An Investigation into Cell-Free DNA in Different Common Cancers

Diagnosis is the most important step in different diseases, especially in cancers and blood malignancies. There are different methods in order to better diagnose of cancer, but many of them are invasive and also, some of them are not useful for immediate diagnosis. Cell-free DNA (cfDNA) or liquid bi...

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Published in:Molecular biotechnology Vol. 66; no. 12; pp. 3462 - 3474
Main Authors: Nafar, Samira, Hosseini, Kamran, Shokrgozar, Negin, Farahmandi, Amir Yousef, Alamdari-Palangi, Vahab, Saber Sichani, Ali, Fallahi, Jafar
Format: Journal Article
Language:English
Published: New York Springer US 01.12.2024
Springer Nature B.V
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ISSN:1073-6085, 1559-0305, 1559-0305
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Abstract Diagnosis is the most important step in different diseases, especially in cancers and blood malignancies. There are different methods in order to better diagnose of cancer, but many of them are invasive and also, some of them are not useful for immediate diagnosis. Cell-free DNA (cfDNA) or liquid biopsy easily accessible in peripheral blood is one of the non-invasive prognostic biomarkers in various areas of cancer management. In fact, amounts of cfDNA in serum or plasma can be used for diagnosis. In this review, we have considered some cancers such as hepatocellular carcinoma, lung cancer, breast cancer, and hematologic malignancies to compare the various methods of cfDNA diagnosis. Highlights The result of early diagnosis along with correct treatment decreases morbidity. Cell-free DNA is a non-invasive way of diagnosing the presence of tumor cells in earlier stages of cancer. DNA released from both solid tumors and hematologic malignancies is usable in this method. Genetic feature of cancer cells at different stages can help in prescribing the amount and type of drugs.
AbstractList Diagnosis is the most important step in different diseases, especially in cancers and blood malignancies. There are different methods in order to better diagnose of cancer, but many of them are invasive and also, some of them are not useful for immediate diagnosis. Cell-free DNA (cfDNA) or liquid biopsy easily accessible in peripheral blood is one of the non-invasive prognostic biomarkers in various areas of cancer management. In fact, amounts of cfDNA in serum or plasma can be used for diagnosis. In this review, we have considered some cancers such as hepatocellular carcinoma, lung cancer, breast cancer, and hematologic malignancies to compare the various methods of cfDNA diagnosis.
Diagnosis is the most important step in different diseases, especially in cancers and blood malignancies. There are different methods in order to better diagnose of cancer, but many of them are invasive and also, some of them are not useful for immediate diagnosis. Cell-free DNA (cfDNA) or liquid biopsy easily accessible in peripheral blood is one of the non-invasive prognostic biomarkers in various areas of cancer management. In fact, amounts of cfDNA in serum or plasma can be used for diagnosis. In this review, we have considered some cancers such as hepatocellular carcinoma, lung cancer, breast cancer, and hematologic malignancies to compare the various methods of cfDNA diagnosis. Highlights The result of early diagnosis along with correct treatment decreases morbidity. Cell-free DNA is a non-invasive way of diagnosing the presence of tumor cells in earlier stages of cancer. DNA released from both solid tumors and hematologic malignancies is usable in this method. Genetic feature of cancer cells at different stages can help in prescribing the amount and type of drugs.
Diagnosis is the most important step in different diseases, especially in cancers and blood malignancies. There are different methods in order to better diagnose of cancer, but many of them are invasive and also, some of them are not useful for immediate diagnosis. Cell-free DNA (cfDNA) or liquid biopsy easily accessible in peripheral blood is one of the non-invasive prognostic biomarkers in various areas of cancer management. In fact, amounts of cfDNA in serum or plasma can be used for diagnosis. In this review, we have considered some cancers such as hepatocellular carcinoma, lung cancer, breast cancer, and hematologic malignancies to compare the various methods of cfDNA diagnosis.Diagnosis is the most important step in different diseases, especially in cancers and blood malignancies. There are different methods in order to better diagnose of cancer, but many of them are invasive and also, some of them are not useful for immediate diagnosis. Cell-free DNA (cfDNA) or liquid biopsy easily accessible in peripheral blood is one of the non-invasive prognostic biomarkers in various areas of cancer management. In fact, amounts of cfDNA in serum or plasma can be used for diagnosis. In this review, we have considered some cancers such as hepatocellular carcinoma, lung cancer, breast cancer, and hematologic malignancies to compare the various methods of cfDNA diagnosis.
Diagnosis is the most important step in different diseases, especially in cancers and blood malignancies. There are different methods in order to better diagnose of cancer, but many of them are invasive and also, some of them are not useful for immediate diagnosis. Cell-free DNA (cfDNA) or liquid biopsy easily accessible in peripheral blood is one of the non-invasive prognostic biomarkers in various areas of cancer management. In fact, amounts of cfDNA in serum or plasma can be used for diagnosis. In this review, we have considered some cancers such as hepatocellular carcinoma, lung cancer, breast cancer, and hematologic malignancies to compare the various methods of cfDNA diagnosis.HighlightsThe result of early diagnosis along with correct treatment decreases morbidity.Cell-free DNA is a non-invasive way of diagnosing the presence of tumor cells in earlier stages of cancer.DNA released from both solid tumors and hematologic malignancies is usable in this method.Genetic feature of cancer cells at different stages can help in prescribing the amount and type of drugs.
Author Farahmandi, Amir Yousef
Alamdari-Palangi, Vahab
Fallahi, Jafar
Hosseini, Kamran
Shokrgozar, Negin
Nafar, Samira
Saber Sichani, Ali
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  surname: Nafar
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  organization: Medical Genetic Department, Shiraz University of Medical Science
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  surname: Hosseini
  fullname: Hosseini, Kamran
  organization: Department of Molecular Medicine, School of Advanced Medical Sciences and Technologies, Shiraz University of Medical Sciences
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  surname: Shokrgozar
  fullname: Shokrgozar, Negin
  organization: Hematology Research Center, Shiraz University of Medical Science
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  givenname: Amir Yousef
  surname: Farahmandi
  fullname: Farahmandi, Amir Yousef
  organization: Department of English, Shiraz University of Medical Sciences
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  givenname: Vahab
  surname: Alamdari-Palangi
  fullname: Alamdari-Palangi, Vahab
  organization: Department of Molecular Medicine, School of Advanced Medical Sciences and Technologies, Shiraz University of Medical Sciences
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  surname: Saber Sichani
  fullname: Saber Sichani, Ali
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  orcidid: 0000-0002-8485-9247
  surname: Fallahi
  fullname: Fallahi, Jafar
  email: jafarf80@gmail.com
  organization: Department of Molecular Medicine, School of Advanced Medical Sciences and Technologies, Shiraz University of Medical Sciences
BackLink https://www.ncbi.nlm.nih.gov/pubmed/38071680$$D View this record in MEDLINE/PubMed
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CitedBy_id crossref_primary_10_1159_000541173
crossref_primary_10_3390_cancers17142366
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Issue 12
Keywords Cell-free DNA
Biomarker
Cancer
Language English
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SubjectTerms Biochemistry
Biological Techniques
Biomarkers
Biomarkers, Tumor - blood
Biomarkers, Tumor - genetics
Biopsy
Biotechnology
Blood
Blood cancer
blood serum
Breast cancer
Breast carcinoma
breast neoplasms
Cancer
Cell Biology
Chemistry
Chemistry and Materials Science
Circulating Tumor DNA - blood
Circulating Tumor DNA - genetics
Deoxyribonucleic acid
Diagnosis
Disease management
DNA
Hepatocellular carcinoma
hepatoma
Human Genetics
Humans
Invasiveness
Liquid Biopsy - methods
Liver cancer
Lung cancer
Lung carcinoma
lung neoplasms
Malignancy
Morbidity
Neoplasms - blood
Neoplasms - diagnosis
Neoplasms - genetics
Peripheral blood
Protein Science
Review Paper
Solid tumors
Tumor cells
Tumors
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