Oncotarget

Oncotarget

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Oncotarget episodes

  • Experimental Triple Therapy Improves Survival in Glioblastoma Mouse Model
    Researchers at Brown University have developed a combination treatment that significantly increases survival in mice with glioblastoma (GBM), a highly aggressive and treatment-resistant brain cancer. The approach uses a new class of drugs called imipridones along with radiation therapy and standard chemotherapy. This triple therapy, known as IRT, was recently detailed in a study published in Oncotarget.
    Understanding Glioblastoma and the Need for Better Therapies
    Glioblastoma is the most common and aggressive malignant brain tumor in adults. It grows quickly and is difficult to treat, often leading to poor outcomes. Most patients survive less than 15 months after diagnosis, even when treated with surgery, radiation, and the chemotherapy drug temozolomide (TMZ). This treatment may slow the disease, but it does not typically stop it.
    Full blog - https://www.oncotarget.org/2025/06/04/experimental-triple-therapy-improves-survival-in-glioblastoma-mouse-model/
    Paper DOI - https://doi.org/10.18632/oncotarget.28707
    Correspondence to - Wafik S. El-Deiry - [email protected]
    Video short - https://www.youtube.com/watch?v=Q_mXy8mana0
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    Keywords - cancer, glioblastoma multiforme, IDH, ONC201, ONC206, MGMT, temozolomide, radiotherapy
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    6 min
  • Targeting PCNA-Androgen Receptor Interaction Suppresses Prostate Cancer Cell Growth
    BUFFALO, NY - June 4, 2025 – A new #research paper was #published in Volume 16 of Oncotarget on May 20, 2025, titled “Targeting PCNA/AR interaction inhibits AR-mediated signaling in castration resistant prostate cancer cells."
    In this study, authors Shan Lu and Zhongyun Dong from the University of Cincinnati College of Medicine investigated how interfering with a protein interaction could reduce prostate cancer growth. Their study based on prostate cancer cells shows that blocking the link between PCNA, a protein important for DNA repair, and the androgen receptor (AR), which drives prostate cancer growth, can slow down cancer cell multiplication. This discovery could lead to a new treatment for patients with advanced prostate cancer, particularly those no longer responding to hormone therapy.
    Prostate cancer is one of the most common cancers in men. Many patients eventually become resistant to hormone treatment. In this advanced stage, called castration-resistant prostate cancer (CRPC), tumors continue to grow by using either the full-length androgen receptor (AR-FL) or altered versions called AR variants (AR-Vs). This study shows that the interaction between AR and PCNA helps both AR-FL and AR-Vs remain active, supporting cancer cell survival and growth.
    The researchers identified a new region in the AR that binds to PCNA. They developed a small peptide, R9-AR-PIP, to mimic this region and block the AR-PCNA connection. They found that this peptide reduced AR’s ability to bind DNA and lowered the levels of key genes involved in cancer cell growth. Importantly, the peptide was effective against both types of AR, including the variant forms that are especially challenging in CRPC.
    “We identified a second PIP-box (PIP-box592) in the DNA binding domain of AR and found that dihydrotestosterone enhances the binding of full-length AR (AR-FL) but not a constitutively active variant (AR-V7) to PCNA.”
    They also tested a small molecule, PCNA-I1S, which interferes with PCNA’s ability to move to the cell nucleus and interact with AR. This molecule showed similar effects as the peptide, reducing AR activity and stopping cancer cell growth. Together, these findings suggest that targeting PCNA/AR interactions could be a promising strategy to fight CRPC, especially in patients with limited treatment options.
    One key result was that both the peptide and the small molecule reduced the levels of cyclin A2, a protein that helps cells divide and is often overexpressed in CRPC. Since this protein is linked to patients' poor outcomes, its reduction could be especially beneficial.
    This study improves our understanding of how prostate cancer continues to grow even after hormone treatments fail. By blocking a crucial helper of the androgen receptor, researchers have uncovered a new way to potentially slow or stop the disease. Further studies in animal models are needed, but this approach could lead to more effective treatments for men with advanced prostate cancer.
    DOI - https://doi.org/10.18632/oncotarget.28722
    Correspondence to - Zhongyun Dong - [email protected]
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    Keywords - cancer, PCNA, androgen receptor, PCNA inhibitors, AR splicing variants, CRPC
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    4 min
  • Blocking PRDX1 Protein May Improve Chemotherapy Response in Ovarian Cancer
    BUFFALO, NY - June 3, 2025 – A new #research paper was #published in Volume 16 of Oncotarget on May 19, 2025, titled “PRDX1 protects ATM from arsenite-induced proteotoxicity and maintains its stability during DNA damage signaling."
    In this study, led by first author Reem Ali and corresponding author Dindial Ramotar from Hamad Bin Khalifa University in Qatar, researchers discovered that a protein called PRDX1 helps maintain the stability of ATM, a key protein involved in repairing damaged DNA, especially when cells are under stress from arsenite exposure. The study found that without PRDX1, cells lose their ability to repair DNA and become more sensitive to chemotherapy. This finding suggests that targeting PRDX1 could improve the success of some cancer treatments.
    PRDX1 is already known for its role in protecting cells from oxidative damage, but this study shows it also plays a role in the DNA repair process. ATM is an essential protein that detects breaks in DNA and starts the repair process. When PRDX1 is missing, ATM is rapidly lost, especially when cells are exposed to arsenite, a toxic substance found in the environment. Without ATM, the DNA repair system fails, leaving cells more vulnerable to damage.
    By using both human cell lines and clinical samples from ovarian cancer patients, the team showed that high levels of PRDX1, along with ATM and MRE11 (another DNA repair protein), were linked to tumors' aggressive features and lower patient survival rates. This pattern suggests that tumors with high PRDX1 may resist chemotherapy by increasing their DNA repair capacity. On the other hand, removing PRDX1 weakened the repair system and made cancer cells more responsive to DNA-damaging platinum drugs.
    The study also showed that combining low doses of arsenite with drugs that either block ATM or damage DNA caused a much higher rate of cancer cell death in cells that lacked PRDX1. These results suggest a new treatment approach: lowering PRDX1 levels to make cancer cells more sensitive to DNA-damaging platinum therapies already in use. This highlights PRDX1 not only as a protector of cell function but also as a potential weak point in cancer cells.
    “As such, we propose that small molecule inhibitors of PRDX1, or single nucleotide polymorphisms that compromise PRDX1 function, in combination with low doses of arsenite can be exploited to treat chemo-resistant tumours.”
    These findings open the door for the use of PRDX1 as a biomarker to predict treatment response and as a promising target for new combination therapies. For patients with ovarian cancer and potentially other tumors, adjusting PRDX1 levels may help overcome drug resistance and improve outcomes.
    DOI - https://doi.org/10.18632/oncotarget.28720
    Correspondence to: Dindial Ramotar - [email protected]
    Video short - https://www.youtube.com/watch?v=suOhF7mPlNQ
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    Keywords - cancer, redox signaling, homologous recombination, protein interaction, cell cycle, protein modification
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    5 min
  • Immune Side Effects of Liver Cancer Therapy Studied in Latin American Patients
    BUFFALO, NY - May 23, 2025 – A new #research paper was #published in Volume 16 of Oncotarget on May 19, 2025, titled “Immune-mediated adverse events following atezolizumab and bevacizumab in a multinational Latin American cohort of unresectable hepatocellular carcinoma."
    The study, led by first authors Leonardo Gomes da Fonseca from Hospital das Clínicas, Universidade de São Paulo, Brazil, and Federico Piñero from Hospital Universitario Austral, Argentina, investigated how patients with advanced liver cancer in Latin America respond to a widely used immunotherapy combination. The researchers found that although a minority of patients developed immune-related side effects, these events did not significantly impact overall survival. Their findings highlight the importance of early recognition and careful management of such side effects in real-world clinical settings.
    Liver cancer is a leading cause of cancer deaths worldwide, with limited treatment options for patients diagnosed at an advanced stage. Immunotherapy, particularly the combination of atezolizumab and bevacizumab, has become a standard approach. However, these treatments can sometimes trigger the body’s immune system to attack healthy organs, leading to what are called immune-related adverse events, or irAEs. Until now, little data existed on how frequently these events occur in Latin American patients and whether they impact treatment outcomes.
    The researchers followed 99 patients from Argentina, Brazil, Chile, and Colombia, most of whom had cirrhosis or underlying liver disease. They received atezolizumab and bevacizumab for a median duration of six months. The researchers reported that only 18% of the patients experienced immune-related side effects, most commonly affecting the liver (hepatitis) and thyroid (thyroiditis). Most of these cases were mild or moderate, and half of them resolved completely within a month. Only eight patients needed treatment with steroids to control the immune response.
    Importantly, the occurrence of immune-related side effects did not affect how long patients survived after starting treatment. The median survival was the same—18.5 months—for both those who experienced irAEs and those who did not. This result suggests that while irAEs require careful management, they may not reduce the overall benefits of immunotherapy.
    Another significant finding was that patients with higher levels of alpha-fetoprotein (AFP), a protein often elevated in liver cancer, were more likely to experience these side effects. This information could help clinicians identify patients who need closer control during treatment.
    “Notably, baseline alpha-fetoprotein (AFP) values ≥400 ng/ml were significantly associated with the development of irAEs.”
    The study also points to key differences between clinical trial results and real-world experiences. While clinical trials report higher rates of side effects, this real-world data showed a lower incidence, possibly due to less intensive monitoring or differences in how side effects are documented in everyday practice.
    In summary, this study highlights that patients require ongoing vigilance and individualized care when treating liver cancer with immunotherapy. It provides valuable information to healthcare providers in Latin America and other regions with similar patient populations, aiming to improve outcomes while minimizing risks.
    DOI - https://doi.org/10.18632/oncotarget.28721
    Correspondence to - Federico Piñero - [email protected]
    To learn more about Oncotarget, please visit https://www.oncotarget.com.
    5 min
  • Engineered Proteins Show Promise in Stopping Glioblastoma Invasion
    Scientists have engineered small, targeted proteins that can penetrate brain cancer cells and prevent them from invading healthy tissue, offering a promising new approach to treating glioblastoma multiforme (GBM), one of the deadliest forms of brain cancer. This strategy was developed by researchers at the University of Nevada, Reno, and published recently in Oncotarget.
    The Challenge of Treating Glioblastoma Multiforme
    Glioblastoma is an aggressive and fast-growing brain tumor that infiltrates healthy brain tissue, making complete surgical removal nearly impossible. Standard treatments like chemotherapy and radiation can slow its growth but rarely prevent it from returning. One major reason for this invasiveness is a group of enzymes known as matrix metalloproteinases (MMPs), which break down surrounding tissue to allow cancer cells to spread. Among these, MMP-9 plays a particularly important role in driving tumor progression and resisting existing therapies.
    Attempts to block MMPs using small-molecule drugs have failed in clinical trials due to problems like poor selectivity and harmful side effects. Researchers have been searching for safer, more targeted methods to interfere with these enzymes and limit glioblastoma’s spread.
    The Study: Engineered Proteins to Inhibit Tumor Invasion
    In the study called “Effect of TIMPs and their minimally engineered variants in blocking invasion and migration of brain cancer cells,” researchers Elham Taheri and Maryam Raeeszadeh-Sarmazdeh investigated tissue inhibitors of metalloproteinases (TIMPs), which are natural blockers of MMPs, and their engineered modified versions made to work better. Specifically, the team studied TIMP-1, TIMP-3, along with two engineered molecules, mTC1 and mTC3, in laboratory cell models of GBM.
    Full blog - https://www.oncotarget.org/2025/05/21/engineered-proteins-show-promise-in-stopping-glioblastoma-invasion/
    Paper DOI - https://doi.org/10.18632/oncotarget.28691
    Correspondence to - Maryam Raeeszadeh-Sarmazdeh - [email protected]
    Video short - https://www.youtube.com/watch?v=tdBlkOX50D8
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    Keywords - cancer, TIMP minimal variants, glioblastoma multiforme (GBM), brain cancer, MMP inhibitors
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    5 min
  • Combining Radiation and Immunotherapy Shows Promise for Bladder Cancer
    BUFFALO, NY - May 21, 2025 – A new #review was #published in Volume 16 of Oncotarget on May 19, 2025, titled “Advancements in bladder cancer treatment: The synergy of radiation and immunotherapy."
    Researchers from the University of California, Irvine, led by Nazmul Hasan, reviewed recent clinical and scientific advances in combining radiation therapy with immunotherapy for bladder cancer. The article summarizes growing evidence that this combined approach may strengthen the immune response and improve long-term disease control. This strategy is especially important for patients who are not candidates for surgery or who respond poorly to conventional treatments.
    Bladder cancer is a serious and frequent condition, particularly affecting older men. Traditional treatments—surgery, chemotherapy, and radiation—can be effective, but they often fail to prevent cancer reappearance in advanced cases. The review explores how combining radiation and immunotherapy could improve outcomes by helping the immune system detect and destroy cancer cells more effectively.
    Radiation therapy destroys cancer cells and triggers the release of tumor signals that attract immune cells. Immunotherapy, including drugs like pembrolizumab and nivolumab, helps the immune system work better by blocking proteins that allow cancer to evade detection. Used together, these treatments may produce a stronger, more widespread anti-tumor effect, even at distant sites not directly targeted by radiation.
    The review discusses several clinical trials that support this approach. One phase II study reported that combining radiation with the immunotherapy drug durvalumab led to promising survival rates and manageable side effects. Another trial in Australia tested pembrolizumab with radiation and chemotherapy, resulting in high tumor control and extended patient survival. However, the review also points out that other trials showed serious side effects when high doses or multiple immunotherapy drugs were used at once.
    "Joshi et al. performed a phase II study to determine the safety and efficacy of combining radiation therapy with durvalumab, a PD-L1 inhibitor, in patients who were ineligible for surgery or cisplatin-based chemotherapy."
    While the combination approach is promising, the authors emphasize that more research is needed to refine this treatment strategy. One major challenge is determining which patients are most likely to benefit. Future studies should focus on identifying reliable biomarkers, such as tumor mutation burden or immune activity, to guide personalized treatment plans.
    This review highlights the potential of combining radiation and immunotherapy to improve outcomes for bladder cancer patients. With continued research and careful treatment design, this approach could offer new treatment options for those facing aggressive or hard-to-treat forms of the disease.
    DOI - https://doi.org/10.18632/oncotarget.28723
    Correspondence to - Nazmul Hasan - [email protected]
    Video short - https://www.youtube.com/watch?v=AxrZhIUXrOQ
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    Keywords - cancer, bladder cancer, immunotherapy, radiation, microenvironment, abscopal
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    4 min
  • New Ultra-Sensitive DNA Blood Test for Detecting Residual Cancer in B-cell Lymphoma Patients
    BUFFALO, NY – May 19, 2025 – A new #research paper was #published in Volume 16 of Oncotarget on May 9, 2025, titled “Analytical validation of a circulating tumor DNA assay using PhasED-Seq technology for detecting residual disease in B-cell malignancies.”
    In this study, a team from Foresight Diagnostics led by first author Nina Klimova and corresponding author Laura Hyland validated a new DNA-based blood test designed to detect minimal residual disease (MRD) in patients with B-cell cancers. This assay uses a highly sensitive method called Phased Variant Enrichment and Detection Sequencing (PhasED-Seq) to find tiny fragments of tumor DNA in the blood. Its ultra-sensitive detection capabilities offer a powerful tool for early cancer detection, monitoring treatment response, and predicting cancer reappearance.
    B-cell lymphomas, such as diffuse large B-cell lymphoma (DLBCL), are among the most prevalent blood cancers. Although many patients respond to initial treatment, up to 40% relapse. Standard monitoring methods such as imaging scans often miss low levels of cancer cells, creating a need for more precise tools. This study introduces a non-invasive blood test that improves the detection of MRD, a critical factor in guiding follow-up care and early intervention.
    The test works by tracking unique groups of mutations known as phased variants in tumor DNA. These mutations are more specific to cancer and allow for highly accurate identification of tumor fragments in the bloodstream. The PhasED-Seq-based MRD assay was tested on three types of samples. First, blood plasma from healthy individuals was used to confirm the test does not give false positives. Second, researchers created controlled samples by mixing tumor DNA from lymphoma patients with healthy DNA to measure how sensitive and precise the test is. Finally, blood samples from patients with B-cell lymphoma were used to compare the new test to an existing method.
    Across all sample types, the PhasED-Seq-based MRD assay demonstrated exceptional performance—capable of detecting fewer than one cancer DNA molecule per million normal DNA fragments. It also demonstrated a very low false positive rate and over 96% reproducibility across different laboratory conditions. Compared to an existing method, the new PhasED-Seq assay showed more than 90% agreement in positive results and nearly 78% agreement in negative results. In cases where the tests disagreed, the new method aligned more closely with actual clinical outcomes, including whether patients relapsed or stayed in remission.
    “The background error rate of the PhasED-Seq-based MRD assay was 1.95E-08, or 1.95 mutant molecules in 100 million informative molecules.”
    The findings support the use of PhasED-Seq-based MRD assays in routine clinical practice. It could be especially useful for identifying patients who need additional treatment even when imaging results appear normal. This aligns with updated clinical guidelines that encourage the use of blood-based DNA tests to supplement traditional scans in lymphoma care.
    This study offers strong evidence that the PhasED-Seq-based MRD assay is a precise, reliable, and clinically relevant tool. By detecting signs of cancer earlier and more accurately, it may help clinicians tailor treatments to individual patients and improve long-term outcomes in B-cell malignancies.
    DOI - https://doi.org/10.18632/oncotarget.28719
    Correspondence to - Laura Hyland - [email protected]
    Video short - https://www.youtube.com/watch?v=8hdh3G5zvlc
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    5 min
  • Blood Type A Identified as Potential Breast Cancer Risk Factor
    BUFFALO, NY - May 14, 2025 – A new #review paper was #published in Volume 16 of Oncotarget on May 9, 2025, titled “Relationship between ABO blood group antigens and Rh factor with breast cancer: A systematic review and meta-analysis."
    A comprehensive study, led by first authors Rahaf Alchazal from Yarmouk University and Khaled J. Zaitoun from Johns Hopkins University School of Medicine and Jordan University of Science and Technology, examined the potential link between blood type and breast cancer. The research team conducted a systematic review and meta-analysis of 29 previously published studies, involving more than 13,000 breast cancer patients and over 717,000 controls.
    “Researchers searched for studies on breast cancer patients and ABO blood groups across four major databases: PubMed, Scopus, Web of Science, and Google.“
    Breast cancer is the most common cancer among women worldwide. Identifying risk factors is vital for early detection and prevention. While many studies have explored lifestyle and genetic causes, this analysis focused on the ABO blood group system. By pooling global data, the researchers found that blood type A was the most common among breast cancer patients and was significantly associated with an 18% increased risk compared to type O.
    The study did not find a significant association between breast cancer and blood types B, AB, or Rh factor. Although the results do not prove causation, they point to a biological pattern worth further investigation. Blood group antigens are proteins found on the surface of cells, including breast tissue. These molecules may influence how cancer develops and spreads by interacting with the immune system or affecting cell behavior.
    This meta-analysis is the most extensive review to date on this topic, based on studies conducted across Asia, Europe, Africa, and the Americas. While previous research found unclear conclusions, this large-scale evaluation provides stronger evidence for a possible connection between blood type A and breast cancer risk.
    Researchers note that regional differences, genetic diversity, and study quality may affect individual results. Nevertheless, the overall trend supports considering blood type A as a potential risk marker. This insight could help shape screening guidelines, encouraging earlier or more frequent checkups for women with this blood type.
    Further research is needed to understand why blood type A may play a role in cancer development. Future studies may explore genetic mechanisms, immune responses, and other biological pathways. These efforts could lead the way for more personalized cancer prevention and care strategies.
    DOI - https://doi.org/10.18632/oncotarget.28718
    Correspondence to - Khaled J. Zaitoun - [email protected]
    Video short - https://www.youtube.com/watch?v=BQFVtreaetI
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    Keywords - cancer, breast cancer, cancer risk factors, blood group antigens, tumor
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    4 min
  • METTL3 Drives Oral Cancer by Blocking Tumor-Suppressing Gene
    BUFFALO, NY - May 9, 2025 – A new #research paper was #published in Oncotarget, Volume 16, on May 8, 2025, titled “METTL3 promotes oral squamous cell carcinoma by regulating miR-146a-5p/SMAD4 axis."
    In this study, researchers Jayasree Peroth Jayaprakash, Pragati Karemore, and Piyush Khandelia from the Birla Institute of Technology and Science, India, discovered that a molecule called METTL3 contributes to the development and spread of oral squamous cell carcinoma (OSCC). The study shows that METTL3 increases the levels of a small RNA molecule called miR-146a-5p, which blocks SMAD4, a key tumor-suppressing gene. These findings help explain why oral cancers are difficult to treat and may offer a new target for more effective therapies.
    Oral squamous cell carcinoma is a common and aggressive cancer affecting the mouth and throat. It has a high death rate, mainly due to late detection, treatment resistance, and the cancer’s ability to invade nearby tissues. In this study, the researchers focused on METTL3, an enzyme that adds chemical tags known as m6A marks to RNA, which change how genetic information is used by cells. They found that METTL3 is unusually active in OSCC cells, causing an increase in miR-146a-5p. This molecule, in turn, blocks the function of SMAD4, which helps control how cells grow and die in our bodies.
    “METTL3, the primary m6A RNA methyltransferase, is significantly upregulated in OSCC cells leading to increased global m6A levels.”
    When METTL3 was reduced or chemically blocked, miR-146a-5p levels dropped and SMAD4 levels increased. This shift slowed the growth of cancer cells, increased their death, and made them less likely to spread. When researchers reintroduced miR-146a-5p or lowered SMAD4 levels again, the cancer-promoting behavior returned. These results show that the METTL3–miR-146a-5p–SMAD4 pathway plays a key role in OSCC.
    The findings open up new possibilities for treatment. Drugs that block METTL3 or miR-146a-5p or that restore SMAD4 could slow or stop tumor growth. One such drug, STM2457, which targets METTL3, has already shown promise in lab studies. As research progresses, targeting this molecular pathway may offer a new strategy in treating OSCC.
    This discovery improves our understanding of how OSCC develops and avoids the body’s defenses. By interfering with this newly discovered pathway, future treatments may become more successful, improving survival rates and quality of life for people with this disease.
    DOI - https://doi.org/10.18632/oncotarget.28717
    Correspondence to - Piyush Khandelia - [email protected]
    Video short - https://www.youtube.com/watch?v=o5XuDlcIma8
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    4 min
  • Panitumumab & Low-Dose Capecitabine: Promising Maintenance Therapy for Metastatic Colorectal Cancer
    A recent #study from Assiut University Hospital in Egypt, published in #Oncotarget, presents a promising strategy for patients with metastatic #colorectalcancer (mCRC). The #research introduces a gentler yet effective maintenance therapy that may extend survival, enhance quality of life, and offer a more accessible treatment option for mCRC patients worldwide.
    The Challenge of Treating Metastatic Colorectal Cancer
    Colorectal cancer is one of the most common causes of cancer-related deaths worldwide. When it spreads to other parts of the body—a stage known as mCRC—it becomes much more difficult to treat. At this stage, clinicians often use strong drug combinations like FOLFOX or CAPOX, which mix chemotherapy drugs to stop cancer growth. FOLFOX combines three drugs given intravenously, while CAPOX includes two of the same drugs, with one taken as a pill.
    While effective, these treatments can cause serious side effects. For example, one of the main drugs, oxaliplatin, can lead to nerve damage, making it painful or difficult to use the hands and feet. Fatigue, diarrhea, and other issues are also common. Over time, these side effects may force clinicians to stop or adjust the treatment, even if it is working.
    That is where maintenance therapy comes in. After the cancer is controlled, clinicians often switch to a gentler treatment plan to keep it from returning. The challenge is finding a therapy that continues to work without causing too many side effects, especially in places where access to expensive or intensive treatments is limited.
    Full blog - https://www.oncotarget.org/2025/05/07/panitumumab-and-low-dose-capecitabine-a-promising-maintenance-therapy-for-metastatic-colorectal-cancer/
    Paper DOI - https://doi.org/10.18632/oncotarget.28687
    Correspondence to - Doaa A. Gamal - [email protected]
    Video short - https://www.youtube.com/watch?v=wuPSS0EdK-8
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    Keywords - cancer, Panitumumab, maintenance, colorectal cancer, Capecitabine
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Oncotarget is a primarily oncology-focused, peer-reviewed, open access journal. Papers are published continuously within yearly volumes in their final and complete form and then quickly released to Pubmed.