line of defense against viral infections. These cells can recognize and kill infected cells without prior exposure to the virus, effectively slowing down the spread of infection. Additionally, NK cells produce proinflammatory...