Scientific studies have shown that coffee consumption may be beneficial in NAFLD through a direct effect on the liver as well as beneficial systemic metabolic effects. Experimental and human studies have also demonstrated that green coffee bean extracts (GCBEs) enhance energy metabolism and expenditure, decrease blood lipid levels, improve glucose tolerance, and support weight management (
26). GCBE contains chlorogenic acid (CGA) as the principal constituent, and most of the health benefits of decaffeinated coffee and its by-product have been attributed to chlorogenic acid (
26). The present study is the first randomized trial that investigated the effect of CGA-rich GCBE supplementation in patients with NAFLD. Briefly, the results of this parallel-arm trial indicate that daily supplementation with one gram GCBE for 8 weeks significantly and beneficially affected serum levels of ALT, TG, total cholesterol, FFAs, hs-CRP, TAC, FBS, and HOMA-IR index between the arms (
Table 3).
GCBE has been gaining popularity as a potential weight loss supplement (
27). Several plausible mechanisms through which GCBE and/or CGA may exert its effects on weight management have been suggested, such as improving lipolytic activity by modification of metabolic pathways (
28), and decrease in lipid absorption by inhibition of the pancreatic lipase (
29). In this study, although weight reduction in both groups compared to baseline state was significant, GCBE supplementation was not associated with a significantly greater weight loss compared to the placebo group. A reasonable explanation for the weight loss achieved in the two groups may be the decrease in energy intake and improvement in physical activity that occurred during the study. In contrast to our trial, a systematic review and meta-analysis of three out of five eligible human trials by Onakpoya et al. (
27) showed a significant mean difference in body weight in GCBE-treated groups compared to the placebo group (mean difference: -2.47 kg; 95% CI: -4.23, -0.72). However, the author declared that all included studies had poor methodological quality and there was a significant heterogeneity amongst them. These inconsistent results may also be explained by different dosages, GCBE types, and duration of the studies.
NAFLD is associated with alterations in normal metabolic pathways, which have adverse consequences on health, such as perturbation in lipid and glucose metabolism and insulin sensitivity (
30,
31). Hence, insulin sensitizers as well as lipid- and glucose-lowering agents have become important options for the management of NAFLD and its cardiovascular complications. Beneficial effects of GCBE and CGA on the improvement of insulin resistance (IR), lipid profile, and glucose metabolism have been shown in experimental and human studies (
32-
34).
IR is frequently found in NAFLD patients, and is associated with both steatosis emergence and disease progression to its more advanced forms (
35). In the present study, the mean values of HOMA-IR in both groups were greater than those of healthy adults (
36). Similar to our study that showed GCBE significantly reduced FBS and HOMA-IR index, Sarria et al. in a randomized, controlled, crossover trial on 52 healthy subjects, who consumed three servings/day of the green/roasted (35:65) coffee blend for eight weeks, showed that HOMA-IR and FBS significantly reduced (
21). Epidemiological and cross-sectional studies also showed an inverse association between coffee consumption and HOMA-IR. In addition to differences in dosages, coffee types, and duration of studies, an explanation for the trials’ findings (
37-
39) regarding no beneficial effect of coffee on HOMA-IR may be the differences in weight of the studied samples. This is because when the results of Pham et al. (
40) study were stratified by BMI, an inverse association between coffee and HOMA-IR was observed only in the overweight/obese subjects but not in the normal weight ones; thus, it is possible that in this study, the observed effect was strengthened as a result of overweight/obesity in all participants.
NAFLD is a consequence of elevated plasma FFAs resulting in steatosis and dyslipidemia (
20). Plasma FFAs levels are usually elevated in obesity states due to: a) more FFAs release from enlarged adipose tissue, b) possible reduction of FFAs clearance, and c) inhibition of the anti-lipolytic action of insulin by FFAs. The liver is the main organ in which, FFAs are oxidized or esterified into TG (
20). FFAs elevation is responsible for NASH, IR, decrease in skeletal muscle glucose uptake, and increased hepatic gluconeogenesis (
20). Therefore, reducing plasma FFAs and promoting FFAs uptake and oxidation in the liver may be an interesting strategy in the management of NAFLD.
Another finding of this study is the antilipidemic effect of GCBE. Our results showed that GCBE supplementation significantly reduced serum levels of FFAs, TG, and TC; however, LDL-C, HDL-C, and LDL-C/HDL-C ratio did not change significantly. The results of human trials investigating the effects of coffee on serum lipid levels are conflicting. McAnlis et al. (
41) reported coffee did not affect serum lipid levels, whereas Yukawa et al. (
32) found that consumption of 24 g coffee per day, for one week, significantly reduced serum levels of TC and LDL-C. Some of our results also are consistent with the findings of some previous experimental studies. Sudeep et al. showed that CGA supplementation significantly reduced plasma and hepatic levels of TG and FFAs in hyperlipidemic obese Wistar rats (
20). Further molecular analysis by authors also confirmed that CGA promotes FFA catabolism by modulating the regulatory enzymes of FFA catabolism in the liver. These molecular modulation effects of CGA have also been shown to regulate glucose and lipid metabolism in HepG2 human hepatoma cell line (
34). Moreover, Rodriguez de Sotillo and Hadley reported that intravenous infusion of CGA significantly reduced TG and TC in the blood and liver of Zucker rats (
33).
The progression from simple steatosis to more advanced forms of NAFLD is also affected by inflammation and oxidative stress (
42). Several studies have shown that NAFLD patients have significantly higher serum levels of markers of oxidative stress and inflammation (
43,
44). Thus, reducing oxidative stress and inflammation in NAFLD patients would be an important strategy to slow down NAFLD progression and decrease the risk of cardiovascular complications.
Our results showed that supplementation with 1g GCBE for 8 weeks significantly decreased the hs-CRP concentration and increased the level of TAC; however, the level of TNF-α was not significantly affected. Hs-CRP is synthesized predominantly in the liver and its serum levels may be more closely linked to the extent of hepatic inflammation (
45). In a high-fat-diet (HFD)-induced NASH model in male Wistar rats, Vitaglione et al. showed that coffee in drinking water significantly improved levels of glutathione and malondialdehyde (
46).
Finally, in this study, a significant improvement in ALT was also observed in the GCBE group. However, the degree of steatosis did not significantly change in either group. Given the overall positive outcome achieved by GCBE supplementation, a significant reduction in ALT is justifiable. Because, as mentioned above, an improvement in inflammation, oxidative stresses status, IR, and hyperlipidemia have been associated with a significant improvement in liver function.
The ultrasonography method used for detecting the degree of steatosis could not reveal changes as precisely as detected by more accurate methods such as Fibroscan. In addition to using this subjective and insensitive method, low sample size and short duration of the study can be considered as the main limitation of this study.
In summary, the results of this trial show that GCBE supplementation in patients with NAFLD has a beneficial effect on liver enzymes, insulin resistance, as well as glucose and lipid metabolism. These beneficial effects may be due to the possible ability of GCBE to improve insulin sensitivity and its anti-inflammatory and antioxidant properties. Therefore, GCBE supplementation in NAFLD patients provided some interesting outcomes that need to be investigated in future studies.