PureLink™ HiPure Plasmid Midiprep Kit
Invitrogen™

PureLink™ HiPure Plasmid Midiprep Kit

신속하고 간단한 프로토콜 - 2시간 내에 혈장 DNA를 정제함 • 간단해진 과정 - 엔도톡신과 기타 오염물을 제거해야 하는 추가 단계가자세히 알아보기
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카탈로그 번호수량Includes
K21000550 Preps
K21000425 Preps
카탈로그 번호 K210005
제품 가격(KRW)
768,000
온라인 행사
Ends: 30-Sep-2026
853,000
할인액 85,000 (10%)
Each
수량:
50 Preps
제품 가격(KRW)
768,000
온라인 행사
Ends: 30-Sep-2026
853,000
할인액 85,000 (10%)
Each
신속하고 간단한 프로토콜 - 2시간 내에 혈장 DNA를 정제함

• 간단해진 과정 - 엔도톡신과 기타 오염물을 제거해야 하는 추가 단계가 필요없습니다.

• Megapreps와 Gigapreps는 진공 지원 카트리지를 사용하여 시간을 줄여줍니다.

PureLink™ HiPure Plasmid Purification System은 광범위한 범위에서 순도(1) 높은 혈장 DNA 를 분리하도록 만들어졌습니다(표 1). 간단한 프로토콜 음이온 교환 레진으로 cesium chloride 구배를 통해 two-pass에 버금가는 수준으로 혈장 DNA (그림 1)을 정제할 수 있습니다 - 가장 확실한 DNA 정제법. RNA, 단백질, 엔도톡신 등 오염물을 제거해야 하는 추가 단계를 실시할 필요없이 2시간 내에 transfection할 수 있는 수준으로 DNA를 정제합니다(그림 2). 추가적으로 phenol, chloroform, ethidium bromide, cesium chloride을 제거하여 위험물 노출과 처리를 최소화합니다.
For Research Use Only. Not for use in diagnostic procedures.
사양
용리량5 mL
최종 제품 유형BAC DNA, Plasmid DNA
용도(애플리케이션)Next-Generation Sequencing, Transfection, Cloning, Sequencing, Transformation, Nucleic Acid Labeling, PCR, In Vitro Transcription
고처리량 호환성Not High-throughput Compatible (Manual)
반응 수50 Preps
플라스미드<40kb, Low Copy Plasmid, High Copy Plasmid, BAC
프렙 스케일100-200 μg (Medium-Scale) Plasmid DNA
제품라인PureLink
제품 유형Plasmid MidiPrep Kit
순도Transfection Grade
수량50 Preps
샘플 종류Bacterial Culture
배송 조건Room Temperature
시스템 유형PureLink™
타겟BAC DNA, Plasmid DNA
테스트 시간2 hr.
수율350 μg
형식Column
Isolation TechnologyAnion Exchange Resin
Unit SizeEach
구성 및 보관
• 200 mL Resuspension Buffer (R3)
• 1.5 mL RNase A
• 200 mL Lysis Buffer (L7)
• 200 mL Precipitation Buffer (N3)
• 2 × 250 mL Equilibration Buffer (EQ1)
• 2 x 500 mL Wash Buffer (W8)
• 250 mL Elution Buffer (E4)
• 30 mL TE Buffer
• 50 HiPure Columns
• 10 Column Holders

Store all components at room temperature.

자주 묻는 질문(FAQ)

I'm getting low/no plasmid DNA after purification using a PureLink HiPure kit, even though there was measurable absorbance. Do you have any suggestions for what I can do?

A common problem encountered with absorbance measurements is turbidity of samples. (This could be caused by residual resin from the column.) If there is insoluble material in the cuvette (not often detected by the naked eye), much of the UV light is not absorbed but scattered, leading to an artificially high UV absorbance reading (at 260 or 280 nm, for example.) If your A260 is high, we recommend that you check the A320 to determine if there is resin in the sample. You can also try to centrifuge or filter (0.2 µm filter) your sample to remove any resin and then recheck the concentration.

I've run out of buffer when using the PureLink HiPure Plasmid Purification Kit (Cat. No. K210018). Can I purchase the buffers separately?

Yes, we would recommend purchasing the PureLink HiPure BAC Buffer Kit (Cat. No. K210018). This kit includes Resuspension Buffer (R3) (250 ml), Lysis Buffer (L7) (250 ml), Precipitation Buffer (N3) (250 ml), and RNase A (20 µg/ml) (5 ml).
You will need to add less RNase A than stated on the bottle label of the R3 buffer in this kit. It says to add 5.6 mL of RNase A. This is the correct amount for the BAC protocol; however, if you are performing standard plasmid isolation, 1.4 mL RNase A should be added.

Plasmid DNA isolated using a PureLink column-based purification kit from an endA+ strain is degraded after a restriction digest. Do you have a suggestion for this?

The HiPure kits should remove all protein from the DNA including endonucleases. For the silica-based PureLink Quick Plasmid Miniprep Kit, we recommend an extra wash with the optional Wash Buffer W10 to remove endonucleases. This solution is not compatible with the HiPure system and should not be used with those kits. Alternatively, heat the eluted DNA in TE for 10 min at 70 degrees C. This should heat-inactivate any contaminating nucleases.

I'm seeing extra bands present after plasmid purification using your PureLink column-based system. What could cause this to happen?

Extra bands can occur when plasmid DNA is nicked and/or permanently denatured. Plasmid DNA that has been nicked (covalently opened) will run slower than supercoiled DNA during electrophoresis. A small amount of this species of DNA is common and is suitable for downstream applications. Permanently denatured DNA will migrate ahead of the supercoiled DNA and may not be suitable for downstream applications. Do not allow the lysis reaction to proceed longer than 5 minutes.

My purified DNA has particles in it after column-based plasmid purification. Any suggestions?

We have seen this on occasion. The particles do not affect quality of the DNA. Remove the particles by performimg a 1 minute centrifugation at 12,000 x g.

인용 및 참조 문헌 (7)

인용 및 참조 문헌
Abstract
Structural basis for ADAM17 activation by the iRhom1 pseudoprotease.
Authors:Ungvary JN,Maciag JJ,Alnajjar HF,Dávila EM,Slone CE,Thomas JE,Rich MF,Carazo SA,Ifergan I,Perez-Aguilar JM,Blobel CP,Seegar TCM
Journal:Cell reports
PubMed ID:42024498
The a disintegrin and metalloproteinase (ADAM)-17 releases pro-inflammatory cytokines, including tumor necrosis factor-α, and several epidermal growth factor receptor ligands from cells. ADAM17 is post-translationally regulated by the inactive rhomboid pseudoproteases iRhom1 and iRhom2, and dysregulation of this signaling axis contributes to diseases ranging from chronic inflammation to cancer. Here, ... More
Tools for genetic engineering and gene expression control in Novosphingobium aromaticivorans and Rhodobacter sphaeroides.
Authors:Hall AN,Hall BW,Kinney KJ,Olsen GG,Banta AB,Noguera DR,Donohue TJ,Peters JM
Journal:Applied and environmental microbiology
PubMed ID:39324814
Alphaproteobacteria have a variety of cellular and metabolic features that provide important insights into biological systems and enable biotechnologies. For example, some species are capable of converting plant biomass into valuable biofuels and bioproducts that have the potential to contribute to the sustainable bioeconomy. Among the Alphaproteobacteria, Novosphingobium aromaticivorans, Rhodobacter ... More
Protocol to evaluate the inflammatory response in human macrophages induced by SARS-CoV-2 spike-pseudotyped VLPs.
Authors:Ouyang MJ,Ao Z,Olukitibi TA,Yao XJ
Journal:STAR protocols
PubMed ID:36853685
The excessive release of pro-inflammatory cytokines in COVID-19 patients is deleterious to organs. The contribution of SARS-CoV-2 spike protein (S) to the inflammatory response is essential to understand its pathogenesis and virulence. Here, we present a protocol to produce and characterize HIV- and SARS-CoV-2-based virus-like particles and then evaluate the inflammatory ... More
CRISPR/Cas9-mediated tissue-specific knockout and cDNA rescue using sgRNAs that target exon-intron junctions in Drosophila melanogaster.
Authors:Chilian M,Vargas Parra K,Sandoval A,Ramirez J,Yoon WH
Journal:STAR protocols
PubMed ID:35719725
In this protocol, we take CRISPR/Cas9 and Gal4/UAS approaches to achieve tissue-specific knockout in parallel with rescue of the knockout by cDNA expression in Drosophila. We demonstrate that guide RNAs targeting the exon-intron junction of target genes cleave the genomic locus of the genes, but not UAS-cDNA transgenes, in a ... More
The inhibitory receptor TIM-3 limits activation of the cGAS-STING pathway in intra-tumoral dendritic cells by suppressing extracellular DNA uptake.
Authors:de Mingo Pulido Á,Hänggi K,Celias DP,Gardner A,Li J,Batista-Bittencourt B,Mohamed E,Trillo-Tinoco J,Osunmakinde O,Peña R,Onimus A,Kaisho T,Kaufmann J,McEachern K,Soliman H,Luca VC,Rodriguez PC,Yu X,Ruffell B
Journal:Immunity
PubMed ID:33979578
Blockade of the inhibitory receptor TIM-3 shows efficacy in cancer immunotherapy clinical trials. TIM-3 inhibits production of the chemokine CXCL9 by XCR1( ) classical dendritic cells (cDC1), thereby limiting antitumor immunity in mammary carcinomas. We found that increased CXCL9 expression by splenic cDC1s upon TIM-3 blockade required type I interferons ... More