Zobrazeno 1 - 10
of 30
pro vyhledávání: '"Chaaya Iyengar Raje"'
Autor:
Rahul Dilawari, Gaurav Kumar Chaubey, Radheshyam Modanwal, Asmita Dhiman, Sharmila Talukdar, Ajay Kumar, Chaaya Iyengar Raje, Manoj Raje
Publikováno v:
Journal of Innate Immunity, Pp 1-1 (2024)
Introduction: Coronavirus disease 2019 caused by coronavirus-2 (SARS-CoV-2) has emerged as an aggressive viral pandemic. Health care providers confront a challenging task for rapid development of effective strategies to combat this and its long-term
Externí odkaz:
https://doaj.org/article/e6f61622bdbc460aa5e7ca95876ec396
Autor:
Asmita Dhiman, Sharmila Talukdar, Gaurav Kumar Chaubey, Rahul Dilawari, Radheshyam Modanwal, Surbhi Chaudhary, Anil Patidar, Vishant Mahendra Boradia, Pradeep Kumbhar, Chaaya Iyengar Raje, Manoj Raje
Publikováno v:
Journal of Innate Immunity (2023)
Mycobacterium tuberculosis (M.tb), the major causative agent of tuberculosis (TB), has evolved mechanisms to evade host defenses and persist within host cells. Host directed therapies (HDTs) against infected cells are emerging as an effective option.
Externí odkaz:
https://doaj.org/article/65c31a3ecfe64dd5bd70e81d7852bdfb
Autor:
Himanshu Malhotra, Manoj Kumar, Anoop Singh Chauhan, Asmita Dhiman, Surbhi Chaudhary, Anil Patidar, Pallavi Jaiswal, Kapil Sharma, Navdeep Sheokand, Chaaya Iyengar Raje, Manoj Raje
Publikováno v:
Cellular Physiology and Biochemistry, Vol 52, Iss 3, Pp 517-531 (2019)
Externí odkaz:
https://doaj.org/article/3605a2d9ef3d49f3827df47676669208
Autor:
Neha Kaushal, Apeksha Jain, Ajay Kumar, Sonu Sarraf, Aviru Kumar Basu, Chaaya Iyengar Raje, Avishek Saha
Publikováno v:
ChemPlusChem. 88
Autor:
Anil Patidar, Himanshu Malhotra, Surbhi Chaudhary, Manoj Kumar, Rahul Dilawari, Gaurav Kumar Chaubey, Asmita Dhiman, Radheshyam Modanwal, Sharmila Talukdar, Chaaya Iyengar Raje, Manoj Raje
Publikováno v:
Cellular and Molecular Life Sciences. 79
Availability of iron is a key factor in the survival and multiplication of Mycobacterium tuberculosis (M.tb) within host macrophage phagosomes. Despite host cell iron regulatory machineries attempts to deny supply of this essential micronutrient, int
Autor:
Ramesh Nimma, Ajay Kumar, Zahid Gani, Anuj Gahlawat, Rahul Dilawari, Rajesh Kumar Rohilla, Hemangi Kumbhar, Prabha Garg, Sidharth Chopra, Manoj Raje, Chaaya Iyengar Raje
Publikováno v:
Microbial Pathogenesis. 175:105992
Autor:
Manoj Kumar, Himanshu Malhotra, Anoop Singh Chauhan, Navdeep Sheokand, Chaaya Iyengar Raje, Kapil Sharma, Asmita Dhiman, Manoj Raje, Surbhi Chaudhary, Anil Patidar, Pallavi Jaiswal
Publikováno v:
Cellular Physiology and Biochemistry, Vol 52, Iss 3, Pp 517-531 (2019)
Background/aims Hypoxia triggers a rapid increase in iron demand to meet the requirements of enhanced erythropoiesis. The mobilization of iron stores from macrophage to plasma as holo-transferrin (Tf) from where it is accessible to erythroid precurso
Autor:
A. K. Singh, Anil Patidar, Ritesh P. Thakare, Manoj Raje, Ajay Kumar, Vishant Mahendra Boradia, Chaaya Iyengar Raje, Swetarka Das, Zahid Gani, Sidharth Chopra, Arunava Dasgupta
Publikováno v:
Journal of Antimicrobial Chemotherapy. 74:912-920
Background The emergence of drug-resistant bacteria is a major hurdle for effective treatment of infections caused by Mycobacterium tuberculosis and ESKAPE pathogens. In comparison with conventional drug discovery, drug repurposing offers an effectiv
Autor:
Kapil Sharma, Himanshu Malhotra, Surbhi Chaudhary, Navdeep Sheokand, Chaaya Iyengar Raje, Asmita Dhiman, Anoop Singh Chauhan, Priyanka Jakhar, Anil Patidar, Pallavi Jaswal, Manoj Raje, Manoj Kumar
Publikováno v:
The FASEB Journal. 33:5626-5640
During physiologic stresses, like micronutrient starvation, infection, and cancer, the cytosolic moonlighting protein glyceraldehyde-3-phosphate dehydrogenase (GAPDH) is trafficked to the plasma membrane (PM) and extracellular milieu (ECM). Our work
Autor:
Anil Patidar, Sharmila Talukdar, Chaaya Iyengar Raje, Radheshyam Modanwal, Rahul Dilawari, Asmita Dhiman, Himanshu Malhotra, Surbhi Chaudhary, Gaurav Kumar Chaubey, Manoj Raje
Publikováno v:
Molecular neurobiology. 58(11)
Protein aggregate accumulation is a pathological hallmark of several neurodegenerative disorders. Autophagy is critical for clearance of aggregate-prone proteins. In this study, we identify a novel role of the multifunctional glycolytic enzyme glycer