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Published on: December 26, 2016
Fundamentals of utilizing microbes in advanced cancer therapeutics: current understanding and potential applications
Tashmeen Kaur1, Deepika Sharma1
1Institute of Nano Science and Technology, Mohali, Punjab, India.
Abstract:
One of the biggest health related issues in the twenty-first century is cancer. The current therapeutic platforms have not advanced enough to keep up with the number of rising cases. The traditional therapeutic approaches frequently fail to produce the desired outcomes. Therefore, developing new and more potent remedies is crucial. Recently, investigating microorganisms as potential anti-cancer treatments have garnered a lot of attention. Tumor-targeting microorganisms are more versatile at inhibiting cancer than the majority of standard therapies. Bacteria preferentially gather and thrive inside tumors, where they can trigger anti-cancer immune responses. They can be further trained to generate and distribute anticancer drugs based on clinical requirements using straightforward genetic engineering approaches. To improve clinical outcomes, therapeutic strategies utilizing live tumor-targeting bacteria can be used either alone or in combination with existing anticancer treatments. On the other hand, oncolytic viruses that target cancer cells, gene therapy via viral vectors, and viral immunotherapy are other popular areas of biotechnological investigation. Therefore, viruses serve as a unique candidate for anti-tumor therapy. This chapter describes the role of microbes, primarily bacteria and viruses in anti-cancer therapeutics. The various approaches to utilizing microbes in cancer therapy are discussed and examples of microorganisms that are now in use or that are undergoing experimental research are briefly discussed. We further point out the hurdles and the prospects of microbes-based remedies for cancer treatment.
Insights
Microbes, including bacteria and viruses, show promise as novel anti-cancer therapeutics. These microorganisms can target tumors and stimulate immune responses, offering new hope against cancer.
Area of Science:
- Biotechnology
- Microbiology
- Oncology
Background:
- Cancer remains a significant global health challenge with limitations in current treatments.
- Developing novel and effective anti-cancer therapies is crucial due to rising cancer incidence.
- Microorganisms are emerging as promising candidates for innovative cancer treatment strategies.
Purpose of the Study:
- To explore the role of microbes, specifically bacteria and viruses, in anti-cancer therapeutics.
- To discuss various approaches for utilizing microbes in cancer therapy.
- To highlight the challenges and future prospects of microbe-based cancer treatments.
Main Methods:
- Investigating tumor-targeting bacteria for their ability to inhibit cancer growth and trigger immune responses.
- Exploring genetic engineering of bacteria to produce and deliver anti-cancer drugs.
- Examining the use of oncolytic viruses, viral vectors for gene therapy, and viral immunotherapy.
Main Results:
- Bacteria can selectively accumulate in tumors, initiating anti-cancer immune responses.
- Engineered bacteria can be programmed to deliver therapeutic agents directly to tumors.
- Viruses are recognized as unique candidates for anti-tumor therapy, with applications in oncolysis and immunotherapy.
Conclusions:
- Microbe-based therapies, including bacteria and viruses, offer versatile and potent approaches to cancer treatment.
- Combining microbial therapies with existing treatments may improve clinical outcomes.
- Further research into microbial therapeutics holds significant promise for advancing cancer care.
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