Saturday, November 17, 2012

Drinking green tea with starchy food may help lower blood sugar spikes

In continuation on my update on green tea



Mice fed an antioxidant found in green tea  epigallocatechin-3-gallate, or EGCG  and corn starch had a significant reduction in increase in their blood sugar  blood glucose  levels compared to mice that were not fed the compound, according to Joshua Lambert, assistant professor of food science in agricultural sciences.


The dose of EGCG fed to the mice was equivalent to about one and a half cups of green tea for a human. Lambert, who worked with Sarah C. Forester, postdoctoral fellow, and Yeyi Gu, graduate student, both in food science, said EGCG was most effective when the compound was fed to the mice simultaneously with corn starch. For humans, this may mean that green tea could help them control the typical blood sugar increases that are brought on when they eat starchy foods, like breads and bagels that are often a part of typical breakfasts.


"The spike in blood glucose level is about 50 percent lower than the increase in the blood glucose level of mice that were not fed EGCG," Lambert said. 

Friday, November 16, 2012

Metformin more effective than sulfonylurea in controlling type 2 diabetes

In continuation of my update on Metformin


A Vanderbilt study examining the impact of the two most commonly prescribed oraldiabetes medications on the risk for heart attack, stroke and death has found the drug metformin has benefits over sulfonylurea drugs.

It was important to examine the cardiovascular impact of the more commonly used diabetes drugs after recent controversy surrounded another diabetes medication, rosiglitazone, because it was associated with an increased cardiac risk, said lead author, Christianne L. Roumie, M.D., MPH, assistant professor of Internal Medicine and Pediatrics. Smaller studies pointed to a potential advantage of taking the drug metformin but this study confirms this in a large population.

"We demonstrated that for every 1,000 patients who are using metformin for a year there are two fewer heart attacks, strokes or deaths compared with patients who use sulfonylureas. I think this reinforces the recommendation that metformin should be used as the first medication to treat diabetes," Roumie said.

The researchers looked at the charts of more than 250,000 veterans receiving care in Veterans Health Administration hospitals throughout the United States.



Thursday, November 15, 2012

Scientists show how sorafenib can be dangerous to the heart..

In continuation of my update on sorafenib


Studying mice with the equivalent of a heart attack, researchers found that the drug sorafenib (Nexavar) - which inhibits proteins called tyrosine kinase receptors (RTKs), and is used in kidney and liver cancer treatment - can interfere with heart stem cell activity, affecting the heart's ability to repair itself after injury. The findings suggest that sorafenib and other similar drugs that target these kinds of protein receptors may raise the risk for heart attack for some cancer patients with underlying heart disease, as well as affect the heart's ability to repair damage. By understanding how these cancer drugs can affect the heart, scientists and clinicians may be able to devise new treatment strategies to lessen such potentially damaging effects of often vital cancer drugs.

"The goal is not to take the drug off of the market - it's a very good and useful drug that cancer patients need. We're trying to understand how this cancer drug and others like it can affect the heart, and what types of individuals might be at risk for problems," said senior author Steven Houser, PhD, Professor and Chair of Physiology at Temple University School of Medicine and Director of Temple's Cardiovascular Research Center. "Our results are beginning to provide a clearer picture of some of the potential physiological mechanisms at play."

Ref : http://heartsurgery.templehealth.org/content/news.htm?inCtx4news_id=42&inCtx4view=24

Wednesday, November 14, 2012

Compound in grapes Resveratrol, red wine could be key to fighting prostate cancer

In continuation of my update on Resveratrol

We know that, Resveratrol, a compound found commonly in grape skins and red wine, has been shown to have several beneficial effects on human health, including cardiovascular health and stroke prevention. Now, a University of Missouri researcher has discovered that the compound can make prostate tumor cells more susceptible to radiation treatment, increasing the chances of a full recovery from all types of prostate cancer, including aggressive tumors.

Ref : http://www.andrologyjournal.org/cgi/content/abstract/33/4/752

http://onlinelibrary.wiley.com/doi/10.1111/j.1349-7006.2012.02272.x/abstract;jsessionid=2638CB82B18F3EF652F3261E74A75CCA.d01t02


Tuesday, November 13, 2012

Biologists determine how blind mole rats fight off cancer

In continuation of my update on mole rats..

Biologists at the University of Rochester have determined how blind mole rats fight off cancer-and the mechanism differs from what they discovered three years ago in another long-lived and cancer-resistant mole rat species, the naked mole rat.

The team of researchers, led by Professor Vera Gorbunova and Assistant Professor Andrei Seluanov, found that abnormally growing cells in blind mole rats secrete the interferon beta protein, which causes those cells to rapidly die. Seluanov and Gorbunova hope the discovery will eventually help lead to new cancer therapies in humans. Their findings are being published this week in the Proceedings of the National Academy of Sciences.

Blind mole rats and naked mole rats-both subterranean rodents with long life spans-are the only mammals never known to develop cancer. Three years ago, Seluanov and Gorbunova determined the anti-cancer mechanism in the naked mole rat. Their research found that a specific gene-p16-makes the cancerous cells in naked mole rats hypersensitive to overcrowding, and stops them from proliferating when too many crowd together.

"We expected blind mole rats to have a similar mechanism for stopping the spread of cancerous cells," said Seluanov. "Instead, we discovered they've evolved their own mechanism."

Biologists determine how blind mole rats fight off cancer

Friday, November 9, 2012

New medication lomitapide, shows promise as lipid-lowering therapy for rare cholesterol disorder

Penn researchers have found that,   lomitapide (see structure)  a first-in-class microsomal triglyceride transfer protein (MTP) inhibitor, substantially and stably reduced LDL cholesterol (the "bad" cholesterol) in patients with the orphan disease homozygous familial hypercholesterolemia (HoFH). Lomitapide works by inhibiting MTP, which is required for the production of VLDL,  the precursor to LDL.

The current study was an open-label trial that comprised a six-month phase designed to assess the efficacy of lomitapide when added to standard of care and an additional year-long phase to assess safety and tolerability. Twenty-nine adult HoFH patients from across the world were enrolled, with 23 patients completing both the efficacy and the safety phases. All of the patients received lomitapide along with conventional lipid-lowering therapies including statins and, in some cases, apheresis. The lomitapide dose was gradually increased from 5 mg to a maximum tolerated dose of up to 60 mg per day. Median dose was 40 mg per day. At the end of the efficacy phase, LDL-C levels were reduced by an average of 50 percent from baseline. Approximately one-third of the patients experienced levels of LDL-C that were less than 100 mg/dl -- close to the recommended therapeutic goals -- at some point during the study, and concomitant lipid-lowering therapy was modified in a subset of these patients during the safety phase. Despite these changes in treatment, patients' mean LDL-C levels were still reduced by 38 percent at the end of the study.

"The magnitude of this reduction in LDL-C and the fact that some patients reached or approached the LDL-C therapeutic goals is truly remarkable for this high risk population that historically doesn't respond to lipid-lowering drugs," said the study's lead author, Marina Cuchel, MD, PhD, research assistant professor of Medicine at Penn. "A reduction in LDL-C of this magnitude is certainly expected to favorably alter the clinical course of this devastating disease."


Thursday, November 8, 2012

DHA supplementation enhances high-frequency, stimulation-induced synaptic transmission in mouse hippocampus - Applied Physiology, Nutrition, and Metabolism


In continuation of my update on DHA...

A team led by Yves Sauve, who is a member of the University of Alberta's Faculty of Medicine & Dentistry, divided ten mice to receive a diet supplemented with DHA or an unsupplemented diet.  Animals that received DHA-enhanced diets were found to have a 29 percent higher level of DHA in the brain's hippocampus region—which is involved in memory--compared to the control group.  Higher DHA levels were associated with increased synaptic transmission in the hippocampus following brief stimulation.  “This increase in synaptic transmission might provide a physiological correlation for the improved spatial learning and memory observed following DHA supplementation,” the authors conclude.
"We wanted to find out how fish intake improves memory," explained Dr Sauve, who works in the University's department of physiology, the department of ophthalmology and the Centre for Neuroscience. "What we discovered is that memory cells in the hippocampus could communicate better with each other and better relay messages when DHA levels in that region of the brain were higher. This could explain why memory improves on a high-DHA diet."

He added that supplementing your diet with DHA, either by increasing fish intake or by consuming omega-3 supplements, may help protect against reduced brain DHA levels as we age. 



Ref : http://www.nrcresearchpress.com/doi/abs/10.1139/h2012-062#.UJSh1sH3Th8

DHA supplementation enhances high-frequency, stimulation-induced synaptic transmission in mouse hippocampus - Applied Physiology, Nutrition, and Metabolism

Wednesday, November 7, 2012

Omega-3 supplementation improves working memory in young adults


In continuation of my update on omega fatty acid

University of Pittsburgh researchers led by Rajesh Narendran of the Department of Radiology tested the effects of a supplement providing 930 milligrams eicosapentaenoic acid (EPA) and 750 milligrams docosahexaenoic acid (DHA) in 11 men and women between the ages of 18 and 25. Evaluation of working memory (via an "n-back test"), positron emission tomography (PET) imaging of the brain and tests for red blood cell fatty acid levels were conducted before and after the six month treatment period.

Participants experienced an increase in plasma omega-3 fatty acid levels and improvement in working memory at the end of six months. "What was particularly interesting about the presupplementation n-back test was that it correlated positively with plasma omega-3,"observed Bita Moghaddam, whose lab conducted the research. "This means that the omega-3s they were getting from their diet already positively correlated with their working memory."

"Before seeing this data, I would have said it was impossible to move young healthy individuals above their cognitive best," he remarked. "We found that members of this population can enhance their working memory performance even further, despite their already being at the top of their cognitive game."

Although the researchers had suggested increases in dopamine storage and a protein involved in decision making in a particular area of the brain as mechanisms supporting omega-3's effect on cognitive function, PET scan results failed to support the hypothesis. "It is really interesting that diets enriched with omega-3 fatty acid can enhance cognition in highly functional young individuals," Dr Narendran commented. "Nevertheless, it was a bit disappointing that our imaging studies were unable to clarify the mechanisms by which it enhances working memory."


Tuesday, November 6, 2012

Green tea found to reduce rate of some GI cancers

In continuation of my update on green tea.

We know that, Tea contains polyphenols or natural chemicals that include catechins like EGCG and ECG. Catechins have antioxidant properties and may inhibit cancer by reducing DNA damage and blocking tumor cell growth and invasion.

Now researchers have found that regular tea consumption, defined as  tea  consumption  at  least three times a week for more than six months, was  associated  with  a  17 percent reduced risk of all digestive cancers combined. A  further  reduction  in  risk  was  found to be  associated  with  a increased level of tea drinking. Specifically, those who consumed about two to three cups per day (at least 150 grams of tea per month) had a 21 percent reduced risk of digestive system cancers.

For all digestive system cancers combined, the risk was reduced by 27 percent among women who had been drinking tea regularly for at least 20 years," said Nechuta. "For colorectal cancer, risk was reduced by 29 percent among the long-term tea drinkers. These results suggest long-term cumulative exposure may be particularly important."


Monday, November 5, 2012

Caffeine's effect on the brain's adenosine receptors visualized for the first time

In continuation on my update on coffee

Molecular imaging with positron emission tomography (PET) has enabled scientists for the first time to visualize binding sites of caffeine in the living human brain to explore possible positive and negative effects of caffeine consumption. According to research published in the November issue of The Journal of Nuclear Medicine, PET imaging with F-18-8-cyclopentyl-3-(3-fluoropropyl)-1-propylxanthine (F-18-CPFPX) shows that repeated intake of caffeinated beverages throughout a day results in up to 50 percent occupancy of the brain's A1adenosine receptors.
"There is substantial evidence that caffeine is protective against neurodegenerative diseases like Parkinson's or Alzheimer's disease," noted Elmenhorst. "Several investigations show that moderate coffee consumption of 3 to 5 cups per day at mid-life is linked to a reduced risk of dementia in late life. The present study provides evidence that typical caffeine doses result in a high A1 adenosine receptor occupancy and supports the view that the A1 adenosine receptor deserves broader attention in the context of neurodegenerative disorders." 

Sunday, November 4, 2012

New target discovered for food allergy treatment

New target discovered for food allergy treatment: Researchers have discovered a novel target for the treatment of food allergies. Levels of the enzyme Pim 1 kinase rise in the small intestines of peanut-allergic mice. Inhibiting activity of Pim 1 markedly reduced the allergic response to peanuts.

Saturday, November 3, 2012

Common food preservative, Nisin may slow, even stop tumor growth

We know that, Nisin is a polycyclic antibacterial peptide with 34 amino acid residues used as a food preservative. It contains the uncommon amino acids lanthionine (Lan), methyllanthionine (MeLan), didehydroalanine (Dha) and didehydroaminobutyric acid (Dhb). These unusual amino acids are introduced by posttranslational modification of the precursor peptide. In these reactions a ribosomally synthesized 57-mer is converted to the final peptide. The unsaturated amino acids originate from serine and threonine, and the enzyme-catalysed addition of cysteine residues to the didehydro amino acids result in the multiple (5) thioether bridges. Subtilin and Epidermin are related to Nisin. All are members of a class of molecules known as lantibiotics.

Nisin is produced by fermentation using the bacterium Lactococcus lactis. Commercially, it is obtained from the culturing ofLactoccus lactis on natural substrates, such as milk or dextrose, and is not chemically synthesized.


The study is the first to show CHAC1's new role in promoting cancer cell death under nisin treatment. The findings also suggest that nisin may work by creating pores in the cancer cell membranes that allow an influx of calcium. It's unclear what role calcium plays in nisin-triggered cell death, but it's well known that calcium is a key regulator in cell death and survival.



Ref : http://onlinelibrary.wiley.com/doi/10.1002/cam4.35/abstract;jsessionid=288DD01F2898095E16F5EEAFEF5274FD.d02t03

Common food preservative may slow, even stop tumor growth

Friday, November 2, 2012

Nabilone Drug offers new pain management therapy for diabetics.....

We know that, Nabilone is a synthetic cannabinoid with therapeutic use as an antiemetic and as an adjunct analgesic for neuropathic pain. It is a synthetic cannabinoid, which mimics the main chemical compound of cannabis(THC). Chemically, nabilone is similar to the active ingredient found in naturally occurring Cannabis sativa L. 

In Canada, the United States, the United Kingdom and Mexico, nabilone is marketed as Cesamet. It was approved in 1985 by the U.S. Food and Drug Administration (FDA) for treatment of chemotherapy-induced nausea and vomiting that has not responded to conventional antiemetics. Though it was approved by the FDA in 1985, the drug only began marketing in the United States in 2006. It is also approved for use in treatment of anorexia and weight loss in patients with AIDS.

Although it doesn't have the official indication (except in Mexico), nabilone is widely used as an adjunct therapy for chronic pain management. Numerous trials and case studies have demonstrated various benefits for conditions such as fibromyalgia  and multiple sclerosis. Nabilone is a racemic mixture consisting of the (S,S) and the (R,R) isomers ("trans") ......

Tuesday, October 30, 2012

Dulaglutide Fares Well in New Trials


Eli Lilly and Co.'s potential once-weekly treatment for type 2 diabetes fared better than three other drugs in lowering blood sugar levels, according to initial results from some late-stage research.


The Indianapolis drugmaker said that two doses of its injectable drug dulaglutide (see structure) delivered statistically superior reductions in blood sugar levels when compared to twice-daily injections of exenatide and the oral treatments metformin and sitagliptin. Lilly will present more details from the studies at scientific meetings next year and in 2014.



Lilly said it will submit the drug to regulators for approval next year. It said timing in the United States will depend on the completion of Food and Drug Administration requirements for an assessment of the drug's cardiovascular risk.

Monday, October 29, 2012

Bayer Releases Riociguat Data

We  know that,  Riociguat (BAY 63-2521, below structure) is a novel drug that is currently in clinical development by Bayer. It is a stimulator of soluble guanylate cyclase (sGC). At the moment Phase III clinical trials investigate the use of riociguat as a new approach to treat two forms of pulmonary hypertension (PH): chronic thromboembolic pulmonary hypertension (CTEPH) and pulmonary arterial hypertension (PAH). Riociguat constitutes the first drug of a novel class of sGC stimulators. 



Sunday, October 28, 2012

FDA Clears Eisai’s Epilepsy Drug Fycompa


We know that, Fycompa (see structure, perampanel) is a selective, non-competitive AMPA receptor antagonist discovered by the research teams at Eisai laboratories. The development of an AMPA antagonist compound with a favourable pharmacokinetic and safety profile arose after the AMPA receptor was identified as a promising target for drug development. The AMPA receptor is widely present in almost all excitatory neurons. It is believed to play a role in a large number of central nervous system diseases with similar neuropathology.

Saturday, October 27, 2012

Inhibitory Effect of Carob (Ceratonia siliqua) Leaves Methanolic Extract on Listeria monocytogenes - Journal of Agricultural and Food Chemistry (ACS Publications)

We know that, Ceratonia siliqua, commonly known as the Carob tree and St John's-bread,  is a species of floweringevergreen shrub or tree in the pea family, Fabaceae. It is widely cultivated for its edible legumes, and as anornamental tree in gardens. The seed pod may be crushed and used as ersatz chocolate.

It is native to the Mediterranean region including Southern Europe, Northern Africa, the largerMediterranean islands; to the Levant and Middle-East of Western Asia into Iran; and to the Canary Islandsand Macaronesia

Friday, October 26, 2012

Positive Results from Phase 2 Trial of Oral Calcitonin | News | Drug Discovery and Development Magazine

Tarsa Therapeutics Inc. announced that a Phase 2 trial of its oral recombinant salmon calcitonin in the prevention of postmenopausal osteoporosis was successfully concluded and yielded statistically significant, clinically relevant improvements in bone mineral density (BMD) at the lumbar spine.  These data were presented at the American Society for Bone and Mineral Research (ASBMR) 2012 Annual Meeting by Phase 2 investigator Neil Binkley, MD, who is an associate professor of endocrinology and Geriatrics at the University of Wisconsin School of Medicine and Public Health in Madison, Wisconsin.....

Thursday, October 25, 2012

T-DM1 Extends Overall Survival | News | Drug Discovery and Development Magazine

We know that,Trastuzumab emtansine (INN, also called trastuzumab-DM1 or trastuzumab-MCC-DM1, abbreviated T-DM1) is an antibody-drug conjugate consisting of the antibody trastuzumab (the active ingredient in Herceptin) linked to a cytotoxic agent that is a derivative of maytansine (DM1).

It is in clinical trials for breast cancer, especially of the HER2 positive type. Early results in Nov 2011 from an open-label phase II trial on 137 patients with HER2-positive advanced breast cancer were very encouraging.

EMILIA, a phase III trial of 991 people with HER2-positive unresectable locally advanced or metastatic breast cancer, comparing T-DM1 versus capecitabine plus lapatanib in patients previously treated with trastuzumab and a taxane chemotherapy, showed improved progression free survival in patients treated with T-DM1 (median 9.6 vs. 6.4 months) with an improved safety profile. The study sponsor reported in August 2012 that T-DM1 significantly improved survival in the EMILIA study and that the details will be reported at an upcoming medical meeting

Tuesday, October 23, 2012

FDA Approves Oxtellar...

Oxtellar XR  is Oxcarbazepine Extended-Release Tablets...

We know that, Oxcarbazepine  is an anticonvulsant and mood stabilizing drug, used primarily in the treatment of epilepsy. It is also used to treat anxiety and mood disorders, and benign motor tics. Oxcarbazepine is marketed as Trileptal by Novartis and available in some countries as a generic drug.

Astex Begins Phase 2 Cancer Trial | News | Drug Discovery and Development Magazine

Monday, October 22, 2012

Empagliflozin Lowers Blood Pressure | News | Drug Discovery and Development Magazine

We know that, Empagliflozin (see structure) is a SGLT2 inhibitor which is being investigated in clinical trials for the oral treatment of type 2 diabetes by Boehringer Ingelheim and Eli Lilly and Company. It is an inhibitor of the sodium glucose co-transporter-2 (SGLT-2), which is found almost exclusively in the proximal tubules of nephronic components in the kidneys. SGLT-2 accounts for about 90 percent of glucose reabsorption into the blood. Blocking SGLT-2 causes blood glucose to be eliminated through the urine via the urethra...

Empagliflozin Lowers Blood Pressure | News | Drug Discovery and Development Magazine   ....

Saturday, October 20, 2012

Aveo Files Tivozanib NDA | News | Drug Discovery and Development Magazine

We know that, Tivozanib (see structure below, AV-951) is an oral VEGF receptor tyrosine kinase inhibitor. It is undergoing clinical trial investigation for the treatment of renal cell carcinomas.An oral quinoline urea derivative, tivozanib suppresses angiogenesis by being selectively inhibitory against vascular endothelial growth factor. It was developed by AVEO Pharmaceuticals.It is designed to inhibit all three VEGF receptors. Phase III results on advanced renal cell carcinoma suggest a 30% or 3 months improvement in median PFS compared tosorafenib. 

Friday, October 19, 2012

Cherry intake reduces risk of gout attacks

In continuation of my update on cherries

Thursday, October 18, 2012

Synta announces results from ganetespib Phase 2b trial on NSCLC

In continuation of my update on Ganetespib....



"The preliminary results from GALAXY indicate that the addition of ganetespib to docetaxel is well tolerated and may improve outcomes in patients compared to docetaxel alone," said Dr. Ramalingam, a Principal Investigator of the study. "This includes promising improvements in survival seen across the broad adenocarcinoma population as well as in key predefined patient populations. A well-tolerated combination regimen that extends survival associated with salvage therapy in NSCLC will meet a much awaited need to improve the current standard of care."


As per the CEO's statement "the objective of the interim analysis was to identify the best choice of patient population and trial design for transitioning to the Phase 3 stage of the study. The broad-based activity seen in the results presented  support advancing into the Phase 3 stage in alladenocarcinoma patients. The results have yielded a rich data set which we are using to optimize and de-risk the Phase 3 stage of the program. We are hopeful that this next stage of development will lead to a new treatment option for patients fighting this devastating disease."

Enrollment completion of the Phase 2b stage of the GALAXY trial and the transition to the Phase 3 stage are expected later this year. Based on current assumptions, the Company anticipates that Phase 3 will enroll approximately 500 adenocarcinoma patients, with overall survival as a primary endpoint. Biomarker findings and other patient selection and treatment experience from the Phase 2b stage will be incorporated into the design of the Phase 3 stage. An announcement with additional Phase 3 details is anticipated later this year, following discussion with regulatory agencies.  


Wednesday, October 17, 2012

Drug combinations show promise against metastatic melanoma

In continuation of my update on Vemurafenib..


A Phase I study in 44 patients shows that the combination of the MEK inhibitor GDC-0973  (see structure) and vemurafenib can be delivered safely, Dr Rene Gonzalez of the University of Colorado Cancer Center, Denver, and colleagues report.

"BRAF inhibition has resulted in high response rates and improved survival in patients with BRAF mutated melanoma," Dr Gonzalez said. "One of several mechanisms of resistance has been reactivation of the MAPK pathway. Preclinical models show that combined inhibition of BRAF and MEK can delay the acqusition of resistance compared to BRAF inhibitor monotherapy. Inhibition of the pathway downstream from BRAF with the MEK inhibitor GDC-0973 could theoretically overcome or delay this resistance mechanism and improve outcomes."

The study was not designed to evalate efficacy. "While early data in a small number of patients did show tumor reduction, it would be premature to comment on efficacy based on these preliminary results and further research is warranted," Dr Gonzalez said.


Tuesday, October 16, 2012

ARIAD announces initial results from AP26113 Phase 1/2 trial on non-small cell lung cancer

We know that, AP26113 (see structure) is a highly potent ALK inhibitor with IC50 of 0.62 nM. As an ALK inhibitor, AP26113 overcomes mutation-based resistance in NSCLC models. Multiple mutations in ALK were identified that conferred resistance to crizotinib, but not AP26113, including the L1196M "gatekeeper" mutation which has now been observed clinically in patients who initially responded to crizotinib and then relapsed. AP26113 also inhibits activated EGFR in preclinical models, including the T790M "gatekeeper" mutant that confers resistance to current EGFR inhibitors. Constitutive EGFR activity due to activating mutation is a key feature of certain non-small cell lung cancers, and the T790M mutation causes resistance to inhibitor therapy in approximately 50 percent of these cases. In preclinical studies, AP26113 was shown to be specific for mutated EGFR and avoids inhibition of native (endogenous or unmutated) EGFR; such inhibition is thought to be associated with the toxicity of other EGFR inhibitors.

Saturday, October 13, 2012

Beating Drug-Resistant TB.....


An antibiotic produced naturally by common soil bacteria kills Mycobacterium species that cause various human diseases, including tuberculosis (TB), according to a report published Monday (September 17) in EMBO Molecular Medicine. The antibiotic even kills drug-resistant strains that escape current TB treatments.
“I seldom get so tickled when I read a paper,” said William Jacobs, a microbiologist and immunologist at the Albert Einstein College of Medicine in New York, who did not participate in the research. The emergence of multidrug resistant strains of Mycobacterium tuberculosis “is a big problem,” he said. “This could be a godsend.”
Tuberculosis infections are commonly treated with a mixture of antibiotics, including one called isoniazid, which Jacobs described as “the cornerstone of TB therapy.”  Unfortunately, the most common drug-resistant strains of M. tuberculosis are isoniazid-resistant, he said.
Many researchers, including Stewart Cole, chair of the microbial pathogenesis department at the École Polytechnique Fédérale de Lausanne in Switzerland, have thus been searching for new M. tuberculosis-killing drugs. “In the past we’ve been working a lot on TB drug discovery using target-based approaches… [but] this has been spectacularly unsuccessful,” said Cole. So instead, he and his colleagues looked back over decades of academic literature searching for reports of natural compounds with M. tuberculosis-killing activity.
They found pyridomycin (see above structure). First described in the 1950s, the drug was reportedly produced by the bacteria Streptomyces pyridomyceticus and Dactylosporangium fulvum. Surprisingly, little was known about pyridomycin—perhaps, Cole suggested, because isoniazid was discovered around the same time and simply stole the limelight.
Cole’s team grew cultures of D. fulvum bacteria, figured out how to isolate and purify pyridomycin, and then showed that the drug was indeed capable of killing M. tuberculosis, as well as many otherMycobacterium species, in culture.
This indiscriminate Mycobacterium-killing ability is a bonus, said Cole. “One of the problems with isoniazid is that it only works against TB,” he said. “If pyridomycin makes it into the clinic, it could have applications in leprosy or Buruli ulcer or atypical mycobacterial infections that can occur in cystic fibrosis patients.”
The team went on to identify the bactericidal target of pyridomycin—a protein called inhA, which is involved in synthesis of bacterial cell wall components. As it happens, inhA is the same protein targeted by isoniazid, but there is a difference in the two drugs’ mechanisms. While isoniazid is a pro-drug that requires activation by an intracellular enzyme called KatG before it can bind to inhA, pyridomycin binds inhA directly.
This is an important distinction, explained Valerie Mizrahi, director of the Institute of Infectious Disease and Molecular Medicine at Cape Town University, South Africa, who was not involved in the study. The overwhelming majority of drug resistance mutations in M. tuberculosis occur in the KatGgene, she explained, and such mutant strains should not be resistant to pyridomycin. Indeed, the team showed that clinical isolates of isoniazid-resistant M. tuberculosis carrying KatG mutations were killed effectively by pyridomycin. “The efficacy against drug resistant forms of M. tuberculosis is particularly encouraging,” Mizrahi said.
There is, however, much to be done before pyridomycin can be used in the clinic. “We would [need to] test that it works in animal models and that it is safe and doesn’t have any side effects,” said Cole. “That will take a couple of years.”
“It’s a long journey,” agreed Mizrahi, “but the big plus is that they don’t really need to validate inhA as a drug target because inhA is already the most well validated drug target out there… [so] it has got a good head start.”

Ref : http://onlinelibrary.wiley.com/doi/10.1002/emmm.201201689/abstract

Friday, October 12, 2012

FDA approves Enzalutamide (XTANDI Capsules)



Enzalutamide (marketed as Xtandi and formerly known as MDV3100) is an androgen receptor antagonist drug developed by the pharmaceutical company Medivation for the treatment of castration-resistant prostate cancer  currently in phase 3 clinical trials. Medivation has reported up to an 89% decrease in prostate specific antigen serum levels after a month of taking the medicine. Early preclinical studies also suggest that enzalutamide inhibits breast cancer cell growth. In August of 2012, the U.S. Food and Drug Administration approved enzalutamide (see structure) for the treatment of castration-resistant prostate cancer......
 
Approved Drugs > Enzalutamide (XTANDI Capsules)

Thursday, October 11, 2012

GenSpera plans to initiate G-202 Phase II trial in prostate cancer


 We know that, a Mediterranean plant (see pic), Thapsia garganica, a simple weed, is the original source of G202. For millennia, the plant has been known to be poisonous to animals; in the days of desert caravans, it was called the “death carrot” for the unfortunate fate awaiting any camel that ingested it. Researchers at the Johns Hopkins Kimmel Cancer Center in the US and their Danish collaborators hoped to harness the toxicity of the plant in a controlled way that could be used to treat cancer in people.

They did so by taking apart the toxic compound, thapsigargin, produced by the plant and altering its chemical structure. The resulting prodrug, G202, is not active until it comes into contact with a particular protein produced by certain tumors. This prostate-specific membrane antigen (PMSA) is released by cells lining the outside of prostate and other tumors. Samuel Denmeade, the study’s lead author, uses the image of a hand grenade. The presence of PMSA essentially “pulls the pin” of the G202 grenade. In its active form, the drug is able to kill not only the tumor, but the blood vessels that provide it with nutrients.
A recent study of  G202,  looked at the effects of the drug on human prostate tumors grown in mice, and compared it to docetaxel, a chemotherapy drug already in use. G202 clearly came out on top, reducing by half the size of seven out of nine tumors; docetaxel achieved the same effect on only one out of eight tumors. Similar results for G202 were also seen in experiments with human breast, kidney and bladder cancer.

These promising results encouraged doctors to test the safety of G202 in a phase I clinical trial, involving 29 cancer patients at advanced stages of the disease.  

Now its  good news that,......


Tuesday, October 9, 2012

Potential new COPD drug

 
A study led by researchers at Boston University School of Medicine (BUSM) has shown that a compound used in some skin creams may halt the progression of emphysema and reverse some of the damage caused by the disease. When the compound Gly-His-Lys (GHK) was applied to lung cells from patients with emphysema, normal gene activity in altered cells was restored and damaged aspects of cellular function were repaired. 


Researchers took cells from lungs donated by patients undergoing a double lung transplant because their lungs were irrevocably damaged by COPD and found 127 genes had changes in activity as disease severity increased within the lung. The genes that showed increased activity included several that are associated with inflammation, such as those involved in signalling to B-cells (the immune system cells that make antibodies).

In contrast, the genes involved in maintaining cellular structure and normal cellular function, along with the growth factors TGFβ and VEGF, were down-regulated and showed decreased activity. Genes that control the ability of the cells to stick together (cell adhesion), produce the protein matrix that normally surrounds the cells and promote the normal association between lung cells and blood vessels were among the genes in this category. 

Using genomic technologies and computational methods, the researchers identified genetic activity defects that occur as emphysema progresses and matched these defects with compounds that could reverse the damage.


"Our study results showed that the way genes were affected by the compound GHK, a drug identified in the 1970s, was the complete opposite of the pattern we had seen in the cells damaged by emphysema," said Marc Lenburg, PhD, associate professor in computational biomedicine and bioinformatics at BUSM and one of the study's senior authors.

Potential new COPD drug