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41.
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Ayako Inoshita Takatoshi Kasai Makiko Takahashi Hiroyuki Inoshita Satoshi Kasagi Fusae Kawana Sugao Ishiwata Minoru Ohno Tetsu Yamaguchi Koji Narui Katsuhisa Ikeda 《Sleep & breathing》2014,18(2):439-445
Purpose
Obstructive sleep apnea (OSA) is complicated with heart failure (HF); however, the reason for this is not well understood. Craniofacial anatomic risk factors may contribute to OSA pathogenesis in HF patients. However, there are no data about cephalometric findings among OSA patients with HF.Methods
Consecutive patients with HF and OSA (defined as total apnea–hypopnea index (AHI) ≥15/h) were enrolled. As controls, OSA patients without HF but matching the test group in age, BMI, and obstructive AHI were also enrolled.Results
Overall, 17 OSA patients with HF and 34 OSA patients without HF were compared. There are no significant differences in the characteristics or polysomnographic parameters between 2 groups. In the cephalometric findings, compared with patients without HF, patients with HF showed a significantly greater angle between the line SN to point “A” (SNA) and a longer inferior airway space and greater airway area. However, the tongue area of patients with HF was more than those without HF.Conclusions
The craniofacial structures of OSA patients with HF were different from those without HF. OSA patients with HF had an upper airway anatomy that is more likely to collapse when sleeping while recumbent, despite having a larger airway space. 相似文献43.
Nobuaki Sakamoto Huanhuan Hu Akiko Nanri Tetsuya Mizoue Masafumi Eguchi Takeshi Kochi Tohru Nakagawa Toru Honda Shuichiro Yamamoto Takayuki Ogasawara Naoko Sasaki Akiko Nishihara Teppei Imai Toshiaki Miyamoto Makoto Yamamoto Hiroko Okazaki Kentaro Tomita Akihiko Uehara Ai Hori Makiko Shimizu Taizo Murakami Keisuke Kuwahara Ami Fukunaga Isamu Kabe Tomofumi Sone Seitaro Dohi 《Journal of diabetes investigation.》2020,11(3):719-725
44.
Kashio M Sokabe T Shintaku K Uematsu T Fukuta N Kobayashi N Mori Y Tominaga M 《Proceedings of the National Academy of Sciences of the United States of America》2012,109(17):6745-6750
The ability to sense temperature is essential for organism survival and efficient metabolism. Body temperatures profoundly affect many physiological functions, including immunity. Transient receptor potential melastatin 2 (TRPM2) is a thermosensitive, Ca(2+)-permeable cation channel expressed in a wide range of immunocytes. TRPM2 is activated by adenosine diphosphate ribose and hydrogen peroxide (H(2)O(2)), although the activation mechanism by H(2)O(2) is not well understood. Here we report a unique activation mechanism in which H(2)O(2) lowers the temperature threshold for TRPM2 activation, termed "sensitization," through Met oxidation and adenosine diphosphate ribose production. This sensitization is completely abolished by a single mutation at Met-214, indicating that the temperature threshold of TRPM2 activation is regulated by redox signals that enable channel activity at physiological body temperatures. Loss of TRPM2 attenuates zymosan-evoked macrophage functions, including cytokine release and fever-enhanced phagocytic activity. These findings suggest that redox signals sensitize TRPM2 downstream of NADPH oxidase activity and make TRPM2 active at physiological body temperature, leading to increased cytosolic Ca(2+) concentrations. Our results suggest that TRPM2 sensitization plays important roles in macrophage functions. 相似文献
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46.
Hashizume O Shimizu A Yokota M Sugiyama A Nakada K Miyoshi H Itami M Ohira M Nagase H Takenaga K Hayashi J 《Proceedings of the National Academy of Sciences of the United States of America》2012,109(26):10528-10533
It has been hypothesized that respiration defects caused by accumulation of pathogenic mitochondrial DNA (mtDNA) mutations and the resultant overproduction of reactive oxygen species (ROS) or lactates are responsible for aging and age-associated disorders, including diabetes and tumor development. However, there is no direct evidence to prove the involvement of mtDNA mutations in these processes, because it is difficult to exclude the possible involvement of nuclear DNA mutations. Our previous studies resolved this issue by using an mtDNA exchange technology and showed that a G13997A mtDNA mutation found in mouse tumor cells induces metastasis via ROS overproduction. Here, using transmitochondrial mice (mito-mice), which we had generated previously by introducing G13997A mtDNA from mouse tumor cells into mouse embryonic stem cells, we provide convincing evidence supporting part of the abovementioned hypothesis by showing that G13997A mtDNA regulates diabetes development, lymphoma formation, and metastasis--but not aging--in this model. 相似文献
47.
48.
Toshitetsu Hayashi M.D. Ph.D. Reiji Haba M.D. Ph.D. Yoshio Kushida M.D. Ph.D. Kyuichi Kadota M.D. Ph.D. Naomi Katsuki M.D. Yumi Miyai M.D. Ph.D. Shinsuke Shibuya M.D. Makiko Sasaki M.D. Ph.D. Kenji Bando M.D. Ph.D. Toru Matsunaga C.T. Toshiyuki Hata M.D. Ph.D. 《Diagnostic cytopathology》2013,41(9):812-816
Primary strumal carcinoid tumor of the ovary (SCTO) is an extremely rare entity, though the survival rate is excellent if the disease is confined to one ovary. A case is presented here in which intraoperative squash smears in a 45‐year‐old woman with a left adnexal mass revealed dispersed or small clusters of neoplastic cells forming loosely cohesive gland‐like structures with abundant cytoplasm. The nuclear chromatin was finely granular with a “salt and pepper” appearance and occasional tiny nucleoli. The position of the nucleus presented a vaguely plasmacytoid appearance. Small fragments of thyroidal colloid‐like structures were also identified. A cytopathologic diagnosis of a SCTO was suggested. Further evaluation and immunohistochemical studies were conducted on formalin‐fixed, paraffin‐embedded material. Cords or nests of uniform cells with abundant cytoplasm, and eccentric nuclei with coarse chromatin and occasional colloidal tissue were identified on H&E sections. The tumor cells showed diffuse and strong cytoplasmic staining for chromogranin A, synaptophysin, CD56, and vimentin but were negative for calretinin, α‐inhibin or CDX2. The proliferative index with MIB‐1 was around 3%. Thyroidal colloid‐like structures were immunoreactive for thyroglobulin and TTF‐1 stains. The diagnosis of primary SCTO was confirmed based on cytopathologic, histopathological, and immunohistochemical results, and the location of the tumor. Awareness of the cytopathological findings of SCTO can assist in diagnosing this rare entity correctly. Diagn. Cytopathol. 2013;41:812–816. © 2011 Wiley Periodicals, Inc. 相似文献
49.
Watanabe T Urano E Miyauchi K Ichikawa R Hamatake M Misawa N Sato K Ebina H Koyanagi Y Komano J 《AIDS research and human retroviruses》2012,28(8):913-922
Rho GTPases are able to influence the replication of human immunodeficiency virus type 1 (HIV-1). However, little is known about the regulation of HIV-1 replication by guanine nucleotide dissociation inhibitors (GDIs), one of the three major regulators of the Rho GTPase activation cycle. From a T cell-based cDNA library screening, ARHGDIB/RhoGDIβ, a hematopoietic lineage-specific GDI family protein, was identified as a negative regulator of HIV-1 replication. Up-regulation of ARHGDIB attenuated the replication of HIV-1 in multiple T cell lines. The results showed that (1) a significant portion of RhoA and Rac1, but not Cdc42, exists in the GTP-bound active form under steady-state conditions, (2) ectopic ARHGDIB expression reduced the F-actin content and the active forms of both RhoA and Rac1, and (3) HIV-1 infection was attenuated by either ectopic expression of ARHGDIB or inhibition of the RhoA signal cascade at the HIV-1 Env-dependent early phase of the viral life cycle. This is in good agreement with the previous finding that RhoA and Rac1 promote HIV-1 entry by increasing the efficiency of receptor clustering and virus-cell membrane fusion. In conclusion, the ARHGDIB is a lymphoid-specific intrinsic negative regulator of HIV-1 replication that acts by simultaneously inhibiting RhoA and Rac1 functions. 相似文献
50.