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Items: 1 to 20 of 46

1.

A GM1b/asialo-GM1 oligosaccharide-binding R-type lectin from purplish bifurcate mussels Mytilisepta virgata and its effect on MAP kinases.

Fujii Y, Gerdol M, Kawsar SMA, Hasan I, Spazzali F, Yoshida T, Ogawa Y, Rajia S, Kamata K, Koide Y, Sugawara S, Hosono M, Tame JRH, Fujita H, Pallavicini A, Ozeki Y.

FEBS J. 2019 Nov 26. doi: 10.1111/febs.15154. [Epub ahead of print]

PMID:
31769916
2.

Dynamic change of anti-inflammatory cytokine IL-35 in allergen immune therapy for Japanese cedar pollinosis.

Kouzaki H, Arikata M, Koji M, Arai H, Yamamoto S, Kikuoka H, Fujimoto N, Ogawa Y, Yuta A, Shimizu T.

Allergy. 2019 Nov 22. doi: 10.1111/all.14124. [Epub ahead of print] No abstract available.

PMID:
31755994
3.

Immunological effects of sublingual immunotherapy with Japanese cedar pollen extract in patients with combined Japanese cedar and Japanese cypress pollinosis.

Kikuoka H, Kouzaki H, Matsumoto K, Arai H, Yamamoto S, Tojima I, Shimizu S, Miyashita H, Ogawa Y, Osada T, Okano M, Yuta A, Shimizu T.

Clin Immunol. 2020 Jan;210:108310. doi: 10.1016/j.clim.2019.108310. Epub 2019 Nov 16.

PMID:
31743749
4.

[CLINICAL EFFICACY OF 69 PATIENTS WITH JAPANESE CEDAR POLLINOSIS TREATED BY SUBLINGUAL IMMUNOTHERAPY WITH CEDARCURE® IN THE FIRST FOLLOW-UP YEAR].

Yuta A, Ogawa Y, Suzuki Y, Ogihara H, Kozaki H, Shimizu T.

Arerugi. 2019;68(8):958-965. doi: 10.15036/arerugi.68.958. Japanese.

PMID:
31534107
5.

The Bacteriological Properties of Bacillus Strain TM-I-3 and Analysis of the Volatile Antifungal Compounds Emitted by this Bacteria.

Osaki C, Yamaguchi K, Urakawa S, Nakashima Y, Sugita K, Nagaishi M, Mitsuiki S, Kuraoka T, Ogawa Y, Sato H.

Biocontrol Sci. 2019;24(3):129-136. doi: 10.4265/bio.24.129.

6.

Ovomucoid-specific IgG4 level in cord blood associates negatively with later sensitization.

Irahara M, Shinahara W, Sugimoto M, Ogawa Y, Shitsukawa K, Kubota K, Ohya Y, Saito H, Kagami S, Kido H.

Pediatr Allergy Immunol. 2019 Dec;30(8):857-860. doi: 10.1111/pai.13116. Epub 2019 Oct 1. No abstract available.

PMID:
31441111
7.

Safety profile and immunological response of dual sublingual immunotherapy with house dust mite tablet and Japanese cedar pollen tablet.

Gotoh M, Okubo K, Yuta A, Ogawa Y, Nagakura H, Ueyama S, Ueyama T, Kawashima K, Yamamoto M, Fujieda S, Sakashita M, Sakamoto H, Iwasaki N, Mori E, Endo T, Ohta N, Kitazawa H, Okano M, Asako M, Takada M, Terada T, Inaka Y, Yonekura S, Matsuoka T, Kaneko S, Hata H, Hijikata N, Tanaka H, Masuyama K, Okamoto Y.

Allergol Int. 2020 Jan;69(1):104-110. doi: 10.1016/j.alit.2019.07.007. Epub 2019 Aug 14.

8.

Trajectories of class-switching-related egg and cow's milk allergen-specific immunoglobulin isotype formation and its modification by eczema with low- and high-affinity immunoglobulin E during early infancy.

Irahara M, Shinahara W, Sugimoto M, Ogawa Y, Shitsukawa K, Kubota K, Yang L, Ohya Y, Saito H, Kagami S, Arisawa K, Kido H.

Immun Inflamm Dis. 2019 Jun;7(2):74-85. doi: 10.1002/iid3.245. Epub 2019 Mar 11.

9.

Presence of O-glycosidically linked oligosaccharides in the cell wall mannan of Candida krusei purified with Benanomicin A.

Kuraoka T, Ishiyama A, Oyamada H, Ogawa Y, Kobayashi H.

FEBS Open Bio. 2018 Dec 10;9(1):129-136. doi: 10.1002/2211-5463.12558. eCollection 2019 Jan.

10.

[CLINICAL EFFICACY OF SUBLINGUAL IMMUNOTHERAPY IN A LARGE AMOUNT OF POLLEN DISPARSAL AND IT'S IMPACT OF TREATMENT YEAR].

Yuta A, Ogawa Y, Suzuki Y, Ogihara H, Kozaki H, Ohta N, Shimizu T.

Arerugi. 2018;67(8):1011-1019. doi: 10.15036/arerugi.67.1011. Japanese.

PMID:
30249950
11.

Role of whole saliva in the efficacy of sublingual immunotherapy in seasonal allergic rhinitis.

Haruna T, Kariya S, Fujiwara T, Yuta A, Higaki T, Zhao P, Ogawa Y, Kanai K, Hirata Y, Oka A, Nishizaki K, Okano M.

Allergol Int. 2019 Jan;68(1):82-89. doi: 10.1016/j.alit.2018.07.008. Epub 2018 Aug 27.

12.

[CLINICAL EFFICACY OF SUBLINGUAL IMMUNOTHERAPY IN THE THIRD TREATED YEAR WITH JAPANESE CEDAR POLLINOSIS IN 2017].

Yuta A, Ogawa Y, Suzuki Y, Ogihara H, Ohta N, Kozaki H, Shimizu T.

Arerugi. 2017;66(9):1172-1180. doi: 10.15036/arerugi.66.1172. Japanese.

PMID:
29129888
13.

Enhanced Clinical Efficacy of Sublingual Immunotherapy for Japanese Cedar Pollinosis in the Second Year of Treatment.

Yuta A, Ogawa Y, Suzuki Y, Arikata M, Kozaki H, Shimizu T, Ohta N.

Nihon Jibiinkoka Gakkai Kaiho. 2017 Jan;120(1):44-51. Japanese.

PMID:
30035467
14.

Adherence and Clinical Outcome of Sublingual Immunotherapy for Japanese Cedar Pollinosis.

Yuta A, Ogawa Y, Suzuki Y, Arikata M, Kozaki H, Shimizu T, Ohta N.

Nihon Jibiinkoka Gakkai Kaiho. 2016 Dec;119(12):1504-10. Japanese.

PMID:
30035481
15.

CLINICAL EFFICACY OF SUBLINGUAL IMMUNOTHERAPY IN THE SECOND TREATED YEAR FOR 133 PATIENTS WITH JAPANESE CEDAR POLLINOSIS IN 2016.

Yuta A, Ogawa Y, Suzuki Y, Arikata M, Kozaki H, Shimizu T, Ohta N.

Arerugi. 2016;65(9):1209-1218. Japanese.

PMID:
27885205
16.

A lightweight shape-memory magnesium alloy.

Ogawa Y, Ando D, Sutou Y, Koike J.

Science. 2016 Jul 22;353(6297):368-70. doi: 10.1126/science.aaf6524.

17.

[Adverse Events of Sublingual Immunotherapy in 207 Patients with Japanese Cedar Pollinosis].

Ogawa Y, Yuta A, Arikata M, Kozaki H, Ohta N, Suzuki Y, Shimizu T.

Nihon Jibiinkoka Gakkai Kaiho. 2015 Dec;118(12):1429-35. Japanese.

PMID:
26964395
18.

Correction: Hasan, I., et al. A Galactose-Binding Lectin Isolated from Aplysia kurodai (Sea Hare) Eggs Inhibits Streptolysin-Induced Hemolysis. Molecules 2014, 19, 13990-14003.

Hasan I, Watanabe M, Ishizaki N, Sugita-Konishi Y, Kawakami Y, Suzuki J, Dogasaki C, Rajia S, Kawsar SM, Koide Y, Kanaly RA, Sugawara S, Hosono M, Ogawa Y, Fujii Y, Iriko H, Hamako J, Matsui T, Ozeki Y.

Molecules. 2016 Jan 21;21(1):129. doi: 10.3390/molecules21010129. No abstract available.

19.

[CLINICAL EFFICACY OF SUBLINGUAL IMMUNOTHERAPY FOR JAPANESE CEDAR POLLINOSIS IN THE FIRST FOLLOW-UP YEAR].

Yuta A, Ogawa Y, Suzuki Y, Arikata M, Kozaki H, Shimizu T, Ohta N.

Arerugi. 2015 Dec;64(10):1323-33. doi: 10.15036/arerugi.64.1323. Japanese.

PMID:
26727137
20.

MytiLec, a Mussel R-Type Lectin, Interacts with Surface Glycan Gb3 on Burkitt's Lymphoma Cells to Trigger Apoptosis through Multiple Pathways.

Hasan I, Sugawara S, Fujii Y, Koide Y, Terada D, Iimura N, Fujiwara T, Takahashi KG, Kojima N, Rajia S, Kawsar SM, Kanaly RA, Uchiyama H, Hosono M, Ogawa Y, Fujita H, Hamako J, Matsui T, Ozeki Y.

Mar Drugs. 2015 Dec 14;13(12):7377-89. doi: 10.3390/md13127071.

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