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PeptiDream Inks Peptide Discovery Platform License with Shionogi

PeptiDream said today it has licensed its proprietary Peptide Discovery Platform System (PDPS) technology on a nonexclusive basis to Shionogi & Co. The value of the companies’ Technology License Agreement was not disclosed. PeptiDream did say, however, it will

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PeptiDream said today it has licensed its proprietary Peptide Discovery Platform System (PDPS) technology on a nonexclusive basis to Shionogi & Co.

The value of the companies’ Technology License Agreement was not disclosed. PeptiDream did say, however, it will receive an up-front payment and additional technology access payments—and is eligible for payments tied to achieving development milestones for any constrained peptides and/or small molecules discovered from use of the PDPS technology.

PeptiDream added that it is also eligible for royalties on sales of certain products developed through the PDPS technology.

Work on peptide–drug conjugates (PDCs) is not included in the nonexclusive license—as has been the case with PeptiDream’s four previous technology license agreements.

Shionogi is one of 17 drug developers to join PeptiDream in establishing funded discovery collaborations.

PeptiDream said it will continue to work with Shionogi to identify macrocyclic/constrained peptides against multiple targets of interest selected by Shionogi, and to optimize peptide hits into therapeutic peptides or small-molecule products using PeptiDream’s PDPS technology, as the companies agreed in February 2016.

PeptiDream’s technology is being used toward identifying drugs from “highly difficult” targets in infectious disease and pain and central nervous system disorders, Shionogi said March 16 in an investor presentation focused on its R&D efforts.

The collaboration, PeptiDream CEO Kiichi Kubota said in a statement, “has already made incredible progress, with the first milestone already reached in March 2017, and now Shionogi becomes the first Japanese company to in-license our PDPS technology.”

PeptiDream received an undisclosed payment as a result of the unspecified milestone.

“We strongly hope that this technology license will serve to accelerate the discovery and development efforts at Shionogi, ultimately leading to the identification of novel first-in-class and best-in-class therapeutics to address the world’s unmet medical needs,” Kubota added.

In addition to Shionogi, the other 16 companies launching discovery collaborations with PeptiDream include Amgen, AstraZeneca, Bristol-Myers Squibb, Eli Lilly, GlaxoSmithKline, Novartis, Mitsubishi Tanabe, Daiichi Sankyo, Merck, Sanofi, Teijin, Kyorin, Ipsen, Genentech, Shionogi, Asahi Kasei—and Janssen, under an up-to-$1.15 billion collaboration initiated in April.

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Related questions

01What was this study about?

It has been noted in around 20 percent of the world population suffers from some form of pain or the other. In many individuals, pain may be relieved initially with pain medications, but soon tolerance develops, and there is a decrease in the efficacy of pain relievers. One of the main symptoms of IBS seen commonly in many sufferers is chronic abdominal pain. Professor Lewis said, "All pains are complex, but gut pain is particularly challenging to treat and affects around 20 percent of the world's population. Current drugs are failing to produce effective pain relief in many patients before side effects limit the dose that can be administered." Professor Brierley echoed this statement saying, "Internal organs have a complex network of sensory nerves that have a wide array of voltage-gated ion channels and receptors to detect stimuli... The hypersensitivity of these nerves in disease often contributes to the development of pain."

Source: www.news-medical.net ↗
02So, how can this definition challenge be overcome?

To precisely define self and non-self peptides and, in turn, self-similarity, we must first improve our understanding of the adaptive immune cascade and its constituent components. In brief, the fundamental unit of adaptive immune recognition comprises the major histocompatibility complex (MHC) molecules (called the human leukocyte antigen [HLA] in humans), the peptide being presented (and, in turn, identified as self or non-self), and the T cell receptor.

Source: www.news-medical.net ↗
03What roles does the system play?

The endogenous opioids and their receptors are widely distributed throughout the central and peripheral nervous systems, particularly the parts of these systems that regulate pain, emotion, reward, stress responses, motivation, drug addiction, and autonomic control. The differential expression and location of the various receptor subtypes across different neurons account for the wide range of opioid-related behaviors. The activation of µ-opioid receptors is mainly known for playing a role in pain relief. Still, research has also indicated it may be involved in behaviors related to survival, such as appetite and reproduction. The activity of µ-opioid receptors is also known to play a critical role in responses to social stimuli by modulating responses to social rejection or social acceptance, for example. Activation of the δ-opioid receptors and κ-opioid receptors is also known to be involved in pain modulation. Also, studies have shown that NOP activation is involved in pain mechanisms and several behaviors related to psychological stress. Alterations in the endogenous opioid system are suspected to be involved in Parkinson's disease, seizures, neuroprotective mechanisms, and depression.

Source: www.news-medical.net ↗
04What was done in this study?

In the study, published in Scientific Reports, the researchers built on their earlier discovery of the peptide called AC253. This compound was tested in mice with AD. It was found to block the attachment of beta-amyloid to a brain cell receptor called the amylin receptor, and thus inhibit its toxic effects, as shown by an improvement in spatial memory. However, it is difficult to administer this compound because it doesn’t cross the blood-brain barrier in large amounts, and is quickly broken down in the blood. The dosage must therefore be massively increased, pushing up the amounts required for efficacy and increasing the difficulty of administration, besides enhancing the chances of an immune reaction. One way out is to convert the formulation into a pill rather than an injectable form. The complex structure of AC253 makes this difficult as well. Instead, the team devised an ingenious solution. They cleaved the compound into smaller amylin peptides, or chains of 12-14 amino acids, and tested each for its anti-amyloid activity in old mice which showed signs of AD. In this way, they found two short peptides that had the same effects as the larger compound. In particular, the researchers identified a segment that was common to both peptides, namely, SQELHRLQTY.

Source: www.news-medical.net ↗
05What is nisin?

Some bacterial species produce antimicrobial peptides known as bacteriocins that have been used in the food industry as preservatives. For example, nisin, which is produced by Lactococcus lactis, has broad-spectrum bactericidal activity and has been used as a food preservative throughout the world. Nisin is effective in controlling Gram-positive bacteria such as Clostridioides difficile. In combination with other compounds like ethylene diamine tetra-acetic acid and cinnamaldehyde, nisin has been effective in controlling enterotoxigenic Gram-negative bacteria such as Escherichia coli. Previous studies have used chicken and mouse models to demonstrate the in vivo efficacy of nisin on the microbiome, whereas nisin efficacy has been proven in ex vivo experiments on the human microbiome. To date, no studies have assessed the in vivo effects of nisin in large mammals.

Source: www.news-medical.net ↗
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Longevity, Performance & Obesity Research

A research peptide formulation developed to investigate metabolic regulation, mitochondrial function, and nutrient-sensing pathways.

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Peptide Therapy Guide Editorial Team

Editorial team for Peptide Therapy Guide.

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