1.Differences in Prevalence of Lymphovascular Invasion among Early Gastric Cancers between Korea and Japan.
Sun Young LEE ; Naohisa YOSHIDA ; Osamu DOHI ; Sang Pyo LEE ; Daisuke ICHIKAWA ; Jeong Hwan KIM ; In Kyung SUNG ; Hyung Seok PARK ; Eigo OTSUJI ; Yoshito ITOH ; Chan Sup SHIM ; Hye Seung HAN ; Mitsuo KISHIMOTO ; Yuji NAITO
Gut and Liver 2017;11(3):383-391
BACKGROUND/AIMS: The presence of invasion is a diagnostic criterion of early gastric cancer (EGC) in Korea, whereas diagnosis in Japan is based on enlarged nuclei and prominent nucleoli. Moreover, the depth of invasion is the location of cancer cell infiltration in Korea, whereas it is the location of lymphovascular invasion (LVI) or cancer cell infiltration in Japan. We evaluated the characteristics of EGC with LVI to uncover the effects of different diagnostic criteria. METHODS: Consecutive T1-stage EGC patients who underwent complete resection were included after endoscopic or surgical resection. The presence of LVI was evaluated. RESULTS: LVI was present in 112 of 1,089 T1-stage EGC patients. LVI was associated with depth of invasion (p<0.001) and age (p=0.017). The prevalence of LVI in mucosal cancer was significantly higher in Korea (p<0.001), whereas that of submucosal cancer was higher in Japan (p=0.024). For mucosal EGC types, LVI was positively correlated with diagnostic criteria applied in Korea (p=0.017). For submucosal EGC types, LVI was positively correlated with Japanese criteria (p=0.001) and old age (p=0.045). CONCLUSIONS: The higher prevalence of LVI for mucosal EGC in Korea and for submucosal EGC in Japan indicates that different diagnostic criteria should be considered when reading publications from other countries.
Asian Continental Ancestry Group
;
Diagnosis
;
Humans
;
Japan*
;
Korea*
;
Prevalence*
;
Stomach Neoplasms*
2.Blue Laser Imaging, Blue Light Imaging, and Linked Color Imaging for the Detection and Characterization of Colorectal Tumors
Naohisa YOSHIDA ; Osamu DOHI ; Ken INOUE ; Ritsu YASUDA ; Takaaki MURAKAMI ; Ryohei HIROSE ; Ken INOUE ; Yuji NAITO ; Yutaka INADA ; Kiyoshi OGISO ; Yukiko MORINAGA ; Mitsuo KISHIMOTO ; Rafiz Abdul RANI ; Yoshito ITOH
Gut and Liver 2019;13(2):140-148
A laser endoscopy system was developed in 2012. The system allows blue laser imaging (BLI), BLI-bright, and linked color imaging (LCI) to be performed as modes of narrow-band light observation; these modes have been reported to be useful for tumor detection and characterization. Furthermore, an innovative endoscopy system using four-light emitting diode (LED) multilight technology was released in 2016 to 2017 in some areas in which laser endoscopes have not been approved for use, including the United States and Europe. This system enables blue light imaging (this is also known as BLI) and LCI with an LED light source instead of a laser light source. Several reports have shown that these modes have improved tumor detection. In this paper, we review the efficacy of BLI and LCI with laser and LED endoscopes in tumor detection and characterization.
Colorectal Neoplasms
;
Endoscopes
;
Endoscopy
;
Europe
;
United States
3.Association Between the Cool Temperature-dependent Suppression of Colonic Peristalsis and Transient Receptor Potential Melastatin 8 Activation in Both a Randomized Clinical Trial and an Animal Model
Satoshi SUGINO ; Ken INOUE ; Reo KOBAYASHI ; Ryohei HIROSE ; Toshifumi DOI ; Akihito HARUSATO ; Osamu DOHI ; Naohisa YOSHIDA ; Kazuhiko UCHIYAMA ; Takeshi ISHIKAWA ; Tomohisa TAKAGI ; Hiroaki YASUDA ; Hideyuki KONISHI ; Yasuko HIRAI ; Katsura MIZUSHIMA ; Yuji NAITO ; Toshifumi TSUJI ; Takashi OKUDA ; Keizo KAGAWA ; Makoto TOMINAGA ; Yoshito ITOH
Journal of Neurogastroenterology and Motility 2022;28(4):693-705
Background/Aims:
Several studies have assessed the effect of cool temperature on colonic peristalsis. Transient receptor potential melastatin 8 (TRPM8) is a temperature-sensitive ion channel activated by mild cooling expressed in the colon. We examined the antispasmodic effect of cool temperature on colonic peristalsis in a prospective, randomized, single-blind trial and based on the video imaging and intraluminal pressure of the proximal colon in rats and TRPM8-deficient mice.
Methods:
In the clinical trial, we randomly assigned a total of 94 patients scheduled to undergo colonoscopy to 2 groups: the mildly cool water (n = 47) and control (n = 47) groups. We used 20 mL of 15°C water for the mildly cool water. The primary outcome was the proportion of subjects with improved peristalsis after treatment. In the rodent proximal colon, we evaluated the intraluminal pressure and performed video imaging of the rodent proximal colon with cool water administration into the colonic lumen. Clinical trial registry website (Trial No. UMIN-CTR; UMIN000030725).
Results:
In the randomized controlled trial, after treatment, the proportion of subjects with no peristalsis with cool water was significantly higher than that in the placebo group (44.7% vs 23.4%; P < 0.05). In the rodent colon model, cool temperature water was associated with a significant decrease in colonic peristalsis through its suppression of the ratio of peak frequency (P < 0.05). Cool temperaturetreated TRPM8-deficient mice did not show a reduction in colonic peristalsis compared with wild-type mice.
Conclusion
For the first time, this study demonstrates that cool temperature-dependent suppression of colonic peristalsis may be associated with TRPM8 activation.