Figure 5 from Hepatoprotective effects of Lycium chinense Miller fruit and its constituent betaine in CCl4-induced hepatic damage in rats.

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Figure 5 from Hepatoprotective effects of Lycium chinense Miller fruit and  its constituent betaine in CCl4-induced hepatic damage in rats.
Fig. 5. Effects of LC and betaine on hepatic histology in CCl4-intoxicated rats. Livers were sectioned and stained with hematoxylin–eosin (H&E): (A) normal control, (B) LC control, (C) CCl4 + vehicle control, (D) CCl4 + 250 mg/kg LC extract, (E) CCl4 + 5000 mg/kg LC, (F) CCl4 + 1000 mg/kg LC, (G) CCl4 + 10 mg/kg betaine, and (H) CCl4 + 100 mg/kg betaine. Scale bars = 100 m. - "Hepatoprotective effects of Lycium chinense Miller fruit and its constituent betaine in CCl4-induced hepatic damage in rats."
Figure 5 from Hepatoprotective effects of Lycium chinense Miller fruit and  its constituent betaine in CCl4-induced hepatic damage in rats.
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Figure 5 from Hepatoprotective effects of Lycium chinense Miller fruit and  its constituent betaine in CCl4-induced hepatic damage in rats.
PDF) Hepatoprotective effect of fermented black radish (Raphanus sativus L. var niger) in CCl4 induced liver injury in rats
Figure 5 from Hepatoprotective effects of Lycium chinense Miller fruit and  its constituent betaine in CCl4-induced hepatic damage in rats.
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Figure 5 from Hepatoprotective effects of Lycium chinense Miller fruit and  its constituent betaine in CCl4-induced hepatic damage in rats.
Hepatoprotective effects of Lycium chinense Miller fruit and its constituent betaine in CCl4-induced hepatic damage in rats
Figure 5 from Hepatoprotective effects of Lycium chinense Miller fruit and  its constituent betaine in CCl4-induced hepatic damage in rats.
Quality Evaluation of Thirteen Geographical Populations of Lycium chinense Using Quantitative Analysis of Nutrients and Bioactive Components
Figure 5 from Hepatoprotective effects of Lycium chinense Miller fruit and  its constituent betaine in CCl4-induced hepatic damage in rats.
Regulatory effects of the fruit extract of Lycium chinense and its active compound, betaine, on muscle differentiation and mitochondrial biogenesis in C2C12 cells - ScienceDirect
Figure 5 from Hepatoprotective effects of Lycium chinense Miller fruit and  its constituent betaine in CCl4-induced hepatic damage in rats.
Betaine treatment protects liver through regulating mitochondrial function and counteracting oxidative stress in acute and chronic animal models of hepatic injury - ScienceDirect
Figure 5 from Hepatoprotective effects of Lycium chinense Miller fruit and  its constituent betaine in CCl4-induced hepatic damage in rats.
Regulatory effects of the fruit extract of Lycium chinense and its active compound, betaine, on muscle differentiation and mitochondrial biogenesis in C2C12 cells - ScienceDirect
Figure 5 from Hepatoprotective effects of Lycium chinense Miller fruit and  its constituent betaine in CCl4-induced hepatic damage in rats.
Antioxidant and proliferative activity of the fruit extract of Lycium chinense in regenerating liver after partial hepatectomy in rats
Figure 5 from Hepatoprotective effects of Lycium chinense Miller fruit and  its constituent betaine in CCl4-induced hepatic damage in rats.
Full article: Hepatoprotective effects of norgalanthamine on carbon tetrachloride induced-hepatotoxicity in mice
Figure 5 from Hepatoprotective effects of Lycium chinense Miller fruit and  its constituent betaine in CCl4-induced hepatic damage in rats.
Antioxidant and proliferative activity of the fruit extract of Lycium chinense in regenerating liver after partial hepatectomy in rats
Figure 5 from Hepatoprotective effects of Lycium chinense Miller fruit and  its constituent betaine in CCl4-induced hepatic damage in rats.
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