Sunday, March 4, 2018

The Amaryllidaceae Alkaloid Helps Repress Cancer Cell Growth

Daffodil can quickly cure cancer? Scientists from the Laboratory of RNA Molecular Biology at the Liberal University School of Science and Cancer Research Center in Brussels, Belgium, conducted a preliminary exploration in this direction, and this study was published in Cell's Structure recently.

The study, led by Denis Lafontaine, extracted a natural anticancer compound from daffodil (Amaryllidaceae). They found that the compound is an alkaloid called tennis amine, which binds ribosomes. Ribosomes are nanodevices necessary for the survival of our cells because they synthesize all of our proteins. In order to maintain their own unrestricted growth, cancer cells rely on enhanced protein synthesis, so cancer cells are very sensitive to therapies that inhibit ribosome formation or inhibit ribosomal function.

In the new study, researchers also found that tennis amine can inhibit ribosome-forming proteins and therefore slow cancer cell growth. Peracetamol also inhibits the production of such nanodevices in the nucleus: the pressure on the nucleolus activates the anti-cancer watchdog pathway, leading to increased stability of the p53 protein, thereby eliminating cancer cells.

This study, for the first time, reveals the molecular mechanism of antitumor activity of daffodils, which has been used in folk medicine for hundreds of years. Pedigree is a member of a large group of natural therapeutic molecules: Many of the other alkaloids used in human care are extracted from plants such as morphine (potent analgesics), quinine (anti-malaria drugs), and ephedrine (anti-asthma Medicine) and so on.


In the near future, Denis Lafontaine's team will work with Veronique Mathieu's team to examine the effects of four Amaryllid alkaloids on ribosome formation and function. Their goal is to quickly find the most promising chemical framework, and then further develop anticancer drugs.

Collected by Creative BioMart.

Wednesday, January 10, 2018

JCI: Histone Protein Modifications May Regulate Human Glomerular Disease

During normal development, histone modifications control the fate of cells, whereas histone modification affects the process of cell dedifferentiation in the event of disease. In a recent study published in the international journals JCI, researchers from Canada decided to find out how dynamic changes in histone modifications can affect adult glomerular podocytes, which are usually at rest.

To do this, the researchers altered the inhibitory effect of H3K27me3 in podocytes and performed a series of analyzes. Adriamycin nephrotoxicity test and subtotal nephrectomy both showed that the level of H3K27me3 decreased after the removal of methyltransferase EZH2 with histone methylation in podocytes and the mice were susceptible to glomerular diseases. The researchers found that in podocytes H3K27me3 aggregates in the promoter region of Notch ligand Jag1, and inhibition of Jag1 by EZH2 knockdown or knockdown of EZH2 expression can promote podocyte dedifferentiation. In contrast, inhibition of the demethylase Jmjd3 and UTX increased the level of H3K27me3, decreased adriamycin nephrotoxicity experiments, subtotal nephrectomy, and diabetic-induced glomerular disease. In addition, the researchers analyzed glomerular podocytes in patients with focal segmental glomerulosclerosis and diabetic nephropathy and found that glomerular podocytes in these patients exhibited levels of H3K27me3 Decline and UTX levels increase. Similar to this observation, inhibition of Jmjd3 and UTX slows the progression of nephropathy in a mouse model of glomerular damage.

Collectively, these results indicate that chromatin modifications are not as stable as they appear to be at rest, and also undergo dynamic regulation, whereas epigenetic reprogramming or results that may improve glomerular disease.

Collected by Creative BioMart.

Sunday, November 26, 2017

Creative BioMart to Expand Its Protein Glycosylation Labeling Service Capacity to Meet Rising Demands

Creative BioMart, a global leader in the supply of high quality protein products and efficient protein manufacturing techniques, today announced a major expansion of its Protein Glycosylation Labeling Service capacities as a response to rising customer needs and market demands for characterizing glycan structure and monitoring glycan profiles.

With years of experience accumulated, Creative BioMart provides accurate solutions for characterizing glycan structure and monitoring glycan profiles using mAb-Glyco Chip technology, LC/MS, liquid chromatography systems, and electrophoresis. Services in Creative BioMart include: Annotate N-linked glycosylation, Annotate O-linked glycosylation, Annotate C-linked glycosylation, Annotate glycationn, Glycan staining or labeling, Glycoprotein purification or enrichment and Glycoproteome and Glycome Analysis by Mass Spectrometry.

As Lectins can be used to detect and analyze glycoprotein function, Creative BioMart also provides services utilizing lectins, which include Glycoprotein identification, Glycoprotein purification/enrichment, Characterization of cell surface glycoconjugates, Glycosylation mutant generation, as well as Gtf and glycosidase activity analysis.

“With the customers’ needs for Protein Glycosylation Labeling increased, we are quite pleased to develop more qualified offerings concerning this with our current services quality assured. We must work hard for early results. Guaranteed by our advanced techniques, we do believe the day is no faraway to come.” Commented the chief marketing staff in Creative BioMart.

To know more detailed information about Protein Glycosylation Labeling Service in Creative BioMart, you can visit http://www.creativebiomart.net/Protein-Glycosylation-Labeling-Service.htm.

About Creative BioMart
Starting from a small supplier of proteins and enzymes for academic institutes and biotech companies, Creative BioMart has always been focusing on developing high quality protein products including recombinant proteins, GMP proteins, native proteins, etc. and efficient protein manufacturing techniques. Over the past decade, our products and services are proved to have served our customers well and our brand has become one of the most trustworthy in the market.

Monday, October 23, 2017

Engineered Proteins Created to Treat Obesity

According to the material provided by American Association for the Advancement of Science, Scientists here have created engineered proteins that brought down body weight, bloodstream insulin, and cholesterol levels in obese mice, rats and primates. These findings, to some extent, pave the way for earnestly required alternatives to bariatric surgery for treating obesity in humans-the rates of which have almost tripled worldwide since 1975.

In view of the perception that obese mice, rats, and humans all had raised serum concentrations of a protein named GDF15 in contrast with learn controls, Yumei Xiong and partners set out to create treatments got from the molecule. In various mouse models of diet-induced and genetic obesity, conveyance of the GDF15 gene reduced body weights, food intake, and serum insulin levels in the animals.

Since GDF15 has a short plasma half-life and is hard to deliver in substantial quantities, the researchers produced two distinctive fusion proteins that were more stable in the circulation and prompted higher yields. Both fusion proteins adequately diminished body weights for obese mice and cynomolgus monkeys.

What’s more interesting is that, Xiong, together with her colleagues, additionally demonstrated that the GDF15 regimen changed food preferences in mice—driving the animals to pick lower calorie chow when offered a decision between standard food and an additional condensed-milk diet.

The authors established that GDF15 enacted a population of nerve cells called AP neurons that make up a portion of the gut-brain axis, yet take not of that further investigations to identify the protein’s cellular receptor are required as potential therapeutics advance toward the clinic.

As a quality protein products supplier, Creative  BioMart not only provides GDF15 proteins, but also GDF11 proteins, and other protein products and protein-related services to assist scientists with their research.

Monday, December 26, 2016

Assay Kits Supplier—Creative BioMart

Assay kits, used in life science research, drug discovery & development as well as environmental monitoring in a broad range of applications such as studying disease pathways, or finding potential drug candidates or evaluating biopharmaceutical production processes.

With years of experience and expertise, Creative BioMart now offers thousands of assay kits in a variety of formats, including enzyme activity, inhibitor screening, epigenitic, apoptosis, cell damage, cell proliferation and cytotoxicity, cell signing, metabolism and other detections that have been exhaustively tested for superior quality.

These assays are regarded quite useful tools for the measuring of enzyme activity, monitoring of signal pathway activity, detecting and quantifying of cellular processes, for example cell death, cell viability/proliferation, or metabolic reaction to study changes in gene expression and to screen small molecule inhibitors.

Assay kits in Creative BioMart are ready-to-use and provide all reagents in necessity, directions, plates and analysis protocols to help its customers to quickly get exact and reproducible outcomes. With Creative BioMart’s assay kits, customers can get profoundly sensitive, precise, and precise results over a wide dynamic range with quick and efficient processing.

Assay kits in Creative BioMart include but not limited to: activity kits, metabolism kits, epigenetic kits, cellular kits, signaling kits, detection kits, etc.

Thursday, December 22, 2016

Trying to Find Membrane Protein Service?

Membrane proteins, proteins that interact with biological membranes, accounts for nearly half of know drug targets. It is estimated that almost 20-30% of all genes in most genomes encode membrane proteins. Membrane proteins as receptors and ion channels are vital regulators of cellular function and all of them are of great pharmaceutical importance.

The statistics of a recent survey may illustrate this well. The survey was meant to figure out the proportion of the classes of drug target in current drug therapies. And the results are as follows: receptors accounts for nearly half of the human drug targets and acting as therapeutic targets for a wide of disease conditions like: cancer and cardiovascular; following are enzymes which cover almost 30%; the third place was taken by hormones & factors; and ion channels take 5% of it. That is to say membrane protein account over 50% of the human drug target. So the importance of it is obvious.

However, good things are always hard to get. So does membrane proteins. It is said that they are notoriously difficult to prepare in a pure, correctly-folded form in sufficient quantity for drug discovery.

Since its foundation, Creative Biomart has been working with pharmaceutical, biotech, clinical and academic customers and researcher, providing them with excellent membrane protein-related products and services that help promote the customers’ research. Now, they have customer membrane protein production, cell line development ad membrane preparation and lipid-based protein immoblizition services for their customers to choose. For more information about this, you can visit http://www.creativebiomart.net/Membrane-Protein-Services.htm.

About Creative BioMart
Creative BioMart provides quality recombinant proteins, lysate, chromatography and native protein to the research community of biology, clinical research, molecular diagnostics and biopharmaceutical drug development. We are offering more than 1,000 recombinant proteins, peptides and antibodies. All the products are rigorously tested to meet the most demanding research needs. At the same time, lowest prices in the industry are always guaranteed.
Contact Creative BioMart
Address: 45-1 Ramsey Road Shirley, NY 11967, USA
Tel: 1-631-559-9269
Email: info@creative-biomart.com

Monday, November 21, 2016

How Will Protein Expression Market Develop in the Future?

Protein expression, another name of which is protein production, has been widely used in the life sciences, medicine and biotechnology. Researchers in the field of molecular biology use a large number of proteins and enzymes which are produced by expression systems. Significant application of expression system can also be found in the production of human insulin to treat diabetes and to produce certain proteins in biotechnology and industry. Currently, they are mostly used to produce proteins that are screened for drug discovery purpose. Generally speaking, commonly used protein expression systems include those derived from bacteria, yeast, baculovirus and mammalian cells.

An agency focuses on analyzing kinds of market did a survey about the protein expression market recently. They studied the expression system, products, applications and end users. For the expression system part, they estimated that the mammalian part would grow at the highest CAGR in the following four years for the demand for therapeutic proteins has been increased. In the product part, the reagents were found to have the largest share of the global market, and the services part would grow at the highest CAGR in the following four years. For the part of application, the researchers studied industrial proteins, research applications and therapeutic proteins. Among them, therapeutic proteins cover the largest share of the global market and are estimated to grow at the highest CAGR in the following four years. In their report, academic research, contract organizations, pharmaceutical and biotechnological companies and others were included in the end-user part. According to their statistics, the pharmaceutical and biotechnological companies have the largest share of the global protein market, while the contract research organizations would grow at the highest CAGR in the following four years. The global market is expected to grow fast and it may reach $ 1,400 million at the end of 2018.

As a world leading biotech company, Creative Biomart is committed to provide easy-to-use protein expression systems for its valued customers. Up to now, it has provided thousands of protein expression service for customers worldwide. Currently, it has nineteen types of expression system for customers to choose, including Bacterial expression systems (E.coli / Bacillus), Yeast expression systems (P pastoris / S cerevisiae), mammalian expression systems (CHO /293), Cell-free in vitro Protein Expression, etc. To know more detailed information, you can visit http://www.creativebiomart.net/Protein-Expression-Services.htm.