Rats’ umbilical-cord mesenchymal stem cells ameliorate mast cells and Hsp70 on ovalbumin-induced allergic rhinitis rats
Ichwan M., Farhat F., Ilyas S., Sembiring R.J., Munir D., Madiadipoera T., Putra A., Restimulia L., Amalina N.D.
Abstract
Aim Allergic rhinitis (AR) is a heterogeneous condition that has been associated with inflammatory responses and is characterized by clinical typical symptoms of nasal itching, sneezing, watery discharge and congestion. Mesenchymal stem cells (MSCs) are multipotent stem cells that have the immunoregulatory ability by secreting various cytokines which potent as a promising therapeutic modality for allergic airway diseases, including AR. The aim of this study was to investigate the effect of rat UC-MSCs on the number of mast cells, the expression of Hsp70 indicated by the nasal symptoms allergic, particularly nasal rubbing in ovalbumin-induced AR rats. Methods Fifteen male Wistar rats (6 to 8 weeks old) were ran-domly divided into three groups (control group, sham group, and OVA+MSCs group). OVA nasal challenge was conducted daily from day 15 to 21, and UC-MSCs (1x10<sup>6</sup>) were administrated in-traperitoneally to OVA-sensitized rats on day 21. Nasal rubbing was observed from day 22 to 28. The rats were sacrificed on day 22 and day 28. The nasal cavity tissues were prepared for histolo-gical observations. Results The administration of UC-MSCs could reduce the number of mast cells and the expression of Hsp70 leading to reduction of nasal symptoms allergic, particularly nasal rubbing. Conclusion Based on this finding, MSCs present a promising immediate curative effect to the inflammatory reaction in AR rats.
Kinetics of thermally induced heat shock protein 27 and 70 expression by bone marrow-derived mesenchymal stem cells
Barry F.P., Dowd E., Hoban D.B., Howard L., Moloney T.C.
Mesenchymal stem cells induce a weak immune response in the rat striatum after allo or xenotransplantation
Anegon I., Anegon I., Anegon I., Boeffard F., Boeffard F., Boeffard F., Boyer C., Boyer C., Boyer C., Delecrin J., Dey N.D., Dey N.D., Dubayle D., Dugast A.-S., Dugast A.-S., Dugast A.-S., Dunbar G.L., Dunbar G.L., Heymann D., Lescaudron L., Lescaudron L., Lescaudron L., Naveilhan P., Naveilhan P., Naveilhan P., Remy S., Remy S., Rossignol J., Rossignol J., Rossignol J., Rossignol J., Rossignol J., Thinard R., Thinard R., Vanhove B., Vanhove B., Vanhove B.
MSCs-re-leased TGFβ1 generate CD4+CD25+Foxp3+ in T-reg cells of human SLE PBMC
Darlan DM, Jusuf NK., Munir D, Putra A, Darlan DM, Jusuf NK., Munir D, Putra A, Darlan DM, Jusuf NK., Munir D, Putra A, Darlan DM, Jusuf NK., Munir D, Putra A
No Title
Shin TH.
Adipose tissue-derived mesenchymal stem cell modulates the immune response of allergic rhinitis in a rat model
Ebrahim N., Farid A.S., Mandour Y.M.H., Mohamed A.Z., Nafie E., Refae A., Sabry D., Safwat M., Sorour S.M., Taha R.
The Supernatant of Tonsil-Derived Mesenchymal Stem Cell Has Antiallergic Effects in Allergic Rhinitis Mouse Model
Bae J.-S., Kim D.-K., Kim D.-K., Kim J.H., Mo J.-H., Park I.-S.
Mechanisms of immune suppression by interleukin-10 and transforming growth factor-β: The role of T regulatory cells
Akdis C.A., Akdis M., Blaser K., Taylor A., Verhagen J.
Regulation of the innate immune system by autophagy: monocytes, macrophages, dendritic cells and antigen presentation
Frangez Z., Germic N., Simon H.-U., Simon H.-U., Yousefi S.
An updated view on horseradish peroxidases: recombinant production and biotechnological applications
Glieder A., Krainer F.W.
Hypoxia mesenchymal stem cells accelerate wound closure improvement by controlling α-smooth muscle actin expression in the full-thickness animal model
Amalina N.D., Amalina N.D., Hamra N.F., Nasihun T., Putra A., Putra A., Tjipta A., Amalina N.D., Amalina N.D., Hamra N.F., Nasihun T., Putra A., Putra A., Tjipta A., Amalina N.D., Amalina N.D., Hamra N.F., Nasihun T., Putra A., Putra A., Tjipta A., Amalina N.D., Amalina N.D., Hamra N.F., Nasihun T., Putra A., Putra A., Tjipta A., Amalina N.D., Amalina N.D., Hamra N.F., Nasihun T., Putra A., Putra A., Tjipta A., Amalina N.D., Amalina N.D., Hamra N.F., Nasihun T., Putra A., Putra A., Tjipta A., Amalina N.D., Amalina N.D., Hamra N.F., Nasihun T., Putra A., Putra A., Tjipta A., Amalina N.D., Amalina N.D., Hamra N.F., Nasihun T., Putra A., Putra A., Tjipta A., Amalina N.D., Amalina N.D., Hamra N.F., Nasihun T., Putra A., Putra A., Tjipta A., Amalina N.D., Amalina N.D., Hamra N.F., Nasihun T., Putra A., Putra A., Tjipta A., Amalina N.D., Amalina N.D., Hamra N.F., Nasihun T., Putra A., Putra A., Tjipta A., Amalina N.D., Amalina N.D., Hamra N.F., Nasihun T., Putra A., Putra A., Tjipta A., Amalina N.D., Amalina N.D., Hamra N.F., Nasihun T., Putra A., Putra A., Tjipta A., Amalina N.D., Amalina N.D., Hamra N.F., Nasihun T., Putra A., Putra A., Tjipta A., Amalina N.D., Amalina N.D., Hamra N.F., Nasihun T., Putra A., Putra A., Tjipta A., Amalina N.D., Amalina N.D., Hamra N.F., Nasihun T., Putra A., Putra A., Tjipta A., Amalina N.D., Amalina N.D., Hamra N.F., Nasihun T., Putra A., Putra A., Tjipta A., Amalina N.D., Hamra N.F., Nasihun T., Putra A., Tjipta A.
Sumarawati T., Putra A., Trisnadi S., Amalina N.D., Setiawan E., Hermansyah D., Angelina J.
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