1.Female Longitudinal Anal Muscles or Conjoint Longitudinal Coats Extend into the Subcutaneous Tissue along the Vaginal Vestibule: A Histological Study Using Human Fetuses.
Yusuke KINUGASA ; Takashi ARAKAWA ; Hiroshi ABE ; Jose Francisco RODRIGUEZ-VIZQUEZ ; Gen MURAKAMI ; Kenichi SUGIHARA
Yonsei Medical Journal 2013;54(3):778-784
PURPOSE: It is still unclear whether the longitudinal anal muscles or conjoint longitudinal coats (CLCs) are attached to the vagina, although such an attachment, if present, would appear to make an important contribution to the integrated supportive system of the female pelvic floor. MATERIALS AND METHODS: Using immunohistochemistry for smooth muscle actin, we examined semiserial frontal sections of 1) eleven female late-stage fetuses at 28-37 weeks of gestation, 2) two female middle-stage fetus (2 specimens at 13 weeks), and, 3) six male fetuses at 12 and 37 weeks as a comparison of the morphology. RESULTS: In late-stage female fetuses, the CLCs consistently (11/11) extended into the subcutaneous tissue along the vaginal vestibule on the anterior side of the external anal sphincter. Lateral to the CLCs, the external anal sphincter also extended anteriorly toward the vaginal side walls. The anterior part of the CLCs originated from the perimysium of the levator ani muscle without any contribution of the rectal longitudinal muscle layer. However, in 2 female middle-stage fetuses, smooth muscles along the vestibulum extended superiorly toward the levetor ani sling. In male fetuses, the CLCs were separated from another subcutaneous smooth muscle along the scrotal raphe (posterior parts of the dartos layer) by fatty tissue. CONCLUSION: In terms of topographical anatomy, the female anterior CLCs are likely to correspond to the lateral extension of the perineal body (a bulky subcutaneous smooth muscle mass present in adult women), supporting the vaginal vestibule by transmission of force from the levator ani.
Anal Canal/*anatomy & histology/embryology
;
Female
;
Fetus/anatomy & histology
;
Humans
;
Male
;
Muscle, Smooth/*anatomy & histology/embryology
;
Pelvic Floor/anatomy & histology
;
Sex Characteristics
;
Vagina/*anatomy & histology/embryology
2.Anococcygeal Raphe Revisited: A Histological Study Using Mid-Term Human Fetuses and Elderly Cadavers.
Yusuke KINUGASA ; Takashi ARAKAWA ; Hiroshi ABE ; Shinichi ABE ; Baik Hwan CHO ; Gen MURAKAMI ; Kenichi SUGIHARA
Yonsei Medical Journal 2012;53(4):849-855
PURPOSE: We recently demonstrated the morphology of the anococcygeal ligament. As the anococcygeal ligament and raphe are often confused, the concept of the anococcygeal raphe needs to be re-examined from the perspective of fetal development, as well as in terms of adult morphology. MATERIALS AND METHODS: We examined the horizontal sections of 15 fetuses as well as adult histology. From cadavers, we obtained an almost cubic tissue mass containing the dorsal wall of the anorectum, the coccyx and the covering skin. Most sections were stained with hematoxylin and eosin or Masson-trichrome solution. RESULTS: The adult ligament contained both smooth and striated muscle fibers. A similar band-like structure was seen in fetuses, containing: 1) smooth muscle fibers originating from the longitudinal muscle coat of the anal canal and 2) striated muscle fibers from the external anal sphincter (EAS). However, in fetuses, the levator ani muscle did not attach to either the band or the coccyx. Along and around the anococcygeal ligament, we did not find any aponeurotic tissue with transversely oriented fibers connecting bilateral levator ani slings. Instead, in adults, a fibrous tissue mass was located at a gap between bilateral levator ani slings; this site corresponded to the dorsal side of the ligament and the EAS in the immediately deep side of the natal skin cleft. CONCLUSION: We hypothesize that a classically described raphe corresponds to the specific subcutaneous tissue on the superficial or dorsal side of the anococcygeal ligament.
Aged, 80 and over
;
Anal Canal/*anatomy & histology/embryology
;
*Cadaver
;
Female
;
*Fetus
;
Humans
;
Male
;
Muscle, Smooth/*anatomy & histology/embryology
;
Rectum/*anatomy & histology/embryology
3.Depression Promotes the Onset of Irritable Bowel Syndrome through Unique Dysbiosis in Rats
Takeshi TAKAJO ; Kengo TOMITA ; Hanae TSUCHIHASHI ; Shingo ENOMOTO ; Masaaki TANICHI ; Hiroyuki TODA ; Yoshikiyo OKADA ; Hirotaka FURUHASHI ; Nao SUGIHARA ; Akinori WADA ; Kazuki HORIUCHI ; Kenichi INABA ; Yoshinori HANAWA ; Naoki SHIBUYA ; Kazuhiko SHIRAKABE ; Masaaki HIGASHIYAMA ; Chie KURIHARA ; Chikako WATANABE ; Shunsuke KOMOTO ; Shigeaki NAGAO ; Katsunori KIMURA ; Soichiro MIURA ; Kunio SHIMIZU ; Ryota HOKARI
Gut and Liver 2019;13(3):325-332
BACKGROUND/AIMS: Although studies using conventional animal models have shown that specific stressors cause irritable bowel syndrome (IBS), it is unclear whether depression itself causes IBS. Our aim was to establish a rat model to determine if depression itself promotes the onset of IBS and to elucidate the role of gut microbiota in brain-gut axis pathogenesis during coincident depression and IBS. METHODS: Rat models of depression were induced using our shuttle box method of learned helplessness. Visceral hypersensitivity was evaluated by colorectal distension (CRD) to diagnose IBS. Gut microbiota compositions were analyzed using high-throughput sequencing. In the subanalysis of rats without depression-like symptoms, rats with posttraumatic stress disorder (PTSD) were also examined. RESULTS: The threshold value of CRD in depressed rats was significantly lower than that in control rats. Microbial community analysis of cecal microbiota showed that the relative abundance of Clostridiales incertae sedis, the most prevalent microbe, was significantly lower in depressed rats than in control rats. The distribution pattern of the microbiota clearly differed between depressed rats and control rats. Neither visceral hypersensitivity nor the composition of gut microbiota was altered in rats with PTSD-like phenotypes. CONCLUSIONS: Our rat model of depression is useful for clarifying the effect of depression on IBS and suggests that depression itself, rather than specific stressors, promotes the onset of IBS. Further, we provided evidence that various psychiatric diseases, viz., depression and PTSD, are associated with unique gut microbiota profiles, which could differentially affect the onset and progression of coincident IBS.
Animals
;
Clostridiales
;
Depression
;
Dysbiosis
;
Gastrointestinal Microbiome
;
Helplessness, Learned
;
Hypersensitivity
;
Irritable Bowel Syndrome
;
Methods
;
Microbiota
;
Models, Animal
;
Phenotype
;
Rats
;
Stress Disorders, Post-Traumatic
4.Probiotic Yeast from Miso Ameliorates Stress-Induced Visceral Hypersensitivity by Modulating the Gut Microbiota in a Rat Model of Irritable Bowel Syndrome
Nao SUGIHARA ; Yoshikiyo OKADA ; Akira TOMIOKA ; Suguru ITO ; Rina TANEMOTO ; Shin NISHII ; Akinori MIZOGUCHI ; Kenichi INABA ; Yoshinori HANAWA ; Kazuki HORIUCHI ; Akinori WADA ; Yoshihiro AKITA ; Masaaki HIGASHIYAMA ; Chie KURIHARA ; Shunsuke KOMOTO ; Kengo TOMITA ; Ryota HOKARI
Gut and Liver 2024;18(3):465-475
Background/Aims:
Recent studies indicate that probiotics, which have attracted attention as a treatment for irritable bowel syndrome, affect intestinal homeostasis. In this study, we investigated whether Zygosaccharomyces sapae (strain I-6), a probiotic yeast isolated from miso (a traditional Japanese fermented food), could improve irritable bowel syndrome symptoms.
Methods:
Male Wistar rats were exposed to water avoidance stress (WAS). The number of defecations during WAS and the visceral hypersensitivity before and after WAS were evaluated using colorectal distension. Tight junction changes were assessed by Western blotting. Some rats were fed with strain I-6 or β-glucan from strain I-6. Changes in the intestinal microbiota were analyzed.The effect of fecal microbiota transplantation after WAS was evaluated similarly. Caco-2 cells were stimulated with interleukin-1β and tight junction changes were investigated after coculture with strain I-6.
Results:
The increased number of stool pellets and visceral hypersensitivity induced by WAS were suppressed by administering strain I-6. The decrease in tight junction protein occludin by WAS was reversed by the administration of strain I-6. β-Glucan from strain I-6 also suppressed those changes induced by WAS. In the rat intestinal microbiota, treatment with strain I-6 altered the β-diversity and induced changes in bacterial occupancy. Upon fecal microbiota transplantation, some symptoms caused by WAS were ameliorated.
Conclusions
These results suggest that traditional fermented foods such as miso in Japan are valuable sources of probiotic yeast candidates, which may be useful for preventing and treating stress-induced visceral hypersensitivity.