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Cutting-edge Magnetic Bead Technology Supplies Superior RNA Purity, Return, and Effectiveness for Molecular Research.

Shanghai, China– [15th July]– Lnjnbio (Shanghai Lingjun Biotechnology Co., Ltd.), a leading carrier of cutting-edge life science research study services, is proud to announce the release of its Magnetic Beads for Pet Tissue Complete RNA Extraction Set. This advanced kit is designed to simplify the isolation of premium total RNA from a variety of animal cells, supplying researchers a reliable, trustworthy, and automation-friendly option to conventional column-based and phenol-chloroform removal approaches.

Changing RNA Extraction with Magnetic Bead Modern Technology
The Lnjnbio Magnetic Beads for Animal Tissue Overall RNA Removal Package utilizes a proprietary magnetic bead-based purification system that makes certain rapid, high-purity RNA isolation with very little hands-on time. By leveraging optimized surface chemistry and magnetic splitting up, this package gets rid of the need for centrifugation, vacuum cleaner filtration, or hazardous natural solvents, dramatically reducing handling time while taking full advantage of RNA stability.


(Lnjnbio Magnetic Beads for Animal Tissue Total RNA Extraction Kit)

Key Includes & Advantages

Outstanding RNA Pureness & Return

Exclusive magnetic grains uniquely bind RNA while efficiently getting rid of impurities such as healthy proteins, genomic DNA, and chemical inhibitors.

A260/A280 ratios constantly ≥ 1.9, guaranteeing optimal pureness for downstream applications like NGS and qPCR.

Quick & User-Friendly Operations

Complete extraction in as low as 20– half an hour, a considerable enhancement over traditional techniques.

No centrifugation or column transfers required– just mix, bind, clean, and elute.

Effective lysis barrier system guarantees full cells interruption also for coarse or lipid-rich samples.

Automation-Ready for High-Throughput Labs

Completely suitable with liquid handling robots (e.g., KingFisher, Biomek, Tecan) for seamless integration right into automated operations.

Suitable for large genomic studies, medical research study, and commercial applications.


( Electropherogram of Lnjnbio Magnetic Beads)

Dynamic Binding Capacity: Up to 50 µg RNA per mg of beads, accommodating a wide range of input tissue weights (10– 50 mg).

RNase-Free Assurance: All elements are carefully checked to avoid RNA deterioration.

Technical Emphasizes

1. Superior Magnetic Grain Performance

Grain Composition: High-capacity silica-coated magnetic fragments with uniform size (1– 3 µm) make certain regular RNA binding effectiveness.

Dynamic Binding Ability: Approximately 50 µg RNA per mg of grains, accommodating a wide variety of input tissue weights (10– 50 mg).

RNase-Free Guarantee: All elements are carefully examined to stop RNA destruction.

2. Maximized Buffer System

Lysis Buffer: Rapidly interrupts tissues while supporting RNA, even in RNase-rich atmospheres.

Clean Buffers: Successfully get rid of contaminations without jeopardizing RNA return.

Elution Barrier: Low-EDTA formulation makes certain compatibility with delicate downstream assays.

3. Rigorous Quality Control

Each set undertakes endotoxin screening, DNase/RNase recognition, and performance benchmarking against market requirements.

Guaranteed > 90% intact RNA (RIN ≥ 8.0) for requiring applications like single-cell sequencing.

Supplier Introduction

Shanghai Lingjun Biotechnology Co., Ltd. was established in 2016 and is an expert producer of biomagnetic products and nucleic acid extraction reagents.

We have abundant experience in nucleic acid extraction and purification, healthy protein filtration, cell separation, chemiluminescence and various other technological fields.

Our products are widely used in many fields, such as medical testing, genetic testing, university research, genetic breeding, and so on. We not only provide products but can also undertake OEM, ODM, and other needs. If you have related needs about Polystyrene carboxyl microspheres, please feel free to contact us at sales01@lingjunbio.com.

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