Rosmanol Triggers Apoptosis Against MNNG-induced Gastric Carcinogenesis in Rats through Attenuation of the P13K/AKT/HMBG1 Signaling Pathway

Author:

Niu Yan-Bang1,Velu Periyannan2,Khalid Awais3,Zyoud Samer H.3,Kazi Mohsin4,Li Yuzhu5

Affiliation:

1. General surgery,Baoji People's Hospital, Baoji, 721000, China

2. Galileovasan Offshore and Research and Development Pvt. Ltd., Nagapattinam, Tamil Nadu, India

3. Department of Mathematics and Sciences, Ajman University, P.O. Box 346, Ajman, United Arab Emirates

4. Department of Pharmaceutics, College of Pharmacy, PO BOX-2457, King Saud University, Riyadh-11451, Kingdom of Saudi Arabia

5. Department of General Surgery, The People’s Hospital of Zhaoyuan City, Yantai, 265400, China

Abstract

Background: Gastric cancer (GC) is a frequent malignant neoplasm found in China. Despite numerous therapeutic methodologies to ameliorate the well-being of GC patients, their efficiency remains inadequate. Objective: Rosmanol (RML) is a phenolic diterpene compound with antioxidant and anticancer activities. In the current research, the apoptotic efficacy of RML on methylnitronitrosoguanidine (MNNG)-induced GC model was determined. Materials and Methods: The rats were allocated into four sets, viz., normal control, MNNG (200 mg/kg bw) + NaCl, MNNG + RML (20 mg/kg), and RML (20 mg/kg) orally treated for 20 weeks. Results: The results exposed that GC rats revealed higher (P<0.05) levels of TBARS and reduced antioxidant status in the stomach and liver tissues counter to other groups. In contrast, the TBARS level was substantially alleviated (P<0.05) and restored the antioxidant status in RMLadministered rats. Histopathologic assessment of gastric tissue unveiled that an MNNG-induced group presented squamous cell carcinoma with keratin pearls. The administration of RML reduced GC incidence, and only mild dysplasia was observed. Further, RML alleviated Bcl-2, P13K, AKT, and HMGB1, as evidenced by RT-PCR and Western blot analysis. Conclusion: Furthermore, RML triggered caspase-mediated mitochondrial apoptosis through the inactivation of the PI3K/AKT/HMGB1 pathway, eventually leading to GC cell death. This highlights that RML may be a potential natural antioxidant employed as a chemoprotective agent in GC rats.

Publisher

Bentham Science Publishers Ltd.

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