Repository of Research and Investigative Information

Repository of Research and Investigative Information

Shahid Sadoughi University of Medical Sciences

<i>In vivo</i> study of anticancer activity of ginsenoside Rh2-containing arginine-reduced graphene in a mouse model of breast cancer

(2022) <i>In vivo</i> study of anticancer activity of ginsenoside Rh2-containing arginine-reduced graphene in a mouse model of breast cancer. Iranian Journal of Basic Medical Sciences. pp. 1442-1451. ISSN 2008-3866

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Abstract

Objective(s): This study aims to evaluate the in vivo anticancer activity of arginine-reduced graphene (Gr-Arg) and ginsenoside Rh2-containing arginine-reduced graphene (Gr-Arg-Rh2). Materials and Methods: Thirty-two mice with breast cancer were divided into four groups and treated every three days for 32 days: Group 1, PBS, Group 2, Rh2, Group 3, Gr-Arg, and Group 4, Gr-ArgRh2. The tumor size and weight, gene expression (IL10, INF-alpha, TGF beta, and FOXP3), and pathological properties of the tumor and normal tissues were assessed. Results: Results showed a significant decrease in TGF beta expression for all drug treatment groups compared with the controls (P=0.04). There was no significant difference among the groups regarding IL10 and FOXP3 gene expression profiles (P>0.05). Gr-Arg-Rh2 significantly inhibited tumor growth (size and weight) compared with Rh2 and control groups. The highest survival rate and the highest percentage of tumor necrosis (87.5) belonged to the Gr-Arg-Rh2 group. Lungs showed metastasis in the control group. No metastasis was observed in the Gr-Arg-Rh2 group. Gr-Arg-Rh2 showed partial degeneration of hepatocytes and acute cell infiltration in the portal spaces and around the central vein. The Gr-Arg group experienced a moderate infiltration of acute cells into the port spaces and around the central vein. The Rh2 group also showed a mild infiltration of acute and chronic cells in portal spaces. Conclusion: Based on the results, Gr-Arg-Rh2 can reduce tumor size, weight, and growth, TGF-beta gene expression, and increase tumor necrosis and survival time in mice with cancer.

Item Type: Article
Keywords: Arginine Breast Cancer Genes Ginsenoside Rh2 Graphene Tumor medicinal-plants tumor-cells oxide doxorubicin growth vitro rh2 nanoparticle expression apoptosis Research & Experimental Medicine Pharmacology & Pharmacy
Page Range: pp. 1442-1451
Journal or Publication Title: Iranian Journal of Basic Medical Sciences
Journal Index: WoS
Volume: 25
Number: 12
Identification Number: https://doi.org/10.22038/ijbms.2022.66065.14524
ISSN: 2008-3866
Depositing User: Mr mahdi sharifi
URI: http://eprints.ssu.ac.ir/id/eprint/29623

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