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

Single-Cell Multimodal Profiling Highlights Persistent Aortic Smooth Muscle Cell Changes in Diabetic Mice Despite Glycemic Control

单细胞多模态分析揭示糖尿病小鼠尽管血糖控制良好,主动脉平滑肌细胞仍持续发生改变

Tanwar, Vinay Singh; Malek, Vajir; Wang, Jingyi; Luo, Yingjun; Malhi, Naseeb Kaur; Zhang, Hongpan; Abdollahi, Maryam; Lanting, Linda; Senapati, Parijat; Das, Sadhan; Reddy, Marpadga A; Zang, Chongzhi; Miller, Clint L; Chen, Zhen Bouman; Natarajan, Rama

Metabolic beneficial effects of targeting a long non-coding RNA, lnc-megacluster, in obesity.

靶向长链非编码RNA(lnc-megacluster)对肥胖症的代谢有益作用。

Abdollahi Maryam, Malek Vajir, Tanwar Vinay Singh, Kato Mitsuo, Lanting Linda, Rezaei Alireza, Zhang Lingxiao, Yang Lixin, Pillai Raju K, Kebrom Leah, Nandi Jathan, Huang Wendong, Ma Ke, Natarajan Rama

Palmitic acid alters enhancers/super-enhancers near inflammatory and efferocytosis-associated genes in human monocytes.

棕榈酸可改变人类单核细胞中炎症和胞吞作用相关基因附近的增强子/超级增强子

Tanwar Vinay Singh, Reddy Marpadga A, Dey Suchismita, Malek Vajir, Lanting Linda, Chen Zhuo, Ganguly Rituparna, Natarajan Rama

Lowering an ER stress-regulated long noncoding RNA protects mice from diabetes and isolated pancreatic islets from cell death

降低内质网应激调节的长链非编码 RNA 可保护小鼠免受糖尿病的侵袭,并防止分离的胰腺胰岛细胞死亡

Mitsuo Kato, Maryam Abdollahi, Keiko Omori, Vajir Malek, Linda Lanting, Fouad Kandeel, Jeffrey Rawson, Walter Tsark, Lingxiao Zhang, Mei Wang, Ragadeepthi Tunduguru, Rama Natarajan

Update: the role of epigenetics in the metabolic memory of diabetic complications

最新进展:表观遗传学在糖尿病并发症代谢记忆中的作用

Chen, Zhuo; Malek, Vajir; Natarajan, Rama

Palmitic Acid-Induced Long Noncoding RNA PARAIL Regulates Inflammation via Interaction With RNA-Binding Protein ELAVL1 in Monocytes and Macrophages

棕榈酸诱导的长链非编码 RNA PARAIL 通过与单核细胞和巨噬细胞中的 RNA 结合蛋白 ELAVL1 相互作用来调节炎症

Vinay Singh Tanwar, Marpadga A Reddy, Sadhan Das, Vishnu Amaram Samara, Maryam Abdollahi, Suchismita Dey, Vajir Malek, Rituparna Ganguly, Kenneth Stapleton, Linda Lanting, Patrick Pirrotte, Rama Natarajan

Telmisartan and esculetin combination ameliorates type 2 diabetic cardiomyopathy by reversal of H3, H2A, and H2B histone modifications

替米沙坦和七叶内酯联合用药可通过逆转H3、H2A和H2B组蛋白修饰来改善2型糖尿病心肌病。

Kadakol, Almesh; Malek, Vajir; Goru, Santosh Kumar; Pandey, Anuradha; Gaikwad, Anil Bhanudas