Tuesday, January 07, 2020

Researchers study new immunogenic properties of already existing anti-cancer drugs

The world scientific community is waging a difficult and prolonged war on cancer. New research in the field of immunogenic cell death can extend the area of drugs application and ensure patients' protection from relapse after therapy.

Cancer treatment is not just the removal of the tumor cells from the body, and chemotherapy. The doctors' aim is to provide a scenario that would prevent tumor cells from proliferating and causing a new disease.

For many years, scientists at the Lobachevsky State University of Nizhny Novgorod and the University of Ghent (Belgium) have been engaged in research aimed to minimize the harm to the body after cancer treatment and have been looking for new approaches to treating cancer patients. 

The project, supported by a grant from the Russian Science Foundation and headed by Dmitry Krys'ko, leading researcher of the Lobachevsky University's Institute of Biology and Biomedicine, professor at Ghent University, has yielded its first major results.

According to Professor Dmitry Krys'ko, the existing anti-cancer therapy (chemotherapy, radiation therapy and photodynamic therapy) causes great damage to the body as a whole, while his team's research is aimed at the stimulation of immunogenic cell death, which not only minimizes the damage, but also enhances the efficacy of treatment by involving the body's resources in the fight against cancer.

In this study, we tested some drugs for anticancer therapy based on photodynamic treatment and investigated their new immunogenic properties. We can say that not only the external impact will be used to fight cancer, but also the body itself will engage in the fight by triggering the reactions of the adaptive immune response.

The concept of immunogenic cell death (ICD) includes a programmed death of cancer cells with subsequent release of molecules that give a danger signal to the immune system. We tested the drugs that are already used in cancer therapy, and enhanced the action of these agents."

Dmitry Krys'ko, leading researcher of the Lobachevsky University's Institute of Biology and Biomedicine, professor at Ghent University

The study employed a number of methods and approaches that were used in in vitro and in vivo experiments. At the laboratories of Lobachevsky University and the University of Ghent, researchers studied how substances accumulate in the cell, analyzed cell death types when cells were exposed to photosensitizers, and revealed molecular mechanisms of the phenomena that occur to the cells in the process of their death.

"In this study, we examined the cellular-level response of dendritic cells (immune system components) in their interaction with cancer cells that were exposed to photodynamic therapy (PDT) and proved that photodynamic therapy can activate the body's own immune response," said Victoria Turubanova, research assistant of the Department of General and Medical Genetics at the UNN Institute of Biology and Biomedicine.

The researchers have examined additional aspects of the use of existing drugs for developing new cancer protocols based on the stimulation of the immune system. Such variants of therapy reduce the risk of metastasis and enhance the effectiveness of the patient's recovery.

A series of experiments on laboratory mice was performed, resulting in an important conclusion that the cellular vaccine prepared from dying cancer cells protects the mouse from cancer by preventing tumor development in the body.

Based on the results obtained, the researchers have published their article "Immunogenic cell death induced by a new photodynamic therapy based on Photosens and Photodithazine" in the BMC Journal for ImmunoTherapy of Cancer (with the impact factor of 8.67), which describes new variants of photosensitizers that cause immunogenic cell death of cancer cells.

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Monday, February 11, 2019

Mexican Doctor Found 100% Cure For Cervical Cancer & Human Papillomavirus

It's a medical breakthrough unlike any other, one that effectively puts an end to cervical cancer among women.

After 20 painstaking years of research, a Mexican scientist has finally developed a cure to eliminate 100 percent human papillomavirus and prevent the spread of cervical cancer among women.

Human papillomavirus (or HPV) is very common is widespread all over the world. There are over 100 variants of HPV of which at least 14 can cause cervical cancer (CCU), which is quickly becoming a leading cause for death among women cancer patients worldwide, according to the World Health Organization (WHO).

But thanks to the tireless, two-decade long effort of the research team,  there is now a therapy that eliminates 100% of HPV.

What's remarkable about this research is it doesn't have any collateral damage on the human body. According to the research, this therapy has no side effects. "Unlike other treatments, it only eliminates damaged cells and does not affect healthy structures. Therefore, it has great potential to decrease the death rate from cervical cancer," she explained.

If humanity is one day successful in eliminating all forms of cancer, it will be thanks to a large part by the efforts of this team.

Dr. specializes in the study of photodynamic therapy in fighting HPV and early detection and 100% elimination of cervical cancer. And after 20 years of her research in the field, she has finally tweaked the therapy enough to get maximum result.

THIS IS ONLY FOR INFORMATION, ALWAYS CONSULT YOU PHYSICIAN BEFORE HAVING ANY PARTICULAR FOOD/ MEDICATION/EXERCISE/OTHER REMEDIES.                                    PS- THOSE INTERESTED IN RECIPES ARE FREE TO  VIEW MY BLOG-                                                                                           https://gseasyrecipes.blogspot.com/       

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Thursday, June 20, 2013

Novel molecule to treat cancer shows promise

Combating certain types of cancer using photodynamic therapy could become less expensive in the near future with a novel, indigenously-synthesised molecule showing promising results in studies conducted in vitro.

The molecule is a photosensitiser and a derivative of porphyrin. It was found to be three times more efficient than a similar, commercially available US Food and Drug Administration-approved drug, according to Dr. Ch. Mohan Rao, Director, Centre for Cellular and Molecular Biology (CCMB), Hyderabad which carried out the experiments in collaboration with National Institute of Inter-Disciplinary Science and Technology (NIIST)  and Rajiv Gandhi Centre for Biotechnology, both located in Thiruvananthapuram.

Explaining the importance of photodynamic therapy, he said normally a cancer drug would kill any dividing cell and as a result new cells required for hair and nails growth, throat and stomach lining also get destroyed. But in photodynamic therapy which targets certain types of cancer, including skin and stomach, the molecule gets accumulated in cancer cells. When exposed to light, it generates toxic substance which would destroy only the cancer cells. "Therefore you can locally control and treat it", he added.
After it is given, the molecule would be retained for 24 to 48 hours by the cancer cells and would cause toxicity when irradiated with specific wavelength of light. 

Under the project launched with funding from the Department of Science and Technology, the synthesised molecule penetrated into cells more efficiently than the commercially available one. Subsequent to in vitro experiments, similar results were obtained in animal studies too. The water-soluble molecule destroys the cancer cells by enhancing apoptosis.He said clinical trials to test the toxicity and efficacy would be taken up after getting permission from the government.
Dr. Rao said the molecule could also be used for imaging since it penetrates into the cell’s nucleus. It could be used as NMR contrast agent.

Another advantage with the molecule was that near infra-red light could be used. Therefore the depth of penetration would be less and it would cause less damage as mere exposure to light would not be harmful to normal cells.

He said it was also being studied whether the synthesised molecule could also be used for treatment of eye-related disorders, particularly diabetic retinopathy.

Other scientists who collaborated in the project are: Dr. K. Sridhar Rao, Dr. B. Madhuri from CCMB and Dr. D. Ramaiah and Dr. T.K. Chandrashekar from NIIST (National Interdisciplinary Institute of Science and Technology) Thiruvananthapuram

Molecules collected in cancer cells destroy them on exposure to light.




ps- this is only for information, always consult you physician before having any particular food/ medication/exercise/other remedies.




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