Saturday, December 28, 2019

Proton therapy for cancer significantly reduces risk of severe side effects as against traditional radiation

Proton therapy, as it turns out, has fewer side effects on cancer patients when compared to the traditional radiation treatment. While the cure rates of both the treatment methods are almost similar, radiation leads to much more frequent unplanned hospitalisations, says a recent study.

This study, conducted by the Perelman School of Medicine at the University of Pennsylvania, analysed if the cancer patients going through radiation therapy alongside chemo faced severe side effects in a span of 90 days.

In its findings, proton therapy, when used as a replacement to radiation, proved to be effective in slashing cancer treatment-related side effects by almost two-thirds. The study is an expanded analysis of the largest review of its kind that got published in JAMA Oncology.

"This is exciting because it shows that proton therapy offers a way for us to reduce the serious side effects of chemo-radiation and improve patient health and wellbeing without sacrificing the effectiveness of the therapy," said the study's lead author Brian Baumann, MD, an adjunct assistant professor of Radiation Oncology at Penn and an assistant professor of Radiation Oncology at Washington University School of Medicine in St Louis.


Proton therapy has a few key differences from traditional photon radiation. Photon radiation typically uses multiple X-ray beams to deliver radiation to the tumor target but unavoidably deposits radiation in the normal tissues beyond the target, potentially damaging those tissues as the beam exits the body.

Proton therapy is an FDA-approved alternative radiation treatment that directs positively charged protons at the tumor. They deposit the bulk of the radiation dose to the target with almost no residual radiation delivered beyond the target, reducing damage to surrounding healthy tissue and potentially reducing side effects.

For this study, researchers evaluated side effects including pain or difficulty swallowing, difficulty breathing, nausea, or diarrhea, among others. Researchers focused on grade-three effects or higher, defined as side effects severe enough for patients to be hospitalised.

They evaluated data on 1,483 cancer patients receiving radiation and chemotherapy at the same time. Of these, 391 patients received proton therapy, while 1,092 underwent photon treatment.

All patients had non-metastatic cancer and were undergoing treatment intended to be curative. Patients with brain cancer, head and neck cancer, lung cancer, gastrointestinal cancer, and gynecologic cancer treated with concurrent chemo-radiation were included.

The primary outcome was whether or not patients experienced adverse side effects that were grade-three or higher within 90 days of treatment. In the proton group, only 11.5 per cent of patients (45) did, compared to 27.6 per cent of patients (301) in the photon group.

Weighted analysis of both patient groups, which controlled for other factors that may have led to differences between the patient groups, found that the relative risk of severe toxicity was two-thirds lower for proton patients compared to photon patients.

"We know from our clinical experience that proton therapy can have this benefit, but even we did not expect the effect to be this sizeable," said senior author James Metz, MD, chair of Radiation Oncology, leader of the Roberts Proton Therapy Center at Penn, and a member of Penn's Abramson Cancer Center.

Importantly, overall survival and disease-free survival were similar between the two groups, suggesting that the reduction in toxicity seen with proton therapy did not come at the cost of reduced effectiveness.

Researchers say these results hint at the promise of proton therapy as a way to deliver intensified systemic therapy and/or higher dose radiation therapy more safely, which could improve survival outcomes. In fact, data showed that while older patients with more comorbidities were more likely to receive proton therapy, they experienced fewer side effects.

"This tells us proton therapy may allow older patients to receive the most effective combined treatments, and that older, sicker patients can more safely be included in clinical trials that use proton therapy," Baumann said.

While researchers say further research is needed, they point out that this study is the best information we have so far as randomised controlled trials continue to prove difficult to complete. 


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Wednesday, August 03, 2016

Proton therapy for better cancer treatment

In order to provide precision-based treatment for patients ailing from stage 3 and 4 cancers, Apollo Hospitals is set to incorporate `proton therapy', an advanced form of radiation therapy that uses beams of high-energy protons rather than the traditional X-rays to destroy cancerous cells.

The facility, that is to cost of Rs 650 crore, will enable proton therapy to be used to enable targeted radiation for patients affected with lung, brain, esophagus, head and neck cancers.

"We placed the order for proton therapy in 2013 and it will be installed in our Chennai branch by 2018. The system costs about half-a-billion dollars (in the US) and the procurement process takes three years," said Preetha Reddy , executive vicechairperson, Apollo Hospitals group. She added that Apollo would be the first hospital group to incorporate this facility in south east Asia.

Differentiating protonbased radiation therapy from the traditional photonbased radiation in vogue, she said that in the former, radiation does not burn healthy tissues.

However, the cost can be a dampener -the treatment may cost around Rs 20 lakh in India.


Dr Prathap C Reddy , chairman, Apollo Hospitals, sought to downplay the price factor, saying proton therapy in select centres in Europe is known to cost as much as Rs 5 crore. "Only a few countries in Europe, besides Japan and South Korea, can boast of proton therapy facility. The cost of treatment in India would be a fraction of what it costs there," he said.


 He added that in the next three years, the hospital would make an investment of Rs 1,200 crore in its oncology division. Incidentally , cancer treatment currently generates 20 to 22 per cent of the income for the hospital group.

What is proton therapy?

Beams of high-energy protons are aimed at cancerous cells, which attack their DNA and induce destruction. While X-rays tend to affect surrounding healthy tissues, protons target only affected cells. Protons deposit their energy at a precise and measurable location that can be calibrated. This phenomenon is called Bragg peak and allows significantly reducing negative effects of the t
reatment.


 this is only for your information, kindly take the advice of your doctor for medicines, exercises and so on.
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https://gseasyrecipes.blogspot.com. feel free to view for easy, simple and healthy recipes

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