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Frontiers | Natural products for kidney disease treatment: Focus on  targeting mitochondrial dysfunction
Frontiers | Natural products for kidney disease treatment: Focus on targeting mitochondrial dysfunction

Protective effect of curcumin on the kidney of diclofenac sodium-challenged  mice: apoptotic, redox potential and histopathological outcomes | The  Journal of Basic and Applied Zoology | Full Text
Protective effect of curcumin on the kidney of diclofenac sodium-challenged mice: apoptotic, redox potential and histopathological outcomes | The Journal of Basic and Applied Zoology | Full Text

Vinpocetine reduces diclofenac-induced acute kidney injury through  inhibition of oxidative stress, apoptosis, cytokine production, and NF-κB  activation in mice - ScienceDirect
Vinpocetine reduces diclofenac-induced acute kidney injury through inhibition of oxidative stress, apoptosis, cytokine production, and NF-κB activation in mice - ScienceDirect

Opioids for chronic pain management in patients with dialysis-dependent kidney  failure | Nature Reviews Nephrology
Opioids for chronic pain management in patients with dialysis-dependent kidney failure | Nature Reviews Nephrology

Diclofenac-Induced Kidney Damage in Wistar Rats: Involvement of Antioxidant  Mechanism
Diclofenac-Induced Kidney Damage in Wistar Rats: Involvement of Antioxidant Mechanism

Vinpocetine reduces diclofenac-induced acute kidney injury through  inhibition of oxidative stress, apoptosis, cytokine production, and NF-κB  activation in mice - ScienceDirect
Vinpocetine reduces diclofenac-induced acute kidney injury through inhibition of oxidative stress, apoptosis, cytokine production, and NF-κB activation in mice - ScienceDirect

Vinpocetine reduces diclofenac-induced acute kidney injury through  inhibition of oxidative stress, apoptosis, cytokine production, and NF-κB  activation in mice - ScienceDirect
Vinpocetine reduces diclofenac-induced acute kidney injury through inhibition of oxidative stress, apoptosis, cytokine production, and NF-κB activation in mice - ScienceDirect

Vinpocetine reduces diclofenac-induced acute kidney injury through  inhibition of oxidative stress, apoptosis, cytokine production, and NF-κB  activation in mice - ScienceDirect
Vinpocetine reduces diclofenac-induced acute kidney injury through inhibition of oxidative stress, apoptosis, cytokine production, and NF-κB activation in mice - ScienceDirect

Biomedicines | Free Full-Text | A Single Oral Dose of Diclofenac Causes  Transition of Experimental Subclinical Acute Kidney Injury to Chronic Kidney  Disease
Biomedicines | Free Full-Text | A Single Oral Dose of Diclofenac Causes Transition of Experimental Subclinical Acute Kidney Injury to Chronic Kidney Disease

Ameliorative effects of N‐acetyl cysteine on diclofenac‐induced renal injury  in male rats based on serum biochemical parameters, oxidative biomarkers,  and histopathological study - Nouri - 2019 - Journal of Food Biochemistry -
Ameliorative effects of N‐acetyl cysteine on diclofenac‐induced renal injury in male rats based on serum biochemical parameters, oxidative biomarkers, and histopathological study - Nouri - 2019 - Journal of Food Biochemistry -

Kidney damage from nonsteroidal anti‐inflammatory drugs—Myth or truth?  Review of selected literature - Drożdżal - 2021 - Pharmacology Research &  Perspectives - Wiley Online Library
Kidney damage from nonsteroidal anti‐inflammatory drugs—Myth or truth? Review of selected literature - Drożdżal - 2021 - Pharmacology Research & Perspectives - Wiley Online Library

Protective effect of curcumin on the kidney of diclofenac sodium-challenged  mice: apoptotic, redox potential and histopathological outcomes | The  Journal of Basic and Applied Zoology | Full Text
Protective effect of curcumin on the kidney of diclofenac sodium-challenged mice: apoptotic, redox potential and histopathological outcomes | The Journal of Basic and Applied Zoology | Full Text

Vinpocetine reduces diclofenac-induced acute kidney injury through  inhibition of oxidative stress, apoptosis, cytokine production, and NF-κB  activation in mice - ScienceDirect
Vinpocetine reduces diclofenac-induced acute kidney injury through inhibition of oxidative stress, apoptosis, cytokine production, and NF-κB activation in mice - ScienceDirect

Vinpocetine reduces diclofenac-induced acute kidney injury through  inhibition of oxidative stress, apoptosis, cytokine production, and NF-κB  activation in mice - ScienceDirect
Vinpocetine reduces diclofenac-induced acute kidney injury through inhibition of oxidative stress, apoptosis, cytokine production, and NF-κB activation in mice - ScienceDirect

Protective effect of curcumin on the kidney of diclofenac sodium-challenged  mice: apoptotic, redox potential and histopathological outcomes | The  Journal of Basic and Applied Zoology | Full Text
Protective effect of curcumin on the kidney of diclofenac sodium-challenged mice: apoptotic, redox potential and histopathological outcomes | The Journal of Basic and Applied Zoology | Full Text

Topical Nonsteroidal Anti-inflammatory Drugs and Nephrotoxicity: Is There a  Safer Option?
Topical Nonsteroidal Anti-inflammatory Drugs and Nephrotoxicity: Is There a Safer Option?

Biomedicines | Free Full-Text | A Single Oral Dose of Diclofenac Causes  Transition of Experimental Subclinical Acute Kidney Injury to Chronic Kidney  Disease
Biomedicines | Free Full-Text | A Single Oral Dose of Diclofenac Causes Transition of Experimental Subclinical Acute Kidney Injury to Chronic Kidney Disease

Can diclofenac damage kidneys? - Quora
Can diclofenac damage kidneys? - Quora

Biomedicines | Free Full-Text | A Single Oral Dose of Diclofenac Causes  Transition of Experimental Subclinical Acute Kidney Injury to Chronic Kidney  Disease
Biomedicines | Free Full-Text | A Single Oral Dose of Diclofenac Causes Transition of Experimental Subclinical Acute Kidney Injury to Chronic Kidney Disease

Topical Nonsteroidal Anti-inflammatory Drugs and Nephrotoxicity: Is There a  Safer Option?
Topical Nonsteroidal Anti-inflammatory Drugs and Nephrotoxicity: Is There a Safer Option?

NSAIDs in CKD: Are They Safe? - American Journal of Kidney Diseases
NSAIDs in CKD: Are They Safe? - American Journal of Kidney Diseases

Mitigative effect of caffeine against diclofenac-induced hepato-renal damage  and chromosomal aberrations in male albino rats | BMC Complementary  Medicine and Therapies | Full Text
Mitigative effect of caffeine against diclofenac-induced hepato-renal damage and chromosomal aberrations in male albino rats | BMC Complementary Medicine and Therapies | Full Text

NSAIDs and blood pressure medicines | Healthify
NSAIDs and blood pressure medicines | Healthify

PDF] Diclofenac-Induced Kidney Damage in Wistar Rats: Involvement of  Antioxidant Mechanism | Semantic Scholar
PDF] Diclofenac-Induced Kidney Damage in Wistar Rats: Involvement of Antioxidant Mechanism | Semantic Scholar