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55 Results were found on Technologies

Leading Researchers:
2-2020-1469

A Generic Approach Constructing an Evolutionary Stable Genetic Circuit

Any genetic circuit engineered in any organism will cause a huge metabolic load on its host, compiling the organism to manufacture numerous proteins against his own benefit thus greatly decreasing its fitness. Random mutations that arise during normal DNA replication or during DNA damage repair dictate that it’s unavoidable outcome that the genetic circuit will […] Read More >

Leading Researchers:
2023-0080

Deep Cell-Type Deconvolution From Bulk Gene Expression Data

It is becoming clear that bulk gene expression measurements represent an average over very different cells. Elucidating the expression and abundance of each of the encompassed cells is key to disease understanding and precision medicine approaches. A first step in any such deconvolution is the inference of cell type abundances in the given mixture. To […] Read More >

Leading Researchers:
2023-0076

Designing Novel Protein-protein Interaction Modulators with Generative Models

UNMET NEED• Protein-protein interactions (PPIs) are essential components of all cell signaling pathways and important therapeutic targets. However, the design of PPI modulators, especially in the form of small molecules, remains a major challenge.• Interfering with PPIs is especially challenging when one of the interactors is a disordered protein (i.e., with no stable structure).• Peptides, […] Read More >

Leading Researchers:
2-2021-1715

Culturing a plurality of cell types on a 3D-printed microfluidic chip

Organ-on-a-Chip platforms provide rich opportunities to observe interactions between different cell types under in vivo-like conditions. Co-culturing and the application of flow and other mechanical forces organoids, mimic 3D tissue structure and greatly enrich the data collection from such platforms. ‘Insert-chip’ is a cost-efficient, reusable, modular organ-on-a-chip platform that allows co-culturing and overcome scientific data […] Read More >

Leading Researchers:
2-2020-1440

Novel Anti-Tumor Response treatment targeting ErbB receptors and Nucleolin interactions

ErbBs subfamily receptors are mediators of cell growth signals. They have long been associated with a wide variety of lung, ovarian, colon, breast, prostate, and other carcinomas. Nucleolin is a major nucleolar protein of growing eukaryotic cells and is present on the cell surface of a range of cancers. Recently, a robust oncogenic interaction between […] Read More >

Leading Researchers:
2-2015-869

COPRUDUCTION OF SUSTAINABLE FOOD & MATERIALS FROM SEAWEED

The Need Global population growth together with enhanced quality of life, in the era of climate change, is expected to cause doubling of the world’s food and energy demand by 2050. Furthermore, there is a strong interest in the replacement of fossil-based industries towards economical, environmentally friendly, and sustainable resource, for food, chemical and energy […] Read More >

Leading Researchers:
2-2017-1108

Early Detection of Ovarian Cancer

We developed a novel proteomic diagnostic assay for detection of epithelial ovarian cancer, offering: • High sensitivity for early stage disease to increase the likelihood of cure. • High specificity for potential delay of risk-reducing surgical procedure. • Early ovarian cancer diagnosis for all age-groups and risk-groups (i.e., BRCA carriers). THE NEED Over 240,000 new […] Read More >

Leading Researchers:
2-2020-1444

MAPPING THE SITES OF INTERACTION OF THE SMALL GTPASE RAB12 WITH ITS RILP FAMILY EFFECTOR PROTEINS

We have recently shown that the small GTPase Rab12, which was previously shown to control housekeepingfunctions, such as autophagy and iron regulation1,2, negatively regulates degranulation of mastcells (MCs), by binding and recruiting the RILP-dynein motor complex to the MC secretory granules(SGs), and driving their retrograde transport, thus restricting degranulation3. These results havemarked the Rab12-RILP complex […] Read More >

Leading Researchers:
10-2015-950

Mirna for the Treatment of Metastatic Breast Cancer

Metastasis is the primary cause for mortality in breast cancer. We showed that breast cancer metastasis can be prevented by miR-96 or miR-182 treatment. We found that miR-96/miR-182 downregulates Palladin protein levels, thereby reducing breast cancer cell migration and invasion. A hydrogel-embedded, gold-nanoparticle-based delivery vehicle provides efficient local, selective, and sustained release of miR-96/miR-182, markedly […] Read More >

Leading Researchers:
2-2019-1276

A Cost-Effective On-Site Cell-Free Biomolecules Manufacturing

ABSTRACT On-site biomolecules production is a need for many applications such as drug screening, personalized therapeutics, remote clinics, and more. CONTRALL is a silicone chip that enables cost-effective production and purification of biomolecules (proteins, Abs, etc.). The technology is especially useful for the on-site production of simple and complex biomolecules, thus surpassing the need for a […] Read More >

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