Maxima H Minus Double-Stranded cDNA Synthesis Kit
Maxima H Minus Double-Stranded cDNA Synthesis Kit
Thermo Scientific™

Maxima H Minus Double-Stranded cDNA Synthesis Kit

Thermo Scientific Maxima H Minus Double-Stranded cDNA Synthesis Kit is a complete system for efficient synthesis of double-stranded cDNA fromRead more
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Catalog NumberQuantity
K256110 Reactions
K256250 Reactions
K2563200 Reactions
Catalog number K2561
Price (USD)/ Each
580.65
Online Exclusive
686.00
Save 105.35 (15%)
Add to cart
Quantity:
10 Reactions
Request bulk or custom format
Price (USD)/ Each
580.65
Online Exclusive
686.00
Save 105.35 (15%)
Add to cart
Thermo Scientific Maxima H Minus Double-Stranded cDNA Synthesis Kit is a complete system for efficient synthesis of double-stranded cDNA from total RNA or mRNA. First- and second-strand cDNA synthesis reactions are performed in the same tube without the need for intermediate organic extraction or ethanol precipitation steps. This convenient single-tube format speeds up the synthesis procedure and maximizes cDNA recovery. The kit contains pre-mixed components to reduce the number of pipetting steps necessary to complete the procedure.

Features of the Maxima H Minus Double-Stranded cDNA Synthesis Kit include:
• Efficient synthesis of full-length double-stranded cDNA
• Fast—procedure completed in less than two hours
• Convenient—pre-mixed components
• Complete—includes all primers, controls and residual RNA removal reagents

Applications
• Full-length double-stranded blunt-end cDNA synthesis for cloning
• Double-stranded cDNA library construction

WARNING: Cancer and Reproductive Harm – www.P65Warnings.ca.gov
For Research Use Only. Not for use in diagnostic procedures.
Specifications
Final Product TypeDouble Stranded cDNA
Format10 reactions
No. of Reactions10 Reactions
Optimal Reaction Temperature50°-55° C
Product LineMaxima
Product TypecDNA Synthesis Kit
Quantity10 Reactions
Reaction FormatSeparate Components
Reverse TranscriptaseMaxima H Minus
Sample TypeRNA
For Use With (Application)Cloning
Unit SizeEach