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Rabbit Gallbladder Epithelial Cells

Updated: 2026-07-15

Overview

Rabbit gallbladder epithelial cells (RGE cells) are specialized parenchymal cells that form the inner lining of the gallbladder. These polarized cells actively participate in bile concentration through water and electrolyte absorption while maintaining a barrier function. As a primary cell model, they offer species-specific advantages for comparative studies in digestive physiology. Researchers value their consistent morphological characteristics, including microvilli-covered apical surfaces and well-developed tight junctions, which closely mimic in vivo conditions.

Physical and Chemical Properties

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Freshly isolated RGE cells typically exhibit a cuboidal morphology with a diameter of 10-20 μm when cultured. They maintain epithelial-specific markers such as cytokeratin-7 and E-cadherin, with functional expression of bile acid transporters like ASBT (apical sodium-dependent bile acid transporter). The cells demonstrate typical epithelial electrical resistance (100-300 Ω·cm² in confluent monolayers) and survive best in specialized media containing 10% FBS, epidermal growth factor, and hydrocortisone. Cryopreserved variants usually show ≥80% viability post-thaw when properly processed with DMSO-based freezing media.

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Main Applications

These cells serve as critical tools for investigating biliary cholesterol crystallization mechanisms, a key process in gallstone formation. Pharmaceutical researchers utilize them to study hepatobiliary drug transport and metabolism, particularly for compounds undergoing enterohepatic recirculation. In toxicology, RGE cells model cholestatic injury responses and epithelial barrier dysfunction. Recent applications include co-culture systems with hepatocytes to create more physiologically relevant liver-gallbladder interaction models for preclinical testing.

Safety and Storage

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Primary RGE cells require Biosafety Level 2 containment due to potential zoonotic risks. All manipulations should occur in class II biological safety cabinets using sterile techniques. Cryovials must remain submerged in liquid nitrogen vapor phase (-150°C to -196°C) for long-term preservation. For active cultures, maintain strict CO₂ and humidity control (5% CO₂, 95% humidity at 37°C). Contamination risks increase with amphibian-derived sera, prompting many labs to use serum-free alternatives. Regular mycoplasma testing is recommended for extended cultures.

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B2B Procurement Guide

Reputable suppliers provide certificates of analysis including viability (≥85%), population doubling time (typically 24-36 hours), and species verification via PCR. Request lot-specific data on transporter functionality assays if studying bile acid kinetics. Consider ordering early-passage cells (P2-P5) for most applications, as higher passages may lose polarization capacity. Some vendors offer pre-plated transwell inserts for immediate barrier studies, though these command a 30-50% price premium. Lead times for custom isolations often exceed 6 weeks.

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