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For general laboratory use.
Please centrifuge briefly before opening (volume ≤2 ml).Shipping: shipped on gel packs
Storage Conditions: store at -20 °C
store dark
Short term storage (up to 3 months) at 4 °C possible.Shelf Life: 12 months
Form: liquid
Concentration: 2x conc.
Spectroscopic Properties: λexc 495 nm, λem 520 nm (dye bound to DNA)
Description:
Saphir LAMP GreenMaster is a complete 2x conc. master mix for isothermal amplification of DNA. The mix is based on a genetically optimized Bst polymerase that allows rapid and specific amplification of DNA at constant temperature (60 to 65 °C). The enzyme shows high strand displacement activity and generates an amplification factor of up to 109 which is comparable to approx. 30 cycles in a PCR assay. LAMP technique allows detection of a target gene within 10 - 30 minutes.Content:
Saphir LAMP GreenMaster
Saphier Bst Polymerase, dNTPs, reaction buffer, glycerol, green-fluorescent DNA stain, additives and stabilizersPCR-grade water
Detection
The mix contains a green-fluorescent DNA stain that intercalates into DNA during the amplification process and allows the direct quantification of target DNA by fluorescence detection (analogous to real-time PCR).
The mix can be combined with ROX reference dye (#PCR-351) to allow a signal normalization in real-time PCR instruments that are compatible with the evaluation of the ROX signal.Assay design
Isothermal amplification is an extremely sensitive detection method and care should be taken to avoid contamination of set-up areas and equipment with DNA of previous reactions. A problem may be amplification in no-template controls due to carry-over contamination or amplification of unspecifically annealed primers or primer dimer formations.Primer design
Typically, 4 different primers are used to identify 6 distinct DNA regions allowing the specific amplification of a target gene. An additional pair of primers further accelerates the amplification allowing to cut down the total detection time to 10-20 min.
The manual design of primers may be challenging due to the complex reaction sequence. To simplify the design process the use of a primer design software is recommended.
As sensitivity and non-template amplification of in-silico designed primers may vary, the evaluation of 2 - 4 real primer sets before choosing a final set is recommended.
Assay set-up
A reaction volume of 20-50 μl is recommended for most applications. Pipet with sterile filter tips and perform the set-up in an area separate from DNA preparation or analysis. No-template controls should be included in all amplifications.
First, prepare a 10x conc. primer pre-mix. Second, set-up the isothermal amplification assay:component stock conc. final conc. 20 μl 50 μl Saphir LAMP GreenMaster 2x 1x 10 μl 25 μl Primer Mix 10x 1x 2 μl 5 μl Template DNA <500 ng/assay x μl x μl PCR-grade Water fill up to 20 μl fill up to 50 μl - Use a specific detection instrument for isothermal amplification or a real-time PCR cycler to run the assays
- Set the instrument to a constant incubation temperature between 60 to 65°C (depending on the primer annealing temperature)
- Measure the fluorescence intensity at an interval of 1 min for up to 30 min.
Trouble shooting
If amplification in no-template controls occurs the following points should be reviewed.Cross contamination from environments
- Clean equipment and areas with “DNA Away” solution
- Replace reagent stocks and pre-mixes with new components
- Stop reactions at an earlier point of time before non-template amplification occur
Carry-over contamination from previous reaction products- Avoid opening reaction vessels after amplification
- Use separate preparation area and equipment if post-reaction processing is necessary
Non-template amplification from primers- Increase incubation temperature stepwise by 1-2 °C
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产品组分
组分内容
型号 规格 储存温度
LAMP绿色预混液
PCR387-01 2x1.25ml -20°C LAMP绿色预混液
PCR387-02 10x1.25ml -20°C 操作手册
1 1 室温
*注意:在使用之前,应将溶液离心至管底。
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注意事项
保存建议 推荐蓝冰或冰袋运输。当您收到产品后,按照说明书建议保存各组分。 警告 本品仅供科研使用,请勿用于临床与诊断。 -
FAQ
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Simplified Loop-Mediated Isothermal Amplification-Based Method for Point-of-Care Detection of in Low-Resource Settings
Petr Jeřábek, Markéta Martínková, ..., Václav Martínek
ACS Omega | 2025 Jul 09 | 40727746
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