(S)-(+)-Leucine For Synthesis | 8.16009.0025 | Merck

Merck Chemicals Dealer | eqipped

(S)-(+)-Leucine For Synthesis | 8.16009.0025 | Merck

High-purity (S)-(+)-Leucine for synthesis, ideal for biochemical research and protein studies. Lab-grade quality with reliable performance.

3,180.00

Description

Specifications Table

Product Name(S)-(+)-Leucine For Synthesis | 8.16009.0025 | Merck
Quantity/Pack Size25 GM
FormPowder
GradeFor Synthesis
ApplicationBiochemical research, protein synthesis, lab experiments

Product Description

(S)-(+)-Leucine is a high-purity amino acid essential for protein synthesis and biochemical research. This lab-grade leucine is sourced from Merck, ensuring consistent quality for your experiments. Whether you’re studying enzyme kinetics or peptide synthesis, this product delivers reliable results.

Researchers and students trust (S)-(+)-Leucine for its precision in lab applications. Its synthesis-grade purity makes it ideal for critical experiments where accuracy matters. If you’re looking to buy L-leucine for synthesis, this Merck product is a top choice.

Need high-quality L-leucine for your lab? Order now from eqipped for fast delivery.

This leucine variant is widely used in molecular biology, biochemistry, and pharmaceutical research. Its chiral purity ensures minimal interference in sensitive assays. For bulk purchases or regular lab supply needs, eqipped offers competitive pricing and reliable stock.

FAQs

What is (S)-(+)-Leucine used for in labs?

It’s primarily used in protein synthesis, enzyme studies, and as a supplement in cell culture media.

Is this leucine suitable for research-grade applications?

Yes, this is a synthesis-grade product from Merck, ideal for high-precision research.

Can I buy L-leucine in bulk from eqipped?

Absolutely. eqipped offers bulk purchase options for labs and institutions.

What’s the shelf life of this product?

When stored properly, it remains stable for 2-3 years. Check the label for exact expiry.

How is this different from regular L-leucine?

This is a chiral-specific (S)-(+)-variant with higher purity for synthesis applications.

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