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Elevated copper and oxidative stress in cancer cells as a target for cancer treatment
Anshul Gupte1, Russell J Mumper
1Department of Pharmaceutical Sciences, College of Pharmacy, University of Kentucky, Lexington, KY 40536-0082, USA.
Abstract:
As we gain a better understanding of the factors affecting cancer etiology, we can design improved treatment strategies. Over the past three to four decades, there have been numerous successful efforts in recognizing important cellular proteins essential in cancer growth and therefore these proteins have been targeted for cancer treatment. However, studies have shown that targeting one or two proteins in the complex cancer cascade may not be sufficient in controlling and/or inhibiting cancer growth. Therefore, there is a need to examine features which are potentially involved in multiple facets of cancer development. In this review we discuss the targeting of the elevated copper (both in serum and tumor) and oxidative stress levels in cancer with the aid of a copper chelator d-penicillamine (d-pen) for potential cancer treatment. Numerous studies in the literature have reported that both the serum and tumor copper levels are elevated in a variety of malignancies, including both solid tumor and blood cancer. Further, the elevated copper levels have been shown to be directly correlated to cancer progression. Enhanced levels of intrinsic oxidative stress has been shown in variety of tumors, possibly due to the combination of factors such as elevated active metabolism, mitochondrial mutation, cytokines, and inflammation. The cancer cells under sustained ROS stress tend to heavily utilize adaptation mechanisms and may exhaust cellular ROS-buffering capacity. Therefore, the elevated copper levels and increased oxidative stress in cancer cells provide for a prospect of selective cancer treatment.
Insights
Targeting elevated copper and oxidative stress in cancer may offer a new treatment strategy. D-penicillamine, a copper chelator, shows promise for selective cancer therapy by addressing these key factors.
Area of Science:
- Oncology
- Biochemistry
- Molecular Biology
Background:
- Cancer treatment often targets specific proteins, but this can be insufficient for complex diseases.
- Elevated copper levels (serum and tumor) and increased oxidative stress are common in various cancers.
- These factors are linked to cancer progression and survival.
Purpose of the Study:
- To review the potential of targeting elevated copper and oxidative stress for cancer treatment.
- To explore the use of d-penicillamine (d-pen), a copper chelator, as a therapeutic agent.
Main Methods:
- Literature review of studies on copper levels, oxidative stress, and cancer.
- Analysis of the role of copper and reactive oxygen species (ROS) in cancer development.
- Examination of d-penicillamine's mechanism as a copper chelator.
Main Results:
- Elevated copper levels correlate with cancer progression across malignancies.
- Increased oxidative stress in tumors arises from metabolic factors, mitochondrial dysfunction, and inflammation.
- Cancer cells' reliance on ROS-buffering mechanisms presents a vulnerability.
Conclusions:
- Targeting both elevated copper and oxidative stress offers a promising strategy for cancer therapy.
- D-penicillamine's ability to chelate copper may provide a selective approach to cancer treatment.
- Further research into copper-targeted therapies could lead to improved patient outcomes.
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