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

Targeting Pf Prohibitin 2-Hu-Hsp70A1A complex as a unique approach towards malaria vaccine development

以 Pf Prohibitin 2-Hu-Hsp70A1A 复合物为靶点,作为开发疟疾疫苗的独特方法

Manisha Marothia, Ankita Behl, Preeti Maurya, Monika Saini, Rumaisha Shoaib, Swati Garg, Geeta Kumari, Shreeja Biswas, Akshay Munjal, Sakshi Anand, Amandeep Kaur Kahlon, Pragya Gupta, Saurav Biswas, Bidhan Goswami, Haider Thaer Abdulhameed Almuqdadi, Ipsita Pal Bhowmick, Maxim Shevtsov, Sivaprakash

Host SUMOylation Pathway Negatively Regulates Protective Immune Responses and Promotes Leishmania donovani Survival

宿主SUMO化通路负调控保护性免疫反应并促进杜氏利什曼原虫存活

Jhalak Singhal ,Evanka Madan ,Ayushi Chaurasiya ,Pallavi Srivastava ,Niharika Singh ,Shikha Kaushik ,Amandeep Kaur Kahlon ,Mukesh Kumar Maurya ,Manisha Marothia ,Prerna Joshi ,Anand Ranganathan ,Shailja Singh

Targeting Artemisinin-Resistant Malaria by Repurposing the Anti-Hepatitis C Virus Drug Alisporivir

利用抗丙型肝炎病毒药物阿利斯波利韦治疗青蒿素耐药疟疾

Chaurasiya, Ayushi; Kumari, Geeta; Garg, Swati; Shoaib, Rumaisha; Anam, Zille; Joshi, Nishant; Kumari, Jyoti; Singhal, Jhalak; Singh, Niharika; Kaushik, Shikha; Kahlon, Amandeep Kaur; Dubey, Neha; Maurya, Mukesh Kumar; Srivastava, Pallavi; Marothia, Manisha; Joshi, Prerna; Gupta, Kanika; Saini, Savita; Das, Gobardhan; Bhattacharjee, Souvik; Singh, Shailja; Ranganathan, Anand

Pathogen induced subversion of NAD(+) metabolism mediating host cell death: a target for development of chemotherapeutics

病原体诱导的NAD(+)代谢紊乱介导宿主细胞死亡:化疗药物研发的靶点

Chaurasiya, Ayushi; Garg, Swati; Khanna, Ashish; Narayana, Chintam; Dwivedi, Ved Prakash; Joshi, Nishant; E Anam, Zill; Singh, Niharika; Singhal, Jhalak; Kaushik, Shikha; Kaur Kahlon, Amandeep; Srivastava, Pallavi; Marothia, Manisha; Kumar, Mukesh; Kumar, Santosh; Kumari, Geeta; Munjal, Akshay; Gupta, Sonal; Singh, Preeti; Pati, Soumya; Das, Gobardhan; Sagar, Ram; Ranganathan, Anand; Singh, Shailja

Morphological Analysis, Protein Profiling and Expression Analysis of Auxin Homeostasis Genes of Roots of Two Contrasting Cultivars of Rice Provide Inputs on Mechanisms Involved in Rice Adaptation towards Salinity Stress

通过对两种水稻品种根系形态、蛋白质组学和生长素稳态基因表达的分析,揭示了水稻适应盐胁迫的机制。

Saini, Shivani; Kaur, Navdeep; Marothia, Deeksha; Singh, Baldev; Singh, Varinder; Gantet, Pascal; Pati, Pratap Kumar