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Search Results to Nirmala Parajuli

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One or more keywords matched the following properties of Parajuli, Nirmala

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overview My primary research priority is to identify strategies to enhance the viability of kidneys during prolonged cold storage in order to ensure the long-term survival of renal transplants. My research focuses on exploring novel mechanisms by which cold storage alters protein quality and renal function after transplantation, and importantly, to identify a possible therapeutic target that could lead to improved renal outcome after transplantation. Specifically, my laboratory investigates the roles of proteasome, heat shock proteins and complement pathway during cold storage followed by transplantation using rat models.
research overview Long-term interest of my laboratory is to understand molecular mechanisms responsible for cold storage (CS)-induced renal damage. My research focuses on exploring novel mechanisms by which CS alters protein quality and renal function after transplantation, and importantly, to identify a possible therapeutic target that could lead to improved renal outcome after transplantation. Specifically, I plan to investigate the roles of proteasome, heat shock proteins and complement pathway during CS plus transplantation. We have established a rat kidney transplantation model, which will be fundamental in studying my independent research project on CS mediated renal damage. In addition, I’m also collaborating with Dr. MacMillan-Crow to study the molecular mechanisms that disrupt mitochondrial dynamics during renal CS and transplantation using our rat kidney transplant model. https://www.archildrens.org/research/researchers-at-acri/nirmala-parajuli-phd https://pharmtox.uams.edu/faculty/primary-faculty/nirmala-parajuli-ph-d/

One or more keywords matched the following items that are connected to Parajuli, Nirmala

Item TypeName
Academic Article Role of mitochondrial-derived oxidants in renal tubular cell cold-storage injury.
Concept Kidney Transplantation
Academic Article Renal cold storage followed by transplantation impairs expression of key mitochondrial fission and fusion proteins.
Academic Article Renal cold storage followed by transplantation impairs proteasome function and mitochondrial protein homeostasis.
Grant Manganese Superoxide Dismutase and Renal Ischemia/Reperfusion
Academic Article Targeting Mitochondria during Cold Storage to Maintain Proteasome Function and Improve Renal Outcome after Transplantation.
Academic Article The BK activator NS11021 partially protects rat kidneys from cold storage and transplantation-induced mitochondrial and renal injury.
Academic Article Cold Storage Exacerbates Renal and Mitochondrial Dysfunction Following Transplantation.
Grant Targeting heat shock protein 72 to improve renal function after transplantation
Academic Article Aberrant activation of the complement system in renal grafts is mediated by cold storage.
Grant Novel role of immunoproteaseome during renal cold storage and transplantation
Grant Novel role of immunoproteaseome during renal cold storage and transplantation
Academic Article Cold Storage Followed by Transplantation Induces Interferon-Gamma and STAT-1 in Kidney Grafts.
Academic Article Cold Storage Followed by Transplantation Induces Immunoproteasome in Rat Kidney Allografts: Inhibition of Immunoproteasome Does Not Improve Function.
Academic Article Normal Proteasome Function Is Needed to Prevent Kidney Graft Injury during Cold Storage Followed by Transplantation.

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