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

Multimodal Exploration Offers Novel Insights into the Transcriptomic and Epigenomic Landscape of the Human Submandibular Glands

多模态探索为人类颌下腺的转录组和表观基因组图谱提供了新的见解

Horeth, Erich; Wrynn, Theresa; Osinski, Jason M; Glathar, Alexandra; Bard, Jonathan; Burke, Mark S; Popat, Saurin; Loree, Thom; Nagai, Michael; Phillips, Robert; Tapia, Jose Luis; Frustino, Jennifer; Kramer, Jill M; Sinha, Satrajit; Romano, Rose-Anne

ΔNp63 regulates Sfrp1 expression to direct salivary gland branching morphogenesis

ΔNp63 调节 Sfrp1 表达以指导唾液腺分支形态发生

Theresa Wrynn, Sangwon Min, Erich Horeth, Jason Osinski, Satrajit Sinha, Rose-Anne Romano

ΔNp63 maintains the fidelity of the myoepithelial cell lineage and directs cell differentiation programs in the murine salivary gland

ΔNp63 维持肌上皮细胞谱系的保真度并指导小鼠唾液腺中的细胞分化程序

Eun-Ah Christine Song, Monika Che, Jason Osinski, Kirsten Smalley, Erich Horeth, Satrajit Sinha, Rose-Anne Romano

Genetic Study of Elf5 and Ehf in the Mouse Salivary Gland

小鼠唾液腺中 Elf5 和 Ehf 的遗传学研究

Song, E A C; Smalley, K; Oyelakin, A; Horeth, E; Che, M; Wrynn, T; Osinski, J; Romano, R A; Sinha, S

Transcriptomic and Single-Cell Analysis Reveals Regulatory Networks and Cellular Heterogeneity in Mouse Primary Sjögren's Syndrome Salivary Glands

转录组学和单细胞分析揭示小鼠原发性干燥综合征唾液腺的调控网络和细胞异质性

Horeth, Erich; Oyelakin, Akinsola; Song, Eun-Ah Christine; Che, Monika; Bard, Jonathan; Min, Sangwon; Kiripolsky, Jeremy; Kramer, Jill M; Sinha, Satrajit; Romano, Rose-Anne

A Global Vista of the Epigenomic State of the Mouse Submandibular Gland

小鼠颌下腺表观基因组状态的全球概览

Gluck, C; Min, S; Oyelakin, A; Che, M; Horeth, E; Song, E A C; Bard, J; Lamb, N; Sinha, S; Romano, R A

Transcriptomic and Single-Cell Analysis of the Murine Parotid Gland

小鼠腮腺的转录组学和单细胞分析

Oyelakin, A; Song, E A C; Min, S; Bard, J E; Kann, J V; Horeth, E; Smalley, K; Kramer, J M; Sinha, S; Romano, R A

Antigen processing of vesicular stomatitis virus in situ. Interdigitating dendritic cells present viral antigens independent of marginal dendritic cells but fail to prime CD4(+) and CD8(+) T cells

水疱性口炎病毒在原位的抗原加工。交错树突状细胞独立于边缘树突状细胞呈递病毒抗原,但无法启动CD4(+)和CD8(+) T细胞。

Ciavarra, R P; Greene, A R; Horeth, D R; Buhrer, K; van Rooijen, N; Tedeschi, B