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Tumor-Specific Growth Factor (TSGF): A Futuristic Tumor Biomarker in Early Diagnosis of Cancer
Bhagyalakshmi Nair1, Anisha Kuriakose1, Bilha Baby1
1Department of Pharmacognosy, Amrita School of Pharmacy, Amrita VishwaVidyapeetham, AIMS Health Science Campus, Ponekkara P.O., Kochi, Kerala 682041, India.
Abstract:
Despite the significant improvement in the treatment modalities, cancer is one of the fastest-growing chronic disease conditions all over the world. Genetic and Epigenetic alterations in the normal physiology of the cell are the key factor for tumor development. These changes can trigger the production of abnormal protein expressions through stimulation of different signaling pathways and can deeply affect normal cell growth and proliferation. Any altered protein expression, genetic variation, micro-RNA or post-translational protein modifications that indicate tumorigenesis can act as an early signal termed as biomarker. Cancer, being a multistep process with accumulating genetic and epigenetic alterations, could be detected early with suitable biomarkers. There are several proteins such as AFP, CA-125, PSA, troponin, CEA, osteopontin, CA 19-9 that act as biomarkers which help in early detection, prognosis, and monitoring of disease progression, a hunt for newer biomarkers with higher specificity and sensitivity is still ongoing. Tumor-specific growth factor (TSGF) is one such budding and prevailing tumor biomarker used for the early-stage detection of several types of carcinomas. TSGF is a gene that helps in tumor angiogenesis and gets released during the preliminary stages from cancer cells that ensure the vascular proliferation of the same. In this review, the clinical investigations of TSGF in different kinds of malignancy is discussed in detail and suggests the possibility of using TSGF as a biomarker in early diagnosis of cancer.
Insights
Tumor-specific growth factor (TSGF) shows promise as a novel biomarker for early cancer detection. This review explores TSGF
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- Cancer remains a leading global chronic disease, driven by genetic and epigenetic alterations.
- Altered cellular signaling pathways lead to abnormal protein expression, impacting cell growth and proliferation.
- Biomarkers, including altered proteins and genetic variations, are crucial for early cancer detection and monitoring.
Purpose of the Study:
- To review the clinical investigations of Tumor-Specific Growth Factor (TSGF) in various malignancies.
- To evaluate the potential of TSGF as a novel biomarker for early cancer diagnosis.
Main Methods:
- Literature review of clinical studies on TSGF.
- Analysis of TSGF's role in tumor angiogenesis and release from cancer cells.
- Discussion of TSGF's clinical relevance in different cancer types.
Main Results:
- TSGF is implicated in promoting tumor angiogenesis and is released in early cancer stages.
- Existing biomarkers like AFP, CA-125, and PSA have limitations in specificity and sensitivity.
- TSGF demonstrates potential as an early-stage indicator for several carcinomas.
Conclusions:
- TSGF is a promising emerging biomarker for early cancer detection.
- Further clinical investigation supports the use of TSGF in diagnosing various malignancies.
- TSGF offers potential for improved cancer screening and early intervention strategies.
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