Publication Details
DICKSON KOFI WIREDU OCANSEY
- NUGS-Zhenjiang
- Clinical Laboratory Diagnostics (Phd)
- Jiangsu University
Evaluation of urinalysis parameters and antimicrobial susceptibility of uropathogens among out-patients at University of Cape Coast Hospital 28 Jul 2020
Ghana Medical Journal
Characterization of Salmonella and other Gram Negative Bacterial Pathogens obtained from Stool and Blood, a Cross-Sectional Study at Cape Coast Teachi 28 Jul 2020
ACTA SCIENTIFIC MICROBIOLOGY (ISSN: 2581-3226)
Human umbilical cord mesenchymal stem cells alleviate inflammatory bowel disease by inhibiting ERK phosphorylation in neutrophils 28 Jul 2020
Inflammopharmacology
HucMSC-exosomes carryingmiR-326 inhibit neddylation to relieve inflammatory bowel disease in mice 28 Jul 2020
Clinical and Translational Medicine
Therapeutic Advances of Stem Cell-Derived Extracellular Vesicles in Regenerative Medicine 28 Jul 2020
cells
The Achievements and Challenges of Mesenchymal Stem Cell-Based Therapy in Inflammatory Bowel Disease and Its Associated Colorectal Cancer 28 Jul 2020
Stem Cells International
Mesenchymal stem cell–gut microbiota interaction in the repair of inflammatory bowel disease: an enhanced therapeutic effect 28 Jul 2020
Clinical and Translational Medicine
Exosome-mediated effects and applications in inflammatory bowel disease 28 Jul 2020
Biological Reviews
Journal of Translational Medicine
28 Jul 2020 | 20:09
Background: Mesenchymal stromal cells (MSCs) have attracted intense interest due to their powerful intrinsic properties of self-regeneration, immunomodulation and multi-potency, as well as being readily available and easy to isolate and culture. Notwithstanding, MSC based therapy suffers reduced efficacy due to several challenges which include unfavorable microenvironmental factors in vitro and in vivo. Body: In the quest to circumvent these challenges, several modification techniques have been applied to the naïve MSC to improve its inherent therapeutic properties. These modification approaches can be broadly divided into two groups to include genetic modification and preconditioning modification (using drugs, growth factors and other molecules). This field has witnessed great progress and continues to gather interest and novelty. We review these innovative approaches in not only maintaining, but also enhancing the inherent biological activities and therapeutics of MSCs with respect to migration, homing to target site, adhesion, survival and reduced premature senescence. We discuss the application of the improved modified MSC in some selected human diseases. Possible ways of yet better enhancing the therapeutic outcome and overcoming challenges of MSC modification in the future are also elaborated. Conclusion: The importance of prosurvival and promigratory abilities of MSCs in their therapeutic applications can never be overemphasized. These abilities are maintained and even further enhanced via MSC modifications against the inhospitable microenvironment during culture and transplantation. This is a turning point in MSC-based therapy with promising preclinical studies and higher future prospect.