Thursday, November 25, 2021

New therapy shows promising results for advanced lung cancer treatment

A team of scientists has found a new combination therapy, developed for the first line treatment of advanced non-squamous non-small-cell lung cancer, to improve progression-free survival (PFS) of the patients in a trial involving 1,202 people.

“This is the first phase III trial to report on the combination of chemotherapy, antiangiogenic treatment and immunotherapy as first line treatment for advanced non-squamous NSCLC,” said study lead author Professor Martin Reck, chief oncology physician, Department of Thoracic Oncology, Lung Clinic Grosshansdorf, Germany.

“The trial met its co-primary endpoint of PFS and the preliminary results of the co-primary endpoint of overall survival (OS), although immature, look encouraging,” Prof Reck added.

The phase III IMpower150 trial enrolled 1,202 patients who were randomised to one of three arms: chemotherapy plus atezolizumab; chemotherapy plus atezolizumab plus bevacizumab; or chemotherapy plus bevacizumab.

The scientific rationale behind using the combinations was that Bevacizumab may enhance the ability of atezolizumab to restore anti-cancer immunity by inhibiting vascular endothelial growth factor (VEGF)-related immunosuppression and other mechanisms, while chemotherapy may induce immune responses.

The chemotherapy used in the trial was carboplatin plus paclitaxel. Atezolizumab is a monoclonal antibody that inhibits programmed death-ligand 1 (PD-L1), while bevacizumab is a biologic antiangiogenic drug.

“There was a significant and clinically relevant improvement in progression-free survival favouring the addition of atezolizumab to bevacizumab and chemotherapy. The results show that there is a way to improve the efficacy of platinum-based chemotherapy in patients with advanced non-squamous NSCLC. There were no new safety signals or toxicity issues with this combination so it appears to be a feasible approach for this group of patients,” Prof Reck said.

Commenting on the treatment, Prof Solange Peters, Head of Medical Oncology, Department of Oncology, Centre Hospitalier Universitaire Vaudois (CHUV), Lausanne, Switzerland, said: “Immunotherapy is a standard of care treatment after platinum-based chemotherapy in patients with advanced NSCLC. Frontline immunotherapy alone is beneficial in those with a high PD-L1 expression, who make up less than a third of NSCLC patients.

“The combination of immunotherapy and platinum-based chemotherapy showed positive response rates in unselected non-squamous patients (without PD-L1 selection) in a hypothesis-generating phase II trial, which led to US Food and Drug Administration (FDA) approval,” she added.

“IMpower150 is the first phase III randomised trial to formally uate the combination of immunotherapy and chemotherapy versus chemotherapy frontline,” she continued.

“The backbone therapy includes bevacizumab which might, by targeting VEGF, facilitate the immune response and the trafficking of T cells. Median PFS for the immunotherapy arm in patients without EGFR mutations or ALK rearrangements had a promising hazard ratio of 0.62 and a median PFS improvement of a little less than two months.”

According to Peters, the benefit of immunotherapy is best observed at later time points. “When you look at the 12-month PFS, you double the number of patients who have not progressed from 18% without immunotherapy to 37% when you add the immunotherapy,” she said.

“This is very, very promising. Doubling PFS at one year is something we have not seen with any targeted therapy in unselected patients to date.”

The results of the trial were recently presented at the ESMO Immuno Oncology Congress 2017.

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Monday, February 10, 2020

New combination treatment could help fight advanced melanoma

A study by researchers at the UCLA Jonsson Comprehensive Cancer Center suggests that using an immunotherapy drug called NKTR-214, also known as bempegaldesleukin, in combination with an infusion of anti-tumor immune cells, or T cells, may produce a stronger immune response that could help fight advanced melanoma.

When tested in mice with melanoma tumors that were unlikely to stimulate an immune response, the approach increased the number of anti-tumor immune cells, and those immune cells lived longer and functioned better than the standard therapy, empowering the cells to destroy the tumor.


Background
Adoptive cell therapy is a type of immunotherapy that has had promising results for treating people with advanced cancers. The approach involves extracting and harvesting immune cells from a patient and engineering them in the laboratory to attack specific antigens on the surface of tumors. One challenge is that it requires giving patients interleukin 2, a protein signaling molecule in the immune system, to promote the development and expansion of the infused immune cells. But interleukin 2 can also activate cells to suppress the immune system, and because it is highly toxic, it can have serious adverse side effects.

Researchers have been seeking ways to produce large number of immune cells without exposing patients to those negative side effects -- including by combining adoptive cell therapy with other treatments.


Method

Researchers used mice to test NKTR-214 in combination with adoptive cell therapy. Using bioluminescence imaging, the researchers tracked the movement of T cells in the mice that received the combination therapy. The team observed an expansion of T cells in the spleen, the organ that helps accelerate the activation and expansion of T cells throughout the body. The T cells then migrated to the tumor, where they continued to have a long-lasting effect. The in vivo expansion and T cell accumulation in tumors was greatly improved when using NKTR-214 compared to using interleukin-2.


Impact
While immunotherapy has changed the face of cancer treatment for people with advanced cancers, it still only works in a small subset of patients. The results of the UCLA study suggest that using NKTR-214 in combination with adoptive cell therapy could be effective for more people with advanced solid tumors.


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Tuesday, February 06, 2018

Methylene blue can be used for treating malaria

Methylene blue — used as medication and dye — could act as a safe anti-malarial that kills malaria parasites at an unprecedented rate, results from a clinical trial have revealed. Every year, malaria infects more than 200 million people and causes more than 430,000 deaths across the globe.  Methylene blue is a blue dye that is used in laboratories to distinguish dead cells from living cells. Malaria patients who were treated with a combination of the blue dye and artemisinin-based combination therapy were cured of the disease within two days, the study, published in a journal showed. The patients no longer transmitted the parasite if they are bitten again by a mosquito. 

“Methylene blue is very promising, because it can prevent the spread of malaria within such a short time following treatment,” said a researcher.  “There are also indications that methylene blue also works well in species that are resistant to certain medicines,” he added.

Malaria parasites are increasingly resistant to the artemisinin-based combination therapies that are currently used.


In addition, these medicines do very little to stop the spread of malaria, as the parasites remain in the blood for a long time, with the chance that other mosquitoes are infected if they feed on the patient.  However, adding the dye to the anti-malaria medicine ensured that patients no longer infected other mosquitoes, within as little as 48 hours.  Patients who were not given methylene blue were able to infect other mosquitoes for at least a week.  “We noted that the male parasites disappeared from the bloodstream more quickly than the female parasites,” he said, adding that the dye was found to be safe and was tolerated well by patients.  However, it turns the urine bright blue, which could stop people from using it, the researchers said. 


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