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Rabbit Laminin

Updated: 2026-07-15

Overview

Rabbit laminin is a naturally occurring extracellular matrix protein that plays a critical role in cell adhesion, differentiation, and tissue organization. As a heterotrimeric glycoprotein, it consists of α, β, and γ chains that form cross-shaped structures. Sourced from rabbit tissues, this variant is particularly valued for its compatibility with certain mammalian cell cultures where species-specific interactions are required. In biomedical research, rabbit laminin serves as a superior substrate for coating culture surfaces, especially for sensitive primary cells and stem cells. Its biological activity mimics the native extracellular environment more accurately than synthetic alternatives, making it indispensable for studies requiring high physiological relevance.

Physical and Chemical Properties

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Rabbit laminin exhibits heat sensitivity, denaturing at temperatures above 56°C, which necessitates careful handling during reconstitution and sterilization. The protein shows optimal stability in neutral pH buffers (7.2-7.6) and requires divalent cations (e.g., Ca²⁺) for structural integrity. Its large molecular weight (800-1000 kDa) contributes to high viscosity in concentrated solutions. When lyophilized, the protein appears as a white to off-white powder that can be stored long-term at -20°C. Reconstituted solutions typically display low turbidity and should be aliquoted to prevent repeated freeze-thaw cycles, which can degrade its bioactivity. The extinction coefficient (E₁% at 280 nm) ranges from 12-15 for purity assessment.

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Main Applications

The primary use of rabbit laminin lies in creating bioactive coatings for cell culture vessels, enhancing attachment and growth of epithelial cells, neurons, and pluripotent stem cells. Researchers employ it to establish polarized cell layers in transwell assays and to maintain stem cell pluripotency without feeder layers. In tissue engineering, laminin scaffolds facilitate 3D organoid development and wound healing models. Its species-specific properties make it preferable for studies involving rabbit-derived cells or comparative biology. Recent applications extend to cancer research, where laminin-rich matrices help mimic tumor microenvironments for metastasis studies.

Safety and Storage

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While non-toxic, rabbit laminin requires biosafety level 1 or 2 handling due to its animal origin. Users should wear PPE to prevent endotoxin exposure or allergic reactions. Sterile filtration through 0.22 μm membranes is recommended for solutions, as autoclaving destroys protein structure. Long-term storage demands temperatures below -20°C for lyophilized forms, while working solutions should be kept at -80°C in single-use aliquots. Thawing must occur gradually at 4°C to prevent aggregation. Suppliers typically provide certificates analyzing endotoxin levels (<1 EU/μg) and mycoplasma contamination to ensure safety standards.

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B2B Procurement Guide

When sourcing rabbit laminin, prioritize suppliers with ISO 13485 certification for consistent quality. Key specifications to verify include: purity (>90% by SDS-PAGE), biological activity (validated by cell adhesion assays), and low endotoxin levels. Batch-to-batch consistency is crucial for reproducible experiments. For bulk purchases (1-100 mg), negotiate pricing tiers and request stability data. Consider synthetic peptide alternatives (e.g., laminin-derived RGD sequences) for cost-sensitive applications where full-length protein isn't essential. Lead times often extend to 4-6 weeks for customized preparations, so plan procurement accordingly.

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