A Comprehensive Exploration of Therapeutic Strategies in Inflammatory Bowel Diseases: Insights from Human and Animal Studies.
Inês Esteves DiasIsabel Ribeiro DiasTeresa Franchi-MendesCarlos Antunes ViegasPedro Pires CarvalhoPublished in: Biomedicines (2024)
Inflammatory bowel disease (IBD) is a collective term for a group of chronic inflammatory enteropathies which are characterized by intestinal inflammation and persistent or frequent gastrointestinal signs. This disease affects more than 3.5 million humans worldwide and presents some similarities between animal species, in particular, dogs and cats. Although the underlying mechanism that triggers the disease is not yet well understood, the evidence suggests a multifactorial etiology implicating genetic causes, environmental factors, microbiota imbalance, and mucosa immune defects, both in humans and in dogs and cats. Conventional immunomodulatory drug therapies, such as glucocorticoids or immunosuppressants, are related with numerous adverse effects that limit its long-term use, creating the need to develop new therapeutic strategies. Mesenchymal stromal cells (MSCs) emerge as a promising alternative that attenuates intestinal inflammation by modulating inflammatory cytokines in inflamed tissues, and also due to their pro-angiogenic, anti-apoptotic, anti-fibrotic, regenerative, anti-tumor, and anti-microbial potential. However, this therapeutic approach may have important limitations regarding the lack of studies, namely in veterinary medicine, lack of standardized protocols, and high economic cost. This review summarizes the main differences and similarities between human, canine, and feline IBD, as well as the potential treatment and future prospects of MSCs.
Keyphrases
- mesenchymal stem cells
- endothelial cells
- oxidative stress
- stem cells
- induced pluripotent stem cells
- current status
- pluripotent stem cells
- bone marrow
- ulcerative colitis
- systemic sclerosis
- microbial community
- anti inflammatory
- signaling pathway
- preterm infants
- emergency department
- cell therapy
- dna methylation
- idiopathic pulmonary fibrosis
- drug induced