Showing posts with label immunotherapy. Show all posts
Showing posts with label immunotherapy. Show all posts

Wednesday, July 14, 2010

Four New Research Studies Describe Experimental Immunotherapies for Alzheimer's

/PRNewswire/ -- The primary therapeutic target in Alzheimer's disease has been the beta amyloid peptide, which clusters outside cells in the brain to form sticky clumps known as plaques. Recently, more attention has been given to the tau protein, which aggregates inside the brain cells of people with Alzheimer's, forming neurofibrillary tangles. Precisely how these proteins interact in causing the disease is unclear.

Four new research studies reported today at the Alzheimer's Association International Conference on Alzheimer's Disease 2010 (AAICAD 2010) in Honolulu, HI describe experimental immunotherapies for Alzheimer's two of which target tau directly and two of which may reduce tau even though their primary target was beta amyloid.

"It is very important that we have a variety of therapeutic targets in the fight against Alzheimer's disease," said William Thies, PhD, Chief Medical and Scientific Officer at the Alzheimer's Association. "The more opportunities that we investigate to intervene and change the relentless and progressive course of Alzheimer's, the better chance that we will find something that works."

"Importantly, these studies teach us more not only about tau-targeted therapies but also about the progression of Alzheimer's disease," Thies added. "It may be that amyloid changes in the brain happen early in the disease and tau-related changes happen 'downstream' where they have a more direct effect on cognitive function. However, this is still to be determined."

"We need more basic research about what causes Alzheimer's, as well as therapy-related studies, to fill the front end of the drug pipeline and get us the better treatments and prevention strategies that we so desperately need to head off the epidemic of Alzheimer's," Thies said.

Beta Amyloid Immunotherapy with Bapineuzumab in Alzheimer's May Also Reduce Tau

Bapineuzumab (Janssen Alzheimer Immunotherapy and Pfizer) is an antibody to the beta amyloid plaques that are associated with Alzheimer's disease, and is currently in Phase 3 testing as a treatment for mild to moderate Alzheimer's. An abnormal form of the tau protein known as phospho-tau (P-tau) forms into tangles which are the other established lesions in the brain of people with Alzheimer's. The amount of P-tau in cerebrospinal fluid (CSF) is believed to be a marker of active loss of brain cells in people with Alzheimer's; prior studies have shown increases in P-tau in people with mild cognitive impairment who later develop Alzheimer's. P-tau was studied as a therapeutic biomarker in the Phase 2 clinical trials of bapineuzumab.

The pooled exploratory analysis reported at AAICAD 2010 by Kaj Blennow, MD, PhD, of the University of Gothenburg, Sweden, and colleagues included a subgroup of participants from two randomized, multicenter, double-blind, placebo-controlled, multiple-ascending-dose studies conducted in the United States (Study 201) or in the United Kingdom and Finland (Study 202). Study 201 enrolled 35 patients (20 bapineuzumab, 15 placebo) in the CSF substudy, and Study 202 enrolled 11 patients (7 bapineuzumab, 4 placebo) in the CSF substudy. CSF was collected at baseline and 2 weeks after the week 52 infusion.

The researchers found that Study 201 showed a trend (p=0.0564) towards a decrease in CSF P-tau in bapineuzumab-treated compared with placebo-treated cases. In Study 202, no significant treatment effects were seen. When they combined data from both studies, they found a statistically significant decrease (p=0.0270) in P-tau in bapineuzumab-treated compared with placebo-treated patients.

"These observations suggest that immunotherapy treatment targeting amyloid may also alter neurodegenerative processes that occur later in the disease process and that are more directly associated with loss of function," Blennow said. "However, this was a small study and these findings need to be confirmed."

Another Immunization Therapy for Alzheimer's with Beta Amyloid Also Reduces Tau

AN1792 (Elan) showed early promise as a beta amyloid immunotherapy for Alzheimer's. In 2002, a Phase 2 trial reported that about 6 percent of participants developed serious brain inflammation symptoms resembling meningoencephalitis. The trial was stopped as was further clinical development. However, participants in the first AN1792 trial continue to be observed.

Delphine Boche, PhD, of the University of Southampton's School of Medicine, UK, and colleagues studied the levels of beta amyloid and phospho-tau in six regions of cerebral grey matter that are affected by Alzheimer's pathology in the brains of 10 people with Alzheimer's who were immunized with AN1792 and compared the findings with 28 unimmunized Alzheimer cases. They had previously shown a reduction of beta amyloid in people treated with AN1792 and now looked to see if it had any effect on tau.

The researchers found statistically significant reductions in tau and beta amyloid in the immunized patients compared with untreated Alzheimer's. The reduction in tau appeared to be specifically in the dendrites, which are the branched projections of a neuron that conduct the electrochemical stimulation received from other nerve cells to the cell body. In contrast, tau in the bodies of the nerve cells, where the tangles form, seemed unaffected.

"The findings show that treatment aimed at beta amyloid may also modify tau changes in Alzheimer's," Boche said. "The lack of change in tau in the bodies of nerve cells might explain why the people in the original AN1792 trial didn't experience an improvement in cognitive functioning even though we saw amyloid clearance."

"This study demonstrates a link between these two Alzheimer's-related proteins, which has been suspected but not clearly demonstrated in the human brain. The findings give us more basic information about the interaction between beta amyloid and tau in Alzheimer's and may clarify how the disease progresses in the brain," Boche said.

Tau Antibodies Reduce Brain Tangles in Alzheimer-Model Mice

Allal Boutajangout, PhD, of the New York University School of Medicine, and colleagues previously reported that active tau immunization clears tau tangles from the brain and reduces or prevents functional impairments in two different tangle-model mice. In a study reported at AAICAD 2010, they assessed the efficacy of passive immunization for 13 weeks with the PHF1 antibody to tau in a mouse model of Alzheimer's tangles.

The researchers found that weekly injections of PHF1 in the tangle mice reduced the amount of tau aggregates in the brain and decreased functional impairment. The treated mice performed better than controls on the traverse beam task (p<0.03), and had 58 percent less tau pathology in the hippocampus (p=0.02). Plasma levels of PHF1 were inversely related to levels of tau pathology in two brain sections - the brain stem (p<0.01) and motor cortex (p=0.06) - indicating that higher dose of antibodies may have a greater therapeutic effect.

"Targeting hyperphosphorylated tau by immunotherapy is emerging as a promising approach to treat tau-related diseases such as Alzheimer's disease and frontotemporal dementia," Boutajangout said. "Further studies are needed to determine the feasibility of this approach with other tau antibodies and in different tangle models that more closely resemble Alzheimer's."

Alzheimer's Tau Vaccine Shows Promise in a New Rat Model of the Disease

Scientists led by Prof. Michal Novak, MDV, PhD, DSc, of the Institute of Neuroimmunology, Slovak Academy of Sciences, Bratislava, Slovakia and Co-Founder and Chief Scientific Officer of the Axon Neuroscience GmbH, Vienna, Austria, have developed a new transgenic rat model of Alzheimer's that, according to Novak, for the first time expresses non-mutated tau and generates Alzheimer's neurofibrillary tangles. Axon is using the rat for early, preclinical development of an Alzheimer's tau vaccine.

In a study reported at AAICAD 2010, Axon transgenic rats were immunized with phospho-tau. The scientists measured changes in functions related to behavior and learning, levels of phosphorylated tau in cerebrospinal fluid, and level of tangle pathology in the rat brains. They found that tau immunization significantly reduced the amount of insoluble tau, prevented development of neurofibrillary tangles, and produced a statistically significant delay of progressive impairment in learning behaviors.

"The Axon Alzheimer Rat may offer new avenues in developing the next generation of therapies and diagnostics for Alzheimer's," Novak said.

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Thursday, April 29, 2010

FDA Approves a Cellular Immunotherapy for Men With Advanced Prostate Cancer

/PRNewswire/ -- The U.S. Food and Drug Administration today approved Provenge (sipuleucel-T), a new therapy for certain men with advanced prostate cancer that uses their own immune system to fight the disease.


Provenge is indicated for the treatment of asymptomatic or minimally symptomatic prostate cancer that has spread to other parts of the body and is resistant to standard hormone treatment.

Prostate cancer is the second most common type of cancer among men in the United States, behind skin cancer, and usually occurs in older men. In 2009, an estimated 192,000 new cases of prostate cancer were diagnosed and about 27,000 men died from the disease, according to the National Cancer Institute.

"The availability of Provenge provides a new treatment option for men with advanced prostate cancer, who currently have limited effective therapies available," said Karen Midthun, M.D., acting director of the FDA's Center for Biologics Evaluation and Research.

Provenge is an autologous cellular immunotherapy, designed to stimulate a patient's own immune system to respond against the cancer. Each dose of Provenge is manufactured by obtaining a patient's immune cells from the blood, using a machine in a process known as leukapheresis. To enhance their response against the cancer, the immune cells are then exposed to a protein that is found in most prostate cancers, linked to an immune stimulating substance. After this process, the patient's own cells are returned to the patient to treat the prostate cancer. Provenge is administered intravenously in a three-dose schedule given at about two-week intervals.

The effectiveness of Provenge was studied in 512 patients with metastatic hormone treatment refractory prostate cancer in a randomized, double-blind, placebo-controlled, multicenter trial, which showed an increase in overall survival of 4.1 months. The median survival for patients receiving Provenge treatments was 25.8 months, as compared to 21.7 months for those who did not receive the treatment.

Almost all of the patients who received Provenge had some type of adverse reaction. Common adverse reactions reported included chills, fatigue, fever, back pain, nausea, joint ache and headache. The majority of adverse reactions were mild or moderate in severity. Serious adverse reactions, reported in approximately one quarter of the patients receiving Provenge, included some acute infusion reactions and stroke. Cerebrovascular events, including hemorrhagic and ischemic strokes, were observed in 3.5 percent of patients in the Provenge group compared with 2.6 percent of patients in the control group.

Provenge is manufactured by Seattle-based Dendreon Corp.

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Wednesday, October 29, 2008

Drinking Milk to Ease Milk Allergy?

HHH Note: This study is promising. It does, however, come with the warning NOT to try this at home.

Giving children with milk allergies increasingly higher doses of milk over time may ease, and even help them completely overcome, their allergic reactions, according to the results of a study led by the Johns Hopkins Children’s Center and conducted jointly with Duke University.

Despite the small number of patients in the trial – 19 – the findings are illuminating and encouraging, investigators say, because this is the first-ever double-blinded and placebo-controlled study of milk immunotherapy. In the study, the researchers compared a group of children receiving milk powder to a group of children receiving placebo identical in appearance and taste to real milk powder. Neither the patients nor the investigators knew which child received which powder, a rigorous research setup that minimizes the chance for error and bias.

The findings of the study are reported online ahead of print, Oct. 28, in the Journal of Allergy & Clinical Immunology

“Our findings suggest that oral immunotherapy gradually retrains the immune system to completely disregard or to better tolerate the allergens in milk that previously caused allergic reactions,” says Robert Wood, M.D., senior investigator on the study and director of Allergy & Immunology at Hopkins Children’s. “Albeit preliminary and requiring further study, these results suggest that oral immunotherapy may be the closest thing yet to a ‘true’ treatment for food allergy.”

Currently, food allergy management involves complete avoidance of the trigger foods, waiting for the child to outgrow the allergy or treating allergic reactions if and when they occur. The latter could be dangerous, investigators say, because these common foods are difficult to avoid and some reactions can be severe and even life-threatening.

In a report released Oct. 22, the Centers for Disease Control and Prevention estimates that food allergies are on the rise with three million children in the United States now having at least one food allergy, an 18 percent jump from 10 years ago. Milk allergy is the most prevalent type of food allergy.

“Given that the quality of life of a child with a food allergy is comparable to the quality of life of a child with diabetes, we urgently need therapies that go beyond strict food avoidance or waiting for the child to outgrow the allergy,” Wood says.

Researchers followed allergic reactions over four months among 19 children with severe and persistent milk allergy, 6 to 17 years of age. Of the 19 patients, 12 received progressively higher doses of milk protein, and seven received placebo. At the beginning of the study, the children were able to tolerate on average only 40 mg (.04 ounces or a quarter of a teaspoon) of milk.

At the end of the four-month study, both groups were given milk powder as a “challenge” to see what dose would cause reaction after the treatment. The children who had been receiving increasingly higher doses of milk protein over a few months were able to tolerate a median dose of 5, 140 mg (over 5 ounces) of milk without having any allergic reaction or with mild symptoms, such as mouth itching and minor abdominal discomfort. Those who had been getting the placebo remained unable to tolerate doses higher than the 40 mg of milk powder without having an allergic reaction. In the group receiving milk protein, the lowest tolerance dose was 2, 540 mg (2.5 ounces) and the highest was 8,140 mg (8 ounces). Lab tests showed the children who regularly drank or ate milk had more antibodies to milk in their blood, yet were able to better tolerate milk than those who took the placebo. Researchers say, tolerance in children treated with milk continued to build over time, and recommend that these children continue to consume milk daily to maintain their resistance. The researchers caution that it remains unclear whether the children would maintain their tolerance once they stop consuming milk regularly. “It may very well be that this tolerance is lost once the immune system is no longer exposed to the allergen daily,” Wood says.

The Hopkins group is currently studying oral immunotherapy in children with egg allergy to determine whether increasingly higher doses of egg protein can help resolve their allergy, and have recently started another study of milk immunotherapy.

Wood emphasizes the findings require further research and advises parents and caregivers not to try oral immunotherapy without medical supervision.

Other Hopkins investigators in the study: Justin Skripak, M.D., Hannah Rowley, R.D., Nga Brereton, R.D., Susan Oh, R.D., Robert Hamilton, M.D., Elizabeth Matsui, M.D. M.H.S.

Duke University co-investigators: Scott Nash, M.D., and A. Wesley Burks, M.D.

The research was funded by the National Institutes of Health and The Eudowood Foundation.

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