For research use only. We do not sell to patients.
Ionizable lipids / Lipid CSL3
Lipid CSL3 chemical structure
Product imageResearch use only
CAT. NO. DC68210Featured

Lipid CSL3

Ionizable lipid for LNP and nucleic-acid delivery research.

Pack size & price

USD
TotalUS$800
We match the best price and quality on market.
Ships from ShanghaiIce-pack transportPure lipid recommended
Product overview

Description & Application

CSL3 is a pH-switchable cationic lipid optimized for siRNA LNP delivery. Its core design features central pyridine and two ortho-methoxy groups, forming intramolecular hydrogen bonds under endosomal pH 5–6 to trigger conformational flip, which drives membrane fusion and efficient endosomal escape—an advantage absent in control lipid CSL4 without methoxy moieties. Formulated with DSPC, cholesterol and DMG-PEG2000 at a fixed molar ratio, CSL3-based LNPs achieve 85–95% siRNA encapsulation, uniform particle size and decent serum stability. In vitro tests show potent gene silencing with low cytotoxicity; in vivo intravenous administration enables obvious liver accumulation and dose-dependent Factor VII knockdown in mice, proving its great potential for hepatic RNAi therapeutic research.

CAS No.Not available
Chemical NameLipid CSL3
SynonymsNot available
SMILESNot available
FormulaNot available
M.WtNot available
Purity>98%
StoragePure form: −20 °C, 1 year; In solvent: −80 °C, 6 months; −20 °C, 1 month. Sealed and protected from light.
Shipping conditionShips from Shanghai. Pure lipid is stable during ice-pack transport.
PublicationNot available
Laboratory planning

Solution Calculators

The product molecular weight is prefilled when available and remains editable. Confirm solvent compatibility and solubility before preparation.

Mass = concentration × volume × molecular weight
Enter any three values to calculate the fourth.
C₁V₁ = C₂V₂
Enter any three values to calculate the fourth.
Preparing stock solutions

Quick preparation table

Solvent volumes update from the molecular weight above.

Mass1 mM5 mM10 mM
10 mgEnter molecular weightEnter molecular weightEnter molecular weight
25 mgEnter molecular weightEnter molecular weightEnter molecular weight
50 mgEnter molecular weightEnter molecular weightEnter molecular weight
100 mgEnter molecular weightEnter molecular weightEnter molecular weight
250 mgEnter molecular weightEnter molecular weightEnter molecular weight

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Contact our team with the catalog number and requested quantity.

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Handling guidance

Shipping, storage and sampling

How is the lipid shipped, and how should I store it?
We generally ship the neat (undissolved) lipid compound rather than an ethanol solution. The neat lipid is stable during transport with ice packs, and shipments originate from Shanghai. Pure form: store at −20 °C for up to 1 year. In solvent: store at −80 °C for up to 6 months or at −20 °C for up to 1 month. Keep sealed and protected from light. Avoid repeated thaw cycles for best results.
Pure lipid or solution — which should I choose?
Pure lipid is generally more stable during shipping and storage, so we usually recommend the pure form. A solution in ethanol or chloroform can be supplied when required by your workflow. Tell us the intended application, solvent and target concentration so the most suitable format can be confirmed.
How should I measure a small amount of oily or viscous lipid?
Ionizable lipids are often oily liquids or viscous semisolids, so material can be lost during repeated weighing or transfer. For a small pack, dissolve the entire quantity and aliquot it volumetrically. For example, add 1 mL ethanol to 25 mg lipid to prepare a 25 mg/mL stock, then use a pipette to withdraw the required amount. For quantities above 100 mg, direct weighing with an analytical balance may be more practical. Always confirm solvent compatibility and solubility first.
Can you support formulation optimization and scale-up?
Yes. Share the RNA cargo, target tissue, administration route, formulation method and assay plan. Our team can discuss starting molar ratios, N/P ratio and scale-up requirements for research workflows.