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Nephrotoxin Microinjection in Zebrafish to Model Acute Kidney Injury
Published on: July 17, 2016
Acute Kidney Injury Associated with Anticancer Therapies: Small Molecules and Targeted Therapies
Jaya Kala1, Teresa Joseph1,2, Marta Pirovano3,4
1Division of Nephrology, Department of Internal Medicine, University of Texas Health Science Center-McGovern Medical School, Houston, Texas.
Abstract:
Molecular targeted therapy has revolutionized cancer treatment by significantly improving patient survival compared with standard conventional chemotherapies. The use of these drugs targets specific molecules or targets, which block growth and spread of cancer cells. Many of these therapies have been approved for use with remarkable success in breast, blood, colorectal, lung, and ovarian cancers. The advantage over conventional chemotherapy is its ability to deliver drugs effectively with high specificity while being less toxic. Although known as "targeted," many of these agents lack specificity and selectivity, and they tend to inhibit multiple targets, including those in the kidneys. The side effects usually arise because of dysregulation of targets of the inhibited molecule in normal tissue. The off-target effects are caused by drug binding to unintended targets. The on-target effects are associated with inhibition toward the pathway reflecting inappropriate inhibition or activation of the intended drug target. Early detection and correct management of kidney toxicities is crucial to preserve kidney functions. The knowledge of these toxicities helps guide optimal and continued utilization of these potent therapies. This review summarizes the different types of molecular targeted therapies used in the treatment of cancer and the incidence, severity, and pattern of nephrotoxicity caused by them, with their plausible mechanism and proposed treatment recommendations.
Insights
Molecular targeted therapies improve cancer survival but can cause kidney damage. Early detection and management of these toxicities are crucial for preserving kidney function during cancer treatment.
Area of Science:
- Oncology
- Nephrology
- Pharmacology
Background:
- Molecular targeted therapy offers improved cancer survival over conventional chemotherapy.
- These therapies target specific molecules to inhibit cancer cell growth and spread.
- Approved for various cancers, they offer higher specificity and lower toxicity than traditional chemotherapy.
Purpose of the Study:
- To review molecular targeted therapies in cancer treatment.
- To summarize the incidence, severity, and patterns of associated nephrotoxicity.
- To discuss plausible mechanisms and propose management recommendations for kidney toxicities.
Main Methods:
- Literature review of molecular targeted therapies and their renal toxicities.
- Analysis of reported cases of nephrotoxicity associated with these agents.
- Synthesis of information on mechanisms of toxicity and treatment strategies.
Main Results:
- Molecular targeted therapies, while effective, can cause significant kidney toxicities.
- Nephrotoxicity arises from both on-target and off-target effects.
- Understanding toxicity patterns is key for managing kidney function.
Conclusions:
- Molecular targeted therapies are revolutionizing cancer care but necessitate vigilant monitoring for renal side effects.
- Effective management of nephrotoxicity is essential for sustained treatment and improved patient outcomes.
- This review provides a foundation for understanding and addressing kidney toxicities in targeted cancer therapy.
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