For research use only — not for human consumption

Senna Research
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Cartalax research vial

Bioregulators

In stock

Cartalax

Cartalax is a synthetic peptide studied in connective tissue and cartilage biology research. Laboratory investigations explore its interaction with chondrocytes and extracellular matrix signaling pathways associated with cartilage structure, cellular communication, and connective tissue maintenance.

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  • In stock — ready to ship
  • Controlled handling
Shipment issuesWe do not accept returns on released material. Wrong item, damage, or a missing package is resolved directly.

Specifications

Product & molecular data

Lot & handling

SKU
SR-2452
Category
Bioregulators
Storage
-20 °C, sealed, protected from light
Availability
In stock

Molecular

Sequence
Not available
Molecular formula
Not available
Molecular weight
Not available
CAS number
N/A
Storage conditions
−20 °C sealed and desiccated, protected from light
Format
Lyophilized Vial

Analytics

Testing & quality

When a lot certificate is on file we report identity, purity, and appearance. We publish analytical data only — never dosing information or outcome claims.

01

RP-HPLC

Chromatographic purity against a qualified reference standard.

02

LC-MS / ESI-MS

Identity by observed versus theoretical molecular mass.

03

Karl Fischer / Loss on Drying

Residual moisture in lyophilized material.

04

Endotoxin & Bioburden

Contaminant screening on raw material and finished lots.

Read the Quality Statement →

Research background

Published research context

Summary of the published literature this reference material is used in.

01

Telomere Biology

Investigated in cell-culture models of telomere maintenance and replicative ageing.

02

Gene Expression

Studied for reported effects on transcriptional regulation in experimental systems.

03

Senescence Models

Referenced in literature examining cellular senescence markers in vitro.

Chondrocyte Cellular Biology

Cartalax is frequently examined in laboratory models focused on chondrocytes, the specialized cells responsible for producing and maintaining cartilage tissue. These cells play a central role in regulating extracellular matrix composition and structural organization within connective tissues.

Researchers studying cartilage biology may utilize peptides like Cartalax to observe how signaling molecules interact with chondrocytes and influence cellular communication pathways. Experimental studies often analyze gene expression patterns, intracellular signaling systems, and molecular responses within cartilage cells.

Extracellular Matrix Regulation

Cartilage tissue relies heavily on the extracellular matrix, a complex network of structural proteins that provide mechanical support and regulate cellular behavior. Research involving Cartalax often examines how peptide molecules interact with signaling pathways associated with matrix production and maintenance.

Laboratory investigations may evaluate how peptides influence collagen synthesis, matrix organization, and cellular signaling within cartilage models. Understanding these processes helps researchers explore how connective tissues maintain structural stability and respond to biological stress.

Connective Tissue Research Models

Research focused on connective tissue frequently involves studying how cellular communication supports tissue maintenance and repair. Cartalax may be examined in experimental models designed to analyze the biological mechanisms involved in cartilage tissue organization.

By studying peptide interactions with cartilage cells and extracellular structures, researchers can gain insight into the signaling pathways that regulate connective tissue stability and cellular adaptation in laboratory environments.

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Mandatory research disclaimer

All materials on this site are sold as laboratory reagents for research use only. They are not drugs, foods, cosmetics, dietary supplements, or medical devices, and are not for human or veterinary use of any kind.

Senna Research makes no claims of safety or efficacy and provides no usage, dosing, or preparation guidance; we publish analytical data only.

These materials have not been evaluated or approved by the U.S. Food and Drug Administration for any use.