1Department of Pharmacy, Faculty of Pharmacy, Institut Ilmu Kesehatan Bhakti Wiyata, 64114, Kediri, East Java, Indonesia
2Department of D3 Medical Laboratory Technology, Faculty of Tecnology and Health Management, Institut Ilmu Kesehatan Bhakti Wiyata, 64114, Kediri, East Java, Indonesia
3Department of D4 Medical Laboratory Technology, Faculty of Tecnology and Health Management, Institut Ilmu Kesehatan Bhakti Wiyata, 64114, Kediri, East Java, Indonesia
4Departement of Dentistry, Faculty Dental, Institut Ilmu Kesehatan Bhakti Wiyata, 64114, Kediri, East Java, Indonesia
5Department of Biology, Faculty of Mathematics and Natural Sciences, Brawijaya University, 65145, Malang, East Java, Indonesia
6Department of Nutrition, Sekolah Tinggi Ilmu Kesehatan Hang Tuah Surabaya, 60244, Surabaya, East Java, Indonesia
*Corresponding Author E-mail: mm.riyaniarti@iik.ac.id
Online Published on 01 February, 2024.
Interleukin-21(IL-21) and interleukin-22(IL-22) expressions in the substantial intestine increase when inflammation occurs. They can also induce the production of pro-inflammatory cytokines and Matrix Metallo Proteinases (MMP) in subepithelial fibroblasts. To evaluate at IL-21 and IL-22 expressions in BALB/c mice after administering red M. oleifera leaf fermented extracts exposed to Salmonella typhi. The expression of IL-21 and IL-22 were evaluated for immunomodulatory effect was analyzed by flowcytometer. Data were analyzed by one-way ANOVA and continued with the Tukey test (p<0.05). The results showed that the fermented extract of red M. oleifera leaves could act as an immunosuppressor characterized by decreased levels of IL-21 and IL-22 both on CD4 T and CD8 T cells in mice injected with Salmonella typhi ranging from 14 mg/Kg BW to 42 mg/Kg BW and Pyrex analysis explains that the cathecin compound has the same active side as 8MR in forming bonds with MMP-9. The results of this study provide is the fermented extract of red M. oleifera leaves decreasing the expression of CD4+IL21+, CD8+IL21+ and CD4+IL22+, CD8+IL22+ through inhibition of MMP-9
IL-21, IL-22, Fermentation, M. oleifera, Salmonella typhi, Lactobacillus plantarum