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

Redirecting cytomegalovirus immunity against pancreas cancer for immunotherapy

利用巨细胞病毒免疫力对抗胰腺癌进行免疫治疗

Marrocco, Remi; Patel, Jay; Medari, Rithika; Salu, Philip; Lucero-Meza, Eduardo; Maia, Catarina; Brunel, Simon; Martsinkovskiy, Alexei; Sun, Siming; Gulay, Kevin; Jaljuli, Malak; Mose, Evangeline; Lowy, Andrew; Benedict, Chris; Hurtado de Mendoza, Tatiana

Beyond Detection: Comparing State-Based Newborn Screening Methods for Effective Mucopolysaccharidosis I Diagnosis

超越检测:比较各州新生儿筛查方法在有效诊断粘多糖贮积症 I 方面的差异

Thampy, Rithika; Pillai, Nishitha R; Evans, Michael; Whitley, Chester B; Orchard, Paul J; Ellinwood, Matthew; Gaviglio, Amy

Historical Perspective of HER2 Testing and Treatment in Prostate Cancer

前列腺癌HER2检测和治疗的历史回顾

Zamalloa, Natalia; Rose, Jacqueline; Lap, Coen J; Rajendran, Rithika; Estephan, Fayez; Jatwani, Karan; Poudel, Aarati; Subrahmanyam, Ramesh; Hurley, Paula J; Nava, Victor E; Jain, Maneesh

Defining thoracic impedance thresholds for rescue ventilation: a laboratory study

确定用于抢救通气的胸阻抗阈值:一项实验室研究

Jarrett, Philip; Prakash, Rithika; Thakur, Bhaskar; Thomas, Jordan; Cao, Dazhe; Chang, Mary; Yang, Betty; Shaver, Sarah; Idris, Ahamed

A Critical Appraisal of the NIEPID Indian Test of Intelligence: Conceptual, Cultural, and Psychometric Reflections

对NIEPID印度智力测验的批判性评价:概念、文化和心理测量学反思

Ramesh, Baijesh Arayil; Rajan, Santhosh Kareepadath; Alladi, Rithika

Multi-functional zinc oxide nanoparticles (ZnONps inspired from Myristica Fragrans seed extract against cervical Cancer, pyogenic bacteria and inflammatory response. a promising potential of ZnONps in cancer nanotherapy, infection control and inflammation management

受肉豆蔻籽提取物启发,开发出多功能氧化锌纳米颗粒(ZnONps),用于对抗宫颈癌、化脓性细菌和炎症反应。ZnONps 在癌症纳米治疗、感染控制和炎症管理方面展现出巨大的应用潜力。

Anand Raj, L F A; Shreya, S; Rithika, G; Namasivayam, S Karthick Raja; Avinash, G P

Altered AP-1, RUNX, and EGR chromatin dynamics drive human fibrotic lung disease

AP-1、RUNX 和 EGR 染色质动力学的改变驱动人类纤维化肺病

Valenzi, Eleanor; Jia, Minxue; Gerges, Peter; Fan, Jingyu; Tabib, Tracy; Behera, Rithika; Mao, Haiyi; Xue, Dan; Ju, Eun Mi; Zhou, Yuechen; Sembrat, John C; Das, Jishnu; Benos, Panayiotis V; Singh, Harinder; Lafyatis, Robert

Direct interaction between TDP-43 and Tau promotes their co-condensation, while suppressing Tau fibril formation and seeding

TDP-43与Tau蛋白的直接相互作用促进二者的共凝聚,同时抑制Tau蛋白原纤维的形成和成核作用。

Francesca Simonetti ,Weijia Zhong,Saskia Hutten,Federico Uliana,Martina Schifferer,Ali Rezaei,Lisa Marie Ramirez ,Janine Hochmair,Rithika Sankar,Anusha Gopalan ,Fridolin Kielisch,Henrick Riemenschneider,Viktoria Ruf,Carla Schmidt,Mikael Simons ,Markus Zweckstetter ,Susanne Wegmann,Tammaryn Lashley,Magdalini Polymenidou,Dieter Edbauer ,Dorothee Dormann

Mass Spectrometry-Based Proteomics Technologies to Define Endogenous Protein-Protein Interactions and Their Applications to Cancer and Viral Infectious Diseases

基于质谱的蛋白质组学技术在定义内源性蛋白质-蛋白质相互作用及其在癌症和病毒感染性疾病中的应用方面的应用

Yu, Clinton; Adavikolanu, Rithika; Kaake, Robyn M; Huang, Lan

Stoichiometric 14-3-3ζ binding promotes phospho-Tau microtubule dissociation and reduces aggregation and condensation.

化学计量比的 14-3-3ζ 结合促进磷酸化 Tau 微管解离,减少聚集和凝聚

Hochmair Janine, van den Oetelaar Maxime C M, Ravatt Leandre, Diez Lisa, Lemmens Lenne J M, Ponce-Lina Renata, Sankar Rithika, Franck Maximilian, Nolte Gesa, Semenova Ekaterina, Mohapatra Satabdee, Ottmann Christian, Brunsveld Luc, Wegmann Susanne