日期:
2020 年 — 2026 年
2020
2021
2022
2023
2024
2025
2026
影响因子:

Treatment with a Lactococcus lactis that chromosomally express E. coli cfaI mitigates salivary flow loss in a Sjögren's syndrome-like disease

使用染色体表达大肠杆菌 cfaI 的乳酸乳球菌进行治疗可减轻干燥综合征样疾病的唾液流量减少。

Akgul, Ali; Freguia, Christian Furlan; Maddaloni, Massimo; Hoffman, Carol; Voigt, Alexandria; Nguyen, Cuong Q; Fanger, Neil A; Fanger, Gary R; Pascual, David W

Stimulation of regulatory T cells with Lactococcus lactis expressing enterotoxigenic E. coli colonization factor antigen 1 retains salivary flow in a genetic model of Sjögren's syndrome.

在干燥综合征的遗传模型中,用表达肠毒素大肠杆菌定植因子抗原 1 的乳酸乳球菌刺激调节性 T 细胞可维持唾液流量

Akgul Ali, Maddaloni Massimo, Jun Sang Mu, Nelson Andrew S, Odreman Vanessa Aguilera, Hoffman Carol, Bhagyaraj Ella, Voigt Alexandria, Abbott Jeffrey R, Nguyen Cuong Q, Pascual David W

IL-35 (Interleukin-35) Suppresses Endothelial Cell Activation by Inhibiting Mitochondrial Reactive Oxygen Species-Mediated Site-Specific Acetylation of H3K14 (Histone 3 Lysine 14)

IL-35(白细胞介素-35)通过抑制线粒体活性氧介导的H3K14(组蛋白3赖氨酸14)位点特异性乙酰化来抑制内皮细胞活化。

Li, Xinyuan; Shao, Ying; Sha, Xiaojin; Fang, Pu; Kuo, Yin-Ming; Andrews, Andrew J; Li, Yafeng; Yang, William Y; Maddaloni, Massimo; Pascual, David W; Luo, Jin J; Jiang, Xiaohua; Wang, Hong; Yang, Xiaofeng

Delivery of IL-35 by Lactococcus lactis Ameliorates Collagen-Induced Arthritis in Mice

乳酸乳球菌递送IL-35可改善小鼠胶原诱导性关节炎

Maddaloni, Massimo; Kochetkova, Irina; Hoffman, Carol; Pascual, David W

Regulatory T Cell Dysfunction Acquiesces to BTLA+ Regulatory B Cells Subsequent to Oral Intervention in Experimental Autoimmune Encephalomyelitis

实验性自身免疫性脑脊髓炎口服干预后,调节性T细胞功能障碍可导致BTLA+调节性B细胞的激活

Huarte, Eduardo; Jun, SangMu; Rynda-Apple, Agnieszka; Golden, Sara; Jackiw, Larissa; Hoffman, Carol; Maddaloni, Massimo; Pascual, David W

Adenovirus F protein as a delivery vehicle for botulinum B

腺病毒F蛋白作为肉毒杆菌B的递送载体

Clapp, Beata; Golden, Sarah; Maddaloni, Massimo; Staats, Herman F; Pascual, David W

Ovalbumin-protein sigma 1 M-cell targeting facilitates oral tolerance with reduction of antigen-specific CD4+ T cells.

卵清蛋白-蛋白质σ1 M细胞靶向促进口服耐受,减少抗原特异性CD4+ T细胞

Suzuki Hideaki, Sekine Shinichi, Kataoka Kosuke, Pascual David W, Maddaloni Massimo, Kobayashi Ryoki, Fujihashi Keiko, Kozono Haruo, McGhee Jerry R, Fujihashi Kohtaro

A nasal interleukin-12 DNA vaccine coexpressing Yersinia pestis F1-V fusion protein confers protection against pneumonic plague

鼻腔内注射的白细胞介素-12 DNA疫苗,同时表达鼠疫耶尔森菌F1-V融合蛋白,可预防肺鼠疫

Yamanaka, Hitoki; Hoyt, Teri; Yang, Xinghong; Golden, Sarah; Bosio, Catharine M; Crist, Kathryn; Becker, Todd; Maddaloni, Massimo; Pascual, David W