Cholangiocarcinoma (CCA) is one of the most difficult malignancies to treat as the therapeutic options are limited. Although several driver genes have been identified, most remain unknown. In this study, we identified a failed axon connection homolog (FAXC), whose function is unknown in mammals, by analyzing serially passaged CCA xenograft models. Knockdown of FAXC reduced subcutaneous tumorigenicity in mice. FAXC was bound to annexin A2 (ANXA2) and c-SRC, which are tumor-promoting genes. The FAXC/ANXA2/c-SRC complex forms in the mitochondria. FAXC enhances SRC-dependent ANXA2 phosphorylation at tyrosine-24, and the C-terminal amino acid residues (351-375) of FAXC are required for ANXA2 phosphorylation. Transcriptome data from a xenografted CCA cell line revealed that FAXC correlated with epithelial-mesenchymal transition, hypoxia, and KRAS signaling genes. Collectively, these findings advance our understanding of CCA tumorigenesis and provide candidate therapeutic targets.
BACKGROUND AND AIM:We previously identified that ever-smoking and severe gastric atrophy in pepsinogen are risk factors for synchronous gastric cancers (SGCs). This study aimed to determine the association of alcohol drinking status or alcohol-related genetic polymorphism with SGCs and also stratify their risk. METHODS:This multi-center prospective cohort study included patients who underwent endoscopic submucosal dissection for the initial early gastric cancers at 22 institutions in Japan. We evaluated the association of alcohol drinking status or alcohol dehydrogenase 1B (ADH1B) and acetaldehyde dehydrogenase 2 (ALDH2) genotypes with SGCs. We then stratified the risk of SGCs by combining prespecified two factors and risk factors identified in this study. RESULTS:Among 802 patients, 130 had SGCs. Both the ADH1B Arg and ALDH2 Lys alleles demonstrated a significant association with SGCs on multivariate analysis (odds ratio, 1.77), although alcohol drinking status showed no association. The rates of SGCs in 0-3 risk factors in the combined evaluation of three risk factors (ever-smoking, severe gastric atrophy in pepsinogen, and both the ADH1B Arg and ALDH2 Lys alleles) were 7.6%, 15.0%, 22.0%, and 32.1%, respectively. The risk significantly increased from 0 to 3 risk factors on multivariate analysis (P for trend <0.001). CONCLUSIONS:Both the ADH1B Arg and ALDH2 Lys alleles were at high risk for SGCs. The risk stratification by these three factors may be a less invasive and promising tool for predicting their risk.
Cholangiocarcinoma is a fatal disease with limited therapeutic options. We screened genes required for cholangiocarcinoma tumorigenicity and identified FADS2, a delta-6 desaturase. FADS2 depletion reduced in vivo tumorigenicity and cell proliferation. In clinical samples, FADS2 was expressed in cancer cells but not in stromal cells. FADS2 inhibition also reduced the migration and sphere-forming ability of cells and increased apoptotic cell death and ferroptosis markers. Lipidome assay revealed that triglyceride and cholesterol ester levels were decreased in FADS2-knockdown cells. The oxygen consumption ratio was also decreased in FADS2-depleted cells. These data indicate that FADS2 depletion causes a reduction in lipid levels, resulting in decrease of energy production and attenuation of cancer cell malignancy.
Summary Although esophageal cancers invading the muscularis mucosa (pT1a-MM) or submucosa (pT1b-SM) after endoscopic resection (ER) are associated with a risk of lymph node metastasis, details of metastatic recurrence after additional treatment remain unknown. We aimed to identify the risk factors for metastatic recurrence and recurrence patterns in patients receiving additional treatment after ER for esophageal cancer. Between 2006 and 2017, patients with pT1a-MM/pT1b-SM esophageal cancer who underwent ER with additional treatment (esophagectomy, chemoradiotherapy [CRT], and radiation therapy) at 21 institutions in Japan were enrolled. We evaluated the risk factors for metastatic recurrence after ER with additional treatment. Subsequently, the rate and pattern (locoregional or distant) of metastatic recurrence were investigated for each additional treatment. Of the 220 patients who received additional treatment, 57, 125, and 38 underwent esophagectomy, CRT, and radiation therapy, respectively. In the multivariate analysis, lymphatic invasion was the sole risk factor for metastatic recurrence after additional treatment (hazard ratio, 3.50; P = 0.029). Although the risk of metastatic recurrence with additional esophagectomy was similar to that with CRT (hazard ratio, 1.01; P = 0.986), the rate of locoregional recurrence tended to be higher with additional esophagectomy (80.0% (4/5) vs. 36.4% (4/11)), leading to a better prognosis in patients with metastatic recurrence after additional esophagectomy than CRT (survival rate, 80.0% (4/5) vs. 9.1% (1/11)). Patients with lymphatic invasion have a high risk of metastatic recurrence after ER with additional treatment for pT1a-MM/pT1b-SM esophageal cancer. Additional esophagectomy may result in a better prognosis after metastatic recurrence.
Introduction:Detecting non-cavitary epithelioid cell granuloma by gastrointestinal biopsy is important in the initial diagnosis of Crohn's disease (CD). In the present study, we aimed to determine the rate of granuloma detection by gastrointestinal biopsy according to the number of biopsies performed.Methods:The present study included patients newly diagnosed with CD at our hospital between April 2017 and March 2023. During endoscopic examinations, biopsy specimens were taken from affected lesions. Initially, one section per biopsy was examined to detect granuloma. In cases where no granulomas were detected, step sections were additionally prepared and examined. The rate of granuloma detection by gastrointestinal biopsy was retrospectively examined.Results:A total of 30 patients with a new diagnosis of CD were included in this study. In total, 284 gastrointestinal biopsies were performed in 29 cases. The rate of granuloma detection by gastrointestinal biopsy per case was 58.6% (17 out of 29 cases). The rate of granuloma detection by gastrointestinal biopsy per biopsy was 6.0% (17 out of 284 biopsies) on initial histological examination and 11.6% (33 out of 284 biopsies) following examination of step sections. The rate of granuloma detection was significantly improved by performing histological examination of step sections compared with initial examinations (p < 0.05).Conclusion:The rate of granuloma detection per biopsy was 11.6%, even after histological examination of step sections. These results indicate that performing multiple intestinal biopsies and assessing for the presence of granuloma using multiple section examinations are required in the initial diagnosis of CD.
BackgroundNo studies have evaluated the relationship between lifestyle and synchronous gastric cancers (SGCs) in patients with endoscopic submucosal dissection (ESD) for early gastric cancers (EGCs). Using data from the Tohoku gastrointestinal (GI) study, we aimed to identify factors associated with SGCs.MethodsTohoku GI study is a multicenter prospective cohort study investigating the relationship between lifestyle and metachronous gastric cancers. Patients who had a schedule to undergo ESD for primary EGCs were enrolled. We used logistic regression analysis to examine the relationship of 15 candidate factors, including lifestyle, with the prevalence of SGCs in this study.ResultsOf 850 patients between 2016 and 2019, 16.0% (136 patients) had SGCs. In multivariate analysis, smoking history (odds ratio [OR], 1.93; p = 0.048) and severe atrophic gastritis assessed by pepsinogen (OR, 1.92; p = 0.004) were risk factors for the prevalence of SGCs. Regarding smoking, current smoking (OR, 2.33; p = 0.021), but not former smoking (OR, 1.76; p = 0.098), was a significant risk factor for its prevalence. In the stratified analysis, severe atrophic gastritis assessed by pepsinogen was a risk factor in patients without Helicobacter pylori (H. pylori) eradication (OR, 2.10; p = 0.002), but not a risk factor in those with H. pylori eradication (OR, 0.75; p = 0.737).ConclusionSmoking history was a risk factor for the prevalence of SGCs in patients with ESD for EGCs, and severe atrophic gastritis assessed by pepsinogen was also a risk factor when H. pylori was not eradicated.
The guidelines recommend additional gastrectomy after noncurative endoscopic resection for early gastric cancers (EGCs). However, no additional treatment might be acceptable in some patients aged ≥ 85 years. We aimed to identify this patient group using the data in a highly aged area. We enrolled patients aged ≥ 85 years after noncurative endoscopic resection for EGCs at 30 institutions of the Tohoku district in Japan between 2002 and 2017. Treatment selection and prognosis after noncurative endoscopic resection were investigated. Fourteen candidates were evaluated using the Cox model to identify risk factors for poor overall survival (OS) in patients with no additional treatment. Of 1065 patients aged ≥ 85 years, 143 underwent noncurative endoscopic resection. Despite the guidelines’ recommendation, 88.8% of them underwent no additional treatment. The 5-year OS rates in those with additional gastrectomy and those with no additional treatment were 63.1 and 65.2%, respectively. Multivariate analysis showed independent risk factors for poor OS in patients with no additional treatment were the high-risk category in the eCura system (hazard ratio [HR], 2.91), Charlson comorbidity index (CCI) ≥ 3 (HR, 2.78), and male (HR, 2.04). In patients with no additional treatment, nongastric cancer-specific survival was low (69.0% in 5 years), whereas disease-specific survival rates were very high in the low- and intermediate-risk categories of the eCura system (100.0 and 97.1%, respectively, in 5 years). No additional treatment may be acceptable in the low- and intermediate-risk categories of the eCura system in patients aged ≥ 85 years with noncurative endoscopic resection for EGCs.
Gastric cancer is the fifth most common malignancy worldwide. However, targeted therapy for advanced gastric cancer is still limited. Here, we report BEX2 (Brain expressed X-linked 2) as a poor prognostic factor in two gastric cancer cohorts. BEX2 expression was increased in spheroid cells, and its knockdown decreased aldefluor activity and cisplatin resistance. BEX2 was found to upregulate CHRNB2 (Cholinergic Receptor Nicotinic Beta 2 Subunit) expression, a cancer stemness-related gene, in a transcriptional manner, and the knockdown of which also decreases aldefluor activity. Collectively, these data are suggestive of the role of BEX2 in the malignant process of gastric cancer, and as a promising therapeutic target.
Department of Endoscopy, Fukushima Medical University Hospital, Japan; Department of Gastroenterology, Fukushima Medical University, Japan; Division of Gastroenterology, Tohoku University Graduate School of Medicine, Japan; Division of Gastroenterology, Department of Internal Medicine, School of Medicine, Iwate Medical University, Japan; Department of Gastroenterology, Sendai City Medical Center, Japan; Department of Minimally Invasive Surgical and Medical Oncology, Fukushima Medical University, Fukushima, Japan; Department of Gastroenterology, Ohara General Hospital, Japan; Division of Gastroenterology Tohoku Medical and Pharmaceutical University, Japan; Department of Gastroenterology, Iwate Prefectural Isawa Hospital, Japan; Department of Gastroenterology, Osaki Citizen Hospital, Japan; Department of Gastroenterology and Neurology, Akita University Graduate School of Medicine, Japan; Department of Gastroenterology, Yokote Municipal Hospital, Japan; Department of Gastroenterology, Miyagi Cancer Center, Japan; Division of Endoscopy, Aomori Prefectural Central Hospital, Japan; Department of Gastroenterology, Iwate Prefectural Central Hospital, Japan; Department of Gastroenterology, Faculty of Medicine, Yamagata University, Japan; Division of Gastroenterology, Noshiro Kosei Medical Center, Japan; Department of Gastroenterology, Akita City Hospital, Japan; Digestive Disease Center, Akita Red Cross Hospital, Japan; Division of Gastroenterology, Aomori city hospital, Japan; Department of Gastroenterology, Hiraka General Hospital, Japan; Department of Gastroenterology, National Hospital Organization Sendai Medical Center, Japan; Department of Gastroenterology, Iwate Prefectural Ninohe Hospital, Japan; Division of Gastroenterology, Tohoku Rosai Hospital, Japan; Department of gastroenterology, Japanese Red Cross Morioka Hospital, Japan; Department of gastroenterology, Hachinohe Red Cross Hospital, Japan; Department of Gastroenterology, Iwate Prefectural Kuji Hospital, Japan; Department of Gastroenterology and Hematology, Hirosaki University Graduate School of Medicine, Japan; Department of Gastroenterology, Omagari Kosei Medical Center, Japan; Department of Internal Medicine and Gastroenterology, Iwate Prefectural Ofunato Hospital, Japan; Department of Gastroenterology, Iwate Prefectural Miyako Hospital, Japan; Department of Gastroenterology, Southern-Tohoku General Hospital, Japan.
Shinya Suto: NO financial relationship with a commercial interest | Tetsuya Tatsuta: NO financial relationship with a commercial interest | Tomohiro Shimada: NO financial relationship with a commercial interest | Waku Hatta: NO financial relationship with a commercial interest | So Takahashi: NO financial relationship with a commercial interest | Tomoyuki Koike: NO financial relationship with a commercial interest | Tetsuya Ohhira: NO financial relationship with a commercial interest | Takuto Hikichi: NO financial relationship with a commercial interest | Yosuke Toya: NO financial relationship with a commercial interest | Ippei Tanaka: NO financial relationship with a commercial interest | Yusuke Onozato: NO financial relationship with a commercial interest | Koichi Hamada: NO financial relationship with a commercial interest | Daisuke Fukushi: NO financial relationship with a commercial interest | Ko Watanabe: NO financial relationship with a commercial interest | Shoichi Kayaba: NO financial relationship with a commercial interest | Hirotaka Ito: NO financial relationship with a commercial interest | Tatsuya Mikami: NO financial relationship with a commercial interest | Tomoyuki Oikawa: NO financial relationship with a commercial interest | Yasushi Takahashi: NO financial relationship with a commercial interest | Yutaka Kondo: NO financial relationship with a commercial interest | Tetsuro Yoshimura: NO financial relationship with a commercial interest | Takeharu Shiroki: NO financial relationship with a commercial interest | Ko Nagino: NO financial relationship with a commercial interest | Norihiro Hanabata: NO financial relationship with a commercial interest | Akira Funakubo: NO financial relationship with a commercial interest | Dai Hirasawa: NO financial relationship with a commercial interest | Jun Nakamura: NO financial relationship with a commercial interest | Takayuki Matsumoto: NO financial relationship with a commercial interest | Katsunori Iijima: NO financial relationship with a commercial interest | Atsushi Masamune: NO financial relationship with a commercial interest | Kei Ito: NO financial relationship with a commercial interest | Shinsaku Fukuda: NO financial relationship with a commercial interest
Waku Hatta: NO financial relationship with a commercial interest | Tomoyuki Koike: NO financial relationship with a commercial interest | Sho Asonuma: NO financial relationship with a commercial interest | Hideki Okata: NO financial relationship with a commercial interest | Kaname Uno: NO financial relationship with a commercial interest | Tomoyuki Oikawa: NO financial relationship with a commercial interest | Wataru Iwai: NO financial relationship with a commercial interest | Makoto Yonechi: NO financial relationship with a commercial interest | Daisuke Fukushi: NO financial relationship with a commercial interest | Itaru Sato: NO financial relationship with a commercial interest | Shoichi Kayaba: NO financial relationship with a commercial interest | Fumitake Ishiyama: NO financial relationship with a commercial interest | Hirohiko Shinkai: NO financial relationship with a commercial interest | Ryosuke Kikuchi: NO financial relationship with a commercial interest | Hiroki Kikuchi: NO financial relationship with a commercial interest | Motoki Ohyauchi: NO financial relationship with a commercial interest | Hirotaka Ito: NO financial relationship with a commercial interest | Jun Fushiya: NO financial relationship with a commercial interest | Takeharu Shiroki: NO financial relationship with a commercial interest | Ryuhei Maejima: NO financial relationship with a commercial interest | Yasuhiko Abe: NO financial relationship with a commercial interest | Makoto Yagi: NO financial relationship with a commercial interest | Masashi Kawamura: NO financial relationship with a commercial interest | Satoshi Yokosawa: NO financial relationship with a commercial interest | Junya Honda: NO financial relationship with a commercial interest | Yutaka Kondo: NO financial relationship with a commercial interest | Naohiro Dairaku: NO financial relationship with a commercial interest | Tomohiro Masaka: NO financial relationship with a commercial interest | Kazuaki Norita: NO financial relationship with a commercial interest | Kenta Watanabe: NO financial relationship with a commercial interest | Kiichi Takahashi: NO financial relationship with a commercial interest | Masahiro Saito: NO financial relationship with a commercial interest | Yasushi Takahashi: NO financial relationship with a commercial interest | Hiroharu Echigo: NO financial relationship with a commercial interest | Yasuaki Abe: NO financial relationship with a commercial interest | Hiroyuki Endo: NO financial relationship with a commercial interest | Tomoki Okata: NO financial relationship with a commercial interest | Tatsuya Hoshi: NO financial relationship with a commercial interest | Taku Fujiya: NO financial relationship with a commercial interest | Katsunori Iijima: NO financial relationship with a commercial interest | Atsushi Masamune: NO financial relationship with a commercial interest
BACKGROUND:Although additional treatment is considered for patients with esophageal squamous cell carcinoma (ESCC) invading into the muscularis mucosa (pT1a-MM) or submucosa (pT1b-SM) after endoscopic submucosal dissection (ESD), the actual benefits of this method remain to be elucidated.AIMS:We aimed to evaluate the prognostic benefits of additional treatment in such patients.METHODS:Between 2006 and 2017, we enrolled patients with pT1a-MM/pT1b-SM ESCC after ESD at 21 institutions in Japan. Overall survival (OS) and disease-specific survival (DSS) were compared between the additional treatment and follow-up groups after propensity score matching, to reduce the bias of baseline characteristics. A subgroup analysis was performed according to the pathological findings: category A, pT1a-MM but negative for lymphovascular invasion (LVI) and vertical margin (VM); category B, tumor invasion into the submucosa ≤ 200 μm but negative for LVI and VM; category C, others.RESULTS:Of 593 patients with pT1a-MM/pT1b-SM ESCC after ESD, 101 matched pairs were extracted after propensity score matching. The OSs were similar between the additional treatment and follow-up groups (80.6% vs. 78.6% in 5 years; P = 0.972). In a subgroup analysis, the OS in the additional treatment group was significantly lower than that in the follow-up group (65.7% vs. 95.2% in 5 years; P = 0.037) in category A, whereas OS did not significantly differ in category C (76.8% vs. 69.5% in 5 years; P = 0.360).CONCLUSIONS:Additional treatment after ESD in patients with pT1a-MM/pT1b-SM ESCC was not associated with an improved prognosis.
Background: Detection of Mycobacterium avium complex (MAC) in tissue is essential for the diagnosis of MAC infections when the Mycobacterium is not isolated from sputum. However, detection of MAC in paraffin-embedded sections has not been established. Methods: We encountered two patients with suspected MAC infections after surgery: patient 1 had a pulmonary nodule that was initially suspected to be lung cancer and was excised under video-assisted thoracoscopic surgery (VATS). Patient 2, who was under treatment with steroids and anti-IL-6 inhibitors for rheumatoid arthritis, was suspected to have disseminated ileocecal cancer with metastasis to the lung and skin. In both cases, we postoperatively detected MAC genes in paraffin-embedded tissue sections using the novel mycobacterial nucleic acid identification test, ie tissue-direct polymerase chain reaction (tdPCR)-based nucleic acid lateral flow immunoassay (NALFIA). Both patients showed granulomatous lesions with hematoxylin-eosin staining, and mycobacteria by Ziehl- Neelsen staining in tissue sections from the lung and skin, respectively, although MAC were not isolated from the sections. MAC genes were finally detected by tdPCR-NALFIA in both cases. Conclusion: Although Ziehl-Neelsen staining and culture tests are the gold standard in identifying causative mycobacteria, the rapid results of tdPCR-NALFIA performed simultaneously with sputum and/or tissue culture may make it an important auxiliary diagnostic tool for identifying mycobacterial infection, leading to improvement in the management of MAC patients.
OBJECTIVES:We aimed to clarify the prognostic factors for patients with esophageal squamous cell carcinoma (ESCC) invading into the muscularis mucosa (pT1a-MM) or submucosa (pT1b-SM) after endoscopic submucosal dissection (ESD).METHODS:This retrospective study enrolled such patients at 21 institutions in Japan between 2006 and 2017. We evaluated 15 factors, including pathological risk categories for ESCC-specific mortality, six non-cancer-related indices, and treatment strategies.RESULTS:In the analysis of 593 patients, the 5-year overall and disease-specific survival rates were 83.0% and 97.6%, respectively. In a multivariate Cox analysis, male sex (hazard ratio [HR] 3.56), Charlson comorbidity index (CCI) ≥3 (HR 2.53), ages of 75-79 (HR 1.61) and ≥80 years (HR 2.04), prognostic nutrition index (PNI) <45 (HR 1.69), and pathological intermediate-risk (HR 1.63) and high-risk (HR 1.89) were prognostic factors. Subsequently, we developed a clinical risk classification for non-ESCC-related mortality based on the number of prognostic factors (age ≥75 years, male sex, CCI ≥3, PNI <45): low-risk, 0; intermediate-risk, 1-2; and high-risk, 3-4. The 5-year non-ESCC-related mortality rates for patients without additional treatment were 0.0%, 10.2%, and 45.8% in the low-, intermediate-, and high-risk groups, respectively. Meanwhile, the 5-year ESCC-specific mortality rates for the pathological low-, intermediate-, and high-risk groups were 0.3%, 5.3%, and 18.2%, respectively.CONCLUSIONS:We clarified prognostic factors for patients with pT1a-MM/pT1b-SM ESCC after ESD. The combined assessment of non-ESCC- and ESCC-related mortalities by the two risk classifications might help clinicians in deciding treatment strategies for such patients.
Little is known about the prognostic factors for survival after endoscopic submucosal dissection (ESD) in elderly patients with early gastric cancer (EGC). The aim of this study is to determine prognostic factors and a prediction model of 3-year survival after ESD for EGC in patients aged ≥ 85 years. We retrospectively evaluated the clinical outcomes of 740 patients with EGC aged ≥ 85 years, who were treated by ESD at 30 institutions in Japan. Overall survival (OS) and disease-specific survival (DSS) were calculated with the Kaplan–Meier method. Prediction models for 3-year OS after ESD were estimated using the Cox proportional hazards model based on Uno’s C-statistics. During the follow-up period, 309 patients died of any cause and 10 patients died of gastric cancer. OS and DSS after 3 years were 82.7
We aimed to elucidate the risk of metastatic recurrence after endoscopic resection (ER) without additional treatment for esophageal squamous cell carcinomas (ESCCs) with tumor invasion into the muscularis mucosa (pT1a-MM) or submucosa (T1b-SM). We retrospectively enrolled patients with pT1a-MM/pT1b-SM ESCC after ER at 21 institutions in Japan between 2006 and 2017. We compared metastatic recurrence between patients with and without additional treatment, stratified into category A (pT1a-MM with negative lymphovascular invasion [LVI] and vertical margin [VM]), B (tumor invasion into the submucosa ≤ 200 µm [pT1b-SM1] with negative LVI and VM), and C (others). Subsequently, using multivariate Cox analysis, we evaluated risk factors for metastatic recurrence after ER without additional treatment. We enrolled 593 patients, and metastatic recurrence occurred in 38 patients. Metastatic recurrence after additional treatment was significantly lower than that after no additional treatment in category C (9.1% vs. 23.6% in 5 years, p = 0.001), whereas no significant difference was noted in categories A (0.0% vs. 2.6%) and B (0.0% vs. 4.3%). In patients without additional treatment after ER, risk factors for metastatic recurrence were lymphatic invasion (hazard ratio [HR], 5.61), positive VM (HR, 4.55), and tumor invasion into the submucosa > 200 μm (HR, 3.25), and, but near half of the patients with metastatic recurrence had no further recurrence after salvage treatment, resulting in excellent 5-year disease-specific survival in categories A (99.6%) and B (100.0%). Closed follow-up with no additional treatment may be an acceptable option after ER in pT1a-MM/pT1b-SM1 ESCC with negative LVI and VM.
Cancer stem cells (CSCs) are responsible for therapy resistance and share several properties with normal stem cells. Here, we show that brain-expressed X-linked gene 2 (BEX2), which is essential for dormant CSCs in cholangiocarcinoma, is highly expressed in human hepatocellular carcinoma (HCC) lesions compared with the adjacent normal lesions and that in 41 HCC cases the BEX2 high expression group is correlated with a poor prognosis. BEX2 localizes to Ki67-negative (nonproliferative) cancer cells in HCC tissues and is highly expressed in the dormant fraction of HCC cell lines. Knockdown of BEX2 attenuates CSC phenotypes, including sphere formation ability and aldefluor activity, and BEX2 overexpression enhances these phenotypes. Moreover, BEX2 knockdown increases cisplatin sensitivity, and BEX2 expression is induced by cisplatin treatment. Taken together, these data suggest that BEX2 induces dormant CSC properties and affects the prognosis of patients with HCC.
A 61-year-old man who underwent surgery for rectal adenocarcinoma developed multiple hepatic nodules. The nodules were 1-3 cm without a capsular structure or contrast enhancement on computed tomography/magnetic resonance imaging, findings that were atypical for adenocarcinoma metastases. A biopsy showed the aggregation of eosinophils without larval bodies, ova, or granulomas. Laboratory tests showed a marked increase in eosinophils and a slight liver enzyme elevation. He had been taking the commercial herbal medicine Ganoderma lucidum for his liver function. After discontinuing G. lucidum, the eosinophil counts and liver enzyme levels rapidly resolved, and the nodules disappeared completely. This is a rare case of hypereosinophilia with hepatic nodules reactive to herbal medicine rather than a parasitic infection.