Transfected Stable Cell Lines
Reliable | High-Performance | Wide Rage
Precision reporter, kinase, immune receptor, biosimilar, Cas9, and knockout stable cell lines for diverse applications.
Transfected Stable Cell Lines
Reliable | High-Performance | Wide Rage
Precision reporter, kinase, immune receptor, biosimilar, Cas9, and knockout stable cell lines for diverse applications.
Premade Virus Particles
Ready-to-Use | High Titer | Versatile Applications
Premade AAV, adenovirus, lentivirus particles, safe, stable, in stock.
Virus-Like Particles (VLPs)
Stable | Scalable | Customizable
Advanced VLPs for vaccine development (Chikungunya, Dengue, SARS-CoV-2), gene therapy (AAV1 & AAV9), and drug screening (SSTR2, CCR5).
Oligonucleotide Products
Precise | High Yield | Tailored Solutions
Accelerate your research with cost-effective LncRNA qPCR Array Technology.
RNA Interference Products
Targeted | Potent | High Specificity
Human Druggable Genome siRNA Library enables efficient drug target screening.
Recombinant Drug Target Proteins
Authentic | Versatile | Accelerated
Providing functional, high-purity recombinant proteins—including membrane proteins and nanodiscs—to overcome bottlenecks in drug screening and target validation.
Clones
Validated | Reliable | Comprehensive Collection
Ready-to-use clones for streamlined research and development.
Kits
Complete | Convenient | High Sensitivity
Chromogenic LAL Endotoxin Assay Kit ensures precise, FDA-compliant endotoxin quantification for biosafety testing.
Enzymes
Purified | Stable | Efficient
Powerful Tn5 Transposase for DNA insertion and random library construction.
Aptamers
Highly Specific | Robust | Versatile
Aptamers for key proteins like ACVR1A, Akt, EGFR, and VEGFR.
Adjuvants
Enhancing | Synergistic | Effective
Enhance immune responses with high-purity, potent CpG ODNs.
Laboratory Equipment
Innovative | Reliable | High-Precision
Effortlessly streamline DNA extraction with CB™ Magnetic-Nanoparticle Systems.
Stable Cell Line Generation
Reliable | Scalable | Customizable
Fast proposals, regular updates, and detailed reports; strict quality control, and contamination-free cells; knockout results in 4-6 weeks.
Target-based Drug Discovery Service
Innovative | Comprehensive | Efficient
Target identification, validation, and screening for drug discovery and therapeutic development.
Custom Viral Service
Versatile | High-Yield | Safe
Unbeatable pricing, fully customizable viral packaging services (covering 30,000+ human genes, 200+ mammals, 50+ protein tags).
Custom Antibody Service
Precise | Flexible | Efficient
End-to-end antibody development support, from target to validation, enabling clients to rapidly obtain application-ready antibodies.
Antibody-Drug Conjugation Service
Integrated | Controlled | Translational
Comprehensive solutions covering design, development, and validation to ensure conjugated drugs with consistent quality and clinical potential.
Protein Degrader Service
Efficient | High-Precision | Advanced Therapeutics
Harness the power of protein degraders for precise protein degradation, expanding druggable targets and enhancing therapeutic effectiveness for cutting-edge drug discovery.
Nucleotides Service
Accurate | Flexible | High-Quality
Custom synthesis of oligonucleotides, primers, and probes for gene editing, PCR, and RNA studies.
Custom RNA Service
Custom RNA ServicePrecise | Flexible | GMP-ReadyCustom
RNA design, synthesis, and manufacturing—covering mRNA, saRNA, circRNA, and RNAi. Fast turnaround, rigorous QC, and seamless transition from research to GMP production.
Custom Libraries Construction Service
Comprehensive | High-throughput | Accurate
Custom cDNA, genomic, and mutagenesis libraries for drug discovery, screening, and functional genomics.
Gene Editing Services
Precise | Efficient | Targeted
Gene editing solutions for gene editing, knockouts, knock-ins, and customized genetic modifications. Integrated multi-platform solutions for one-stop CRISPR sgRNA library synthesis and gene screening services
Microbe Genome Editing Service
Precise | Scalable | Customizable
Enhance microbial productivity with advanced genome editing using Rec-mediated recombination and CRISPR/Cas9 technologies.
Biosafety Testing Service
Reliable | Comprehensive | Regulated
Complete biosafety testing solutions for gene therapy, viral vectors, and biologics development.
Plant Genetic Modification Service
Advanced | Sustainable | Tailored
Genetic modification for crop improvement, biotechnology, and plant-based research solutions.
Plant-based Protein Production Service
Efficient | Scalable | Customizable
Plant-based protein expression systems for biopharmaceuticals, enzyme production, and research.
Aptamers Service
Innovative | Fast | Cost-Effective
Revolutionizing drug delivery and diagnostic development with next-generation high-throughput aptamer selection and synthesis technologies.
CGT Biosafety Testing
Comprehensive | Accurate | Regulatory-compliant
Internationally certified evaluation system for biologics, gene therapies, nucleic acid drugs, and vaccines.
Pandemic Detection Solutions
Rapid | Precise | Scalable
Balancing accuracy, accessibility, affordability, and rapid detection to safeguard public health and strengthen global response to infectious diseases.
cGMP Cell Line Development
Reliable | Scalable | Industry-leading
Stable expression over 15 generations with rapid cell line development in just 3 months.
Supports adherent and suspension cell lines, offering MCB, WCB, and PCB establishment.
GMP mRNA Production
Efficient | Scalable | Precise
Scalable mRNA production from milligrams to grams, with personalized process design for sequence optimization, cap selection, and nucleotide modifications, all in one service.
GMP Plasmid Production
High Quality | Scalable | Regulatory-compliant
Our plasmid production services span Non-GMP, GMP-Like, and GMP-Grade levels, with specialized options for linearized plasmids.
GMP Viral Vector Manufacturing
Scalable | High Yield | Quality-driven
Advanced platforms for AAV, adenovirus, lentivirus, and retrovirus production, with strict adherence to GMP guidelines and robust quality control.
AI-Driven Gene Editing and Therapy
Innovative | Precision | Transformative
AI-powered one-click design for customized CRISPR gene editing strategy development.
AI-Antibody Engineering Fusion
Next-Generation | Targeted | Efficient
AI and ML algorithms accelerate antibody screening and predict new structures, unlocking unprecedented possibilities in antibody engineering.
AI-Driven Enzyme Engineering
Smart | Efficient | Tailored
High-throughput enzyme activity testing with proprietary datasets and deep learning models for standardized and precise enzyme engineering design.
AI-Enhanced Small Molecule Screening
Predictive | Efficient | Insightful
Leverage AI to uncover hidden high-potential small molecules, prioritize leads intelligently, and reduce costly trial-and-error in early drug discovery.
AI-Driven Protein Degrader Drug Development
Innovative | Targeted | Accelerated
Use AI-guided design to optimize protein degraders, addressing design complexity and enhancing efficacy while shortening development timelines.
| Cat.No. | Product Name | Price |
|---|
| Cat.No. | Product Name | Price |
|---|
| Cat.No. | Product Name | Price |
|---|
| Cat.No. | Product Name | Price |
|---|
The CDH5 gene is located on the long arm of human chromosome 16 (16q22.1) and belongs to the cadherin superfamily. Comprising many exons and encoding a precursor protein (preproprotein) that undergoes proteolytic cleavage to generate a mature glycoprotein, the gene spans over 78 kb. Comprising five conventional extracellular cadherin repeats, a transmembrane domain, and a highly conserved cytoplasmic tail, the CDH5 protein is Its special biological activities depend on these structural elements.
By binding calcium ions, the extracellular cadherin repeats facilitate homophilic adhesion, therefore allowing selective intercellular adhesion. CDH5 interacts with proteins like α-catenin in the cytoplasm to attach to the cytoskeleton and control cell polarity by means of signal transduction.
CDH5 is a core component of endothelial cell-cell adhesion. Stable junctions vital for vascular permeability and homeostasis are formed via homophilic adhesion with nearby cells. Studies have shown that CDH5 malfunction disturbs vascular barriers, hence increasing vascular leakage and aggravating inflammation and associated vascular disorders.
By means of recruiting and activating polarity protein complexes like the Par complex and signaling pathways like Rap1, CDH5 controls endothelial cell polarity and vascular lumen development. Both adult vascular homeostasis and embryonic vascular development depend on this capacity.
Moreover engaged in chromatin remodeling and gene control is CDH5. Target gene expression may be controlled and chromatin structure can be changed by CDH5 interacting with epigenetic regulators including the NuRD complex. Its functions in tumor suppression and regulation of gene expression are rooted in this mechanism.
Figure 1. Cadherin 5 (VE-cadherin) maintains endothelial barrier integrity by regulating claudin-5 expression and junction organization, while its destabilization by factors like VEGF or ROS disrupts this balance, promoting barrier breakdown. (Gavard J, et al., 2008)
Breast, prostate, and lung cancers among other types of cancer have been linked to aberrant expression of the CDH5 gene. Often in tumors, the chromosomal region 16q22.1—where CDH5 resides—loses heterozygosity (LOH), therefore causing functional loss. Such gene loss is linked in breast and prostate malignancies to more tumor invasiveness and metastasis.
By weakening intercellular connections, downregulation of CDH5 protein lets cancer cells separate, infiltrate nearby tissues, and enter the lymphatic or circulatory systems, hence generating metastases. Fascinatingly, restoring CDH5 expression has been demonstrated to lower tumor cell invasiveness, hence underscoring its therapeutic target value.
Angiogenesis and vascular barrier integrity depend much on CDH5. Its malfunction has been connected to many diseases connected to blood vessels. Many times including damage to endothelium adhesion, inflammatory disorders also affect CDH5, therefore aggravating vascular leakage and inflammation. Moreover, several inherited disorders caused by CDH5 mutations cause endothelial dysfunction, therefore compromising homeostasis and vascular development.
Strategies aiming at CDH5's expression or activity have great potential for cancer treatment as its importance in tumor development is clear. Small-molecule medicines or gene therapy methods restoring CDH5 expression, for example, might reduce cancer cell invasiveness. Moreover, creating medications aiming at CDH5-associated signaling pathways might provide fresh options for cancer therapy.
In vascular disorders, increasing CDH5 activity might help to restore vascular homeostasis and assist in the healing of vascular barriers. Correcting CDH5 mutations by gene-editing technology might help certain hereditary vascular diseases' symptoms go better. Furthermore, a fascinating future path of study is using CDH5-related molecular markers for early illness diagnosis and prognosis assessment.
A critical member of the traditional cadherin family, the CDH5 gene is essential for tumor suppression, vascular homeostasis, and intercellular adhesion. Diseases including cancer and vascular-related illnesses are intimately linked with its aberrant expression or malfunction. Future studies on CDH5 will provide important new perspectives on its processes in many tissues and disease environments.
Unresolved questions, including their particular functions in many physiological and pathological settings, need further research. Improved knowledge of CDH5 and its regulating systems would not only clarify the molecular foundations of disorders but also open the path for creative therapy approaches and precision medicine.
References:
Contact us today for a free consultation with the scientific team and discover how Creative Biogene can be a valuable resource and partner for your organization.
Inquiry
Copyright © Creative Biogene. All rights reserved.