Xianglian Huazhuo Prescription Ameliorates Chronic Atrophic Gastritis via Regulating Lysosomal Iron Metabolism
10.13422/j.cnki.syfjx.20261039
- VernacularTitle:香连化浊方调控溶酶体铁代谢改善慢性萎缩性胃炎的机制
- Author:
Jiayuan XU
1
;
Yican LIN
1
;
Rui WANG
1
;
Pengli DU
1
;
Ziqi JIN
1
;
Yanru CAI
1
;
Yuxi GUO
2
;
Qian YANG
2
Author Information
1. Hebei University of Chinese Medicine, Shijiazhuang 050200, China
2. The First Affiliated Hospital of Hebei University of Chinese Medicine, Shijiazhuang 050011, China
- Publication Type:Journal Article
- Keywords:
Xianglian Huazhuo prescription;
chronic atrophic gastritis;
lysosomal iron metabolism
- From:
Chinese Journal of Experimental Traditional Medical Formulae
2026;32(21):65-75
- CountryChina
- Language:Chinese
-
Abstract:
ObjectiveTo explore the mechanism of Xianglian Huazhuo prescription (XLHZ) in ameliorating chronic atrophic gastritis (CAG) by regulating lysosomal iron metabolism. MethodsIn the animal experiments, a mouse model of CAG was established through a combined modeling approach, including free drinking of N-methyl-N′-nitro-N-nitrosoguanidine (MNNG, 100 mg·L-1), gavage of ranitidine (8 g·L-1), and irregular feeding. Mice were randomly assigned into the normal, model, Morodan (2.0 g·kg-1), and high-, medium-, and low-dose (7.2, 3.8, 1.9 g·kg-1, respectively) XLHZ groups. In the cell experiments, GES-1 cells were treated with MNNG to construct a cell model of CAG, and cells were allocated into the GES-1, GES-1+MNNG (Model), and Model+XLHZ groups. The general physical conditions of mice in each group were observed. Hematoxylin-eosin (HE) staining was used to detect the pathological morphology of the gastric mucosa. Transmission electron microscopy was employed to observe the ultrastructure of gastric mucosal cells. Enzyme-linked immunosorbent assay (ELISA) was adopted to measure the serum levels of interleukin-6 (IL-6), interleukin-1β (IL-1β), and interleukin-10 (IL-10) in the serum. Western blot was used to determine the protein levels of lysosome-associated membrane protein 1 (LAMP1), nuclear receptor coactivator 4 (NCOA4), ferritin heavy chain 1 (FTH1), six-transmembrane epithelial antigen of prostate 3 (Steap3), and transient receptor potential mucolipin 1 (TRPML1) in the gastric tissue. Immunohistochemistry was employed to detect the positive expression of glutathione peroxidase 4 (GPX4) and 8-hydroxy-2′-deoxyguanosine (8-OHdG) in the gastric tissue. Fluorescent probe method was used to detect the levels of Fe²⁺ and reactive oxygen species (ROS). Immunofluorescence assay was applied to observe the co-localization of FTH1 and LAMP1. ResultsThe animal experiments showed that compared with the normal group, the model group exhibited poor mental status and hair condition, accompanied by decreased locomotor activity, food and water intake, and even reduced body weight. HE staining results showed that the gastric mucosal epithelium of model mice presented poor continuity, significantly decreased mucosal thickness, irregular gastric fovea morphology with widened spacing, dilated glandular cavities, reduced and disarranged glands with obvious atrophy, and extensive inflammatory cell infiltration. Transmission electron microscopy revealed that the mitochondria were markedly shrunken with condensed and deeply stained matrix, drastically reduced and irregularly arranged cristae, and even vacuolization, and the outer mitochondrial membrane shrank and ruptured. In addition, the model group showed elevated serum levels of IL-6 and IL-1β (P<0.01), declined serum level of IL-10 (P<0.01), upregulated protein levels of LAMP1, NCOA4, Steap3, and TRPML1 (P<0.01), downregulated protein level of FTH1 (P<0.01) in the gastric tissue, reduced positive expression of GPX4 (P<0.01), and increased positive expression of 8-OHdG (P<0.01). Compared with the model group, all the treatment groups showed improved mental state and hair appearance, increased locomotor activity, food and water intake, as well as gradual body weight gain in mice. HE staining demonstrated that the gastric mucosal epithelium of mice in each treatment group was continuous and intact, with normalized gastric fovea morphology, narrowed glandular cavities, increased and neatly arranged glands, and alleviated inflammatory cell infiltration. Transmission electron microscopy results showed that the mitochondria in mice from each treatment group possessed intact structures with recovered normal volume, increased and regularly arranged cristae, and homogeneous density of the mitochondrial membrane. The mice treated with high and medium doses of XLHZ exhibited declined serum levels of IL-6 and IL-1β (P<0.01) and elevated serum level of IL-10 (P<0.01). Low-dose XLHZ reduced serum IL-1β level in mice (P<0.05). The expression levels of LAMP1, NCOA4, Steap3 and TRPML1 protein in gastric tissue of mice in XLHZ high- and medium-dose groups were decreased (P<0.05, P<0.01), and the expression level of FTH1 protein was increased (P<0.05, P<0.01). The positive expression of GPX4 in the gastric tissue was increased in the high- and medium-dose XLHZ groups (P<0.05, P<0.01), and that of 8-OHdG was decreased in all treatment groups (P<0.01). The cell experiments showed that compared with the GES-1 group, the fluorescence intensities of Fe²⁺ and ROS, as well as the co-localization of FTH1 and LAMP1, were significantly increased in the GES-1 + MNNG group (P<0.01). Compared with the GES-1 + MNNG group, the fluorescence intensities of Fe²⁺ and ROS were markedly decreased in the Model + XLHZ group (P<0.01), while the co-localization of FTH1 and LAMP1 was reduced (P<0.05). ConclusionXLHZ can effectively regulate lysosomal iron metabolism and ameliorate gastric mucosal and cellular injury induced by CAG.