Lipofectamine™ RNAiMAX Transfection Reagent
Lipofectamine™ RNAiMAX Transfection Reagent
Lipofectamine™ RNAiMAX Transfection Reagent
Lipofectamine™ RNAiMAX Transfection Reagent
Invitrogen™

Lipofectamine™ RNAiMAX Transfection Reagent

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Lipofectamine™ RNAiMAX Transfection Reagent는 어느 세포유형에든 siRNA-mediated gene knockdown 실험에 최고의 transfection efficiency를 제공합니다. Lipofectamine™ RNAiMAX는 어떤 세포 유형에든 siRNA와자세히 알아보기
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카탈로그 번호수량
137781000.1 mL
137780750.75 mL
137781501.5 mL
137780300.3 mL
1377850015 mL
카탈로그 번호 13778100
제품 가격(KRW)
126,000
Online offer
Ends: 31-Dec-2025
140,000
할인액 14,000 (10%)
Each
카트에 추가하기
수량:
0.1 mL
제품 가격(KRW)
126,000
Online offer
Ends: 31-Dec-2025
140,000
할인액 14,000 (10%)
Each
카트에 추가하기
Lipofectamine™ RNAiMAX Transfection Reagent는 어느 세포유형에든 siRNA-mediated gene knockdown 실험에 최고의 transfection efficiency를 제공합니다. Lipofectamine™ RNAiMAX는 어떤 세포 유형에든 siRNA와 miRNA를 이입할 수 있는 본사 고유의 RNAi-specific cationic lipid formulation입니다.

Lipofectamine™ RNAiMAX Transfection Reagent의 혜택:
• 높은 RNAi 농도가 필요없는 우수한 transfection efficiency로 비특이적 영향을 최소화하며 효과적인 gene knockdown 가능
• transfection reagent의 10배 농도에서도 세포독성이 낮아 최적화 용이함
• miRNA antagonist 및 mimic에 대한 높은 transfection efficiency
• 광범위한 세포 유형에 사용이 가능해 유전자 발현 억제 실험에 다양한 용도로 적용 가능함
• 결과의 일관성과 재현성을 보장하는 간편하고 신속한 프로토콜

다양한 세포에서 우수한 Knockdown 성능을 발휘함
Lipofectamine™ RNAiMAX Transfection Reagent는 다양한 세포 유형에 transfection이 가능합니다(그림 1). gene silencing 시에도 Lipofectamine™ RNAiMAX Transfection Reagent의 형질감염 효율이 높아 확실한 결과를 얻기 위해 필요한 gene knockdown을 할 수 있습니다.

간편한 고성능 transfection
간단히 Lipofectamine™ RNAiMAX Transfection Reagent를 siRNA와 혼합하여 세포에 주입하고 배양해 gene knockdown을 측정하세요. 간편한 사용법과 빠른 속도, 높은 transfection efficiency로 Lipofectamine™ RNAiMAX Transfection Reagent은 high-throughput siRNA transfection에 이상적인 시약입니다. 이런 적용에 사용되는 자동 로봇 시스템의 transfection condition에 쉽게 부합됩니다.

cell line에 최적화된 Lipofectamine™ RNAiMAX transfection protocol을 찾아보세요.

이 제품은 연구용으로만 사용 가능합니다. 치료 또는 진단 목적으로 동물이나 인간에 사용할 수 없습니다.
For Research Use Only. Not for use in diagnostic procedures.
사양
용도(애플리케이션)Transfection
그린 기능Sustainable packaging
고처리량 호환성High-throughput Compatible
제품라인Lipofectamine
제품 유형Transfection Reagent
수량0.1 mL
혈청 호환 가능Yes
배송 조건Approved for shipment at Room Temperature or on Wet Ice
셀 유형Established Cell Lines, Stem Cells, Primary Cells, Hard-to-Transfect Cells
형식6-well Plate, 12-well Plate, 24-well Plate, 48-well Plate, 96-well Plate, Flasks
샘플 종류siRNA, Synthetic siRNA, RNAi Plasmids (shRNA, miR), RNAi, miRNA
Transfection TechniqueLipid-based Transfection
Unit SizeEach
구성 및 보관
Each unit contains one vial of reagent. Store at 2–8°C.

자주 묻는 질문(FAQ)

I'm seeing cell death after transfection using Lipofectamine RNAiMAX Reagent. What should I do?

Remove antibiotics from the medium during transfection, as this can cause stress leading to cell death. Try adjusting both lipid and siRNA quantities. Use cells with lower passage number for better viability. Consider assaying for microbes such as Mycoplasma that are not detected easily in cell culture.

Find additional tips, troubleshooting help, and resources within our Transfection Support Center.

I accidentally kept my Lipofectamine RNAiMAX Reagent at room temperature. Can I still use it?

Yes, all of our lipid transfection reagents are stable at room temperature for months.

Find additional tips, troubleshooting help, and resources within our Transfection Support Center.

I accidentally froze my Lipofectamine RNAiMAX Reagent. Can I still use it?

Freezing can alter the integrity and composition of the lipid particles. The performance of the reagent may be affected and it may only work for the first week or so. It is safer to use a new vial.

Find additional tips, troubleshooting help, and resources within our Transfection Support Center.

I accidentally left my lipid reagent at room temperature. Can I still use it?

Yes, all of our lipid transfection reagents are stable at room temperature for months.

Find additional tips, troubleshooting help, and resources within our Lipid-Based Transfection Support Center.

What positive transfection control can I use with Lipofectamine RNAiMAX?

BLOCK-iT Alexa Fluor Red Fluorescent Control (Cat. No. 14750100) can be used as an indicator of transfection efficiency of siRNA. This dye can be detected using standard filter sets designed for Alexa Fluor 555, Cy3, DsRed, Texas Red, or Rhodamine Red fluorophores.

Find additional tips, troubleshooting help, and resources within our Transfection Support Center.

인용 및 참조 문헌 (39)

인용 및 참조 문헌
Abstract
Authors:
Journal:
PubMed ID:17804805
EPLIN mediates linkage of the cadherin catenin complex to F-actin and stabilizes the circumferential actin belt.
Authors:Abe K, Takeichi M,
Journal:Proc Natl Acad Sci U S A
PubMed ID:18093941
'The cadherin-catenin complex is the major machinery for cell-cell adhesion in many animal species. This complex in general associates with actin fibers at its cytoplasmic side, organizing the adherens junction (AJ). In epithelial cells, the AJ encircles the cells near their apical surface and forms the "zonula adherens" or "adhesion ... More
Cytohesins are cytoplasmic ErbB receptor activators.
Authors:Bill A, Schmitz A, Albertoni B, Song JN, Heukamp LC, Walrafen D, Thorwirth F, Verveer PJ, Zimmer S, Meffert L, Schreiber A, Chatterjee S, Thomas RK, Ullrich RT, Lang T, Famulok M,
Journal:Cell
PubMed ID:20946980
'Signaling by ErbB receptors requires the activation of their cytoplasmic kinase domains, which is initiated by ligand binding to the receptor ectodomains. Cytoplasmic factors contributing to the activation are unknown. Here we identify members of the cytohesin protein family as such factors. Cytohesin inhibition decreased ErbB receptor autophosphorylation and signaling, ... More
The spectrin cytoskeleton influences the surface expression and activation of human transient receptor potential channel 4 channels.
Authors:Odell AF, Van Helden DF, Scott JL,
Journal:J Biol Chem
PubMed ID:18048348
'Despite over a decade of research, only recently have the mechanisms governing transient receptor potential channel (TRPC) channel function begun to emerge, with an essential role for accessory proteins in this process. We previously identified a tyrosine phosphorylation event as critical in the plasma membrane translocation and activation of hTRPC4 ... More
Frequent somatic mutations of GNAQ in uveal melanoma and blue naevi.
Authors:Van Raamsdonk CD, Bezrookove V, Green G, Bauer J, Gaugler L, O'Brien JM, Simpson EM, Barsh GS, Bastian BC,
Journal:Nature
PubMed ID:19078957
'BRAF and NRAS are common targets for somatic mutations in benign and malignant neoplasms that arise from melanocytes situated in epithelial structures, and lead to constitutive activation of the mitogen-activated protein (MAP) kinase pathway. However, BRAF and NRAS mutations are absent in a number of other melanocytic neoplasms in which ... More