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Spontaneous regression of neoplasms: new possibilities for immunotherapy
1Department of Pathology, Keck School of Medicine, University of Southern California, Los Angeles, USA. Bodey18@aol.com
Abstract:
In mammalian cells, neoplastic transformation is directly associated with the expression of oncogenes, loss or simple inactivation of the function of tumour suppressor genes and the production of certain growth factors. Genes for suppression of the development of the neoplastic cellular immunophenotype, as well as inhibitory growth factors, have regulatory functions within the normal processes of cell division and differentiation. Telomerase (a ribonucleoprotein polymerase) activation is frequently detected in various neoplasms. Telomerase activation is regarded as essential for cell immortalisation and its inhibition may result in spontaneous regression of neoplasms. This phenomenon of neoplasms occurs when the malignant tissue mass partially or completely disappears without any treatment or as a result of a therapy considered inadequate to influence systemic neoplastic growth. This definition makes it clear that the term 'spontaneous regression' applies to neoplasms in which the overall malignant disease is not necessarily cured and to cases where the regression may not be complete or permanent. A number of possible mechanisms of spontaneous regression are reviewed, with the understanding that no single mechanism can completely account for this phenomenon. The application of the newest immunological, molecular biological and genetic insights for more individualised and adequate antineoplastic immunotherapy (alternative biotherapy) is also discussed.
Insights
Neoplastic transformation involves oncogenes and tumor suppressor genes. Telomerase activation is key to cell immortalization and may lead to spontaneous neoplasm regression, with potential for new immunotherapies.
Area of Science:
- Oncology
- Molecular Biology
- Immunology
Background:
- Neoplastic transformation is linked to oncogenes, tumor suppressor gene inactivation, and growth factors.
- Normal cell division and differentiation involve regulatory genes and inhibitory growth factors.
- Telomerase activation is common in neoplasms and essential for cell immortalization.
Purpose of the Study:
- To review mechanisms of spontaneous neoplasm regression.
- To discuss the role of telomerase inhibition in regression.
- To explore advanced immunotherapy strategies for cancer treatment.
Main Methods:
- Literature review of spontaneous regression mechanisms.
- Analysis of telomerase's role in cell immortalization and neoplasm regression.
- Discussion of current and emerging immunotherapeutic approaches.
Main Results:
- Telomerase activation is frequently detected in various neoplasms and is crucial for cell immortalization.
- Inhibition of telomerase may lead to spontaneous regression of neoplasms.
- Spontaneous regression can be incomplete or non-permanent and may occur without adequate therapy.
Conclusions:
- No single mechanism fully explains spontaneous neoplasm regression.
- Telomerase inhibition presents a potential therapeutic strategy.
- Integrating immunological, molecular, and genetic insights can advance personalized antineoplastic immunotherapy.