Human OAT3 (G) SLC Transporter Cells
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Human OAT3 (G) SLC Transporter Cells
Gibco™

Human OAT3 (G) SLC Transporter Cells

TRANSiPORT Human OAT3 (G) SLC Transporter Cells are HEK293 cells that transiently overexpress the OAT3 solute carrier (SLC) transport protein.자세히 알아보기
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카탈로그 번호수량
GM1104G8–10M cells
카탈로그 번호 GM1104G
제품 가격(KRW)
685,000
온라인 행사
Ends: 31-Dec-2025
856,000
할인액 171,000 (20%)
Each
카트에 추가하기
수량:
8–10M cells
제품 가격(KRW)
685,000
온라인 행사
Ends: 31-Dec-2025
856,000
할인액 171,000 (20%)
Each
카트에 추가하기
TRANSiPORT Human OAT3 (G) SLC Transporter Cells are HEK293 cells that transiently overexpress the OAT3 solute carrier (SLC) transport protein. Solute carriers are a super-family of membrane transporters that can affect pharmacokinetics and drug exposure by governing the transport of solutes in and out of cells. The OAT3 SLC transporter protein is found in kidney proximal tubule, choroid plexus, and brain endothelial cells.

• Assess potential for transporter-mediated drug metabolism
• Easy to use format
• Obtain high quality results with a large signal-to-noise ratio

Choice of measurement system
Cell-based assays can be performed using radioisotope-labeled compounds, fluorescence-labeled compounds, or non-labeled compounds. The amount of substrate transported into the cells can be measured directly using a liquid scintillation counter, fluorescence plate reader, or LC-MS/MS, thereby allowing direct evaluation of SLC transporter activity.

Assay reliability
Mock HEK293 cells (Cat. No. GM1101G) that do not overexpress the SLC transporter are available for use as a negative experimental control. Some compounds may demonstrate high background levels of transport due to the presence of endogenous transporters or non-specific binding.

Rapid results
The convenient product format enables data generation in 2 days from thawing of the cells to final results.

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GM1108G Human OCT1 (G) SLC Transporter Cells
GM1113G Human NTCP (G) SLC Transporter Cells
GM1114G Human MATE1 (G) SLC Transporter Cells
GM1115G Human MATE2K (G) SLC Transporter Cells
GM1101G Mock Cells

사양
셀 수8-10 x 106 cells
제품 유형SLC Transporter Cell
수량8–10M cells
세포주293 (HEK)
Culture TypeMammalian Cell Culture
Human
Unit SizeEach
구성 및 보관
Store in liquid nitrogen vapor phase.

자주 묻는 질문(FAQ)

What are TRANSiPORT human solute carrier (SLC) transporter cells?

TRANSiPORT human SLC transporter cells are HEK293 cells that transiently overexpress a solute carrier (SLC) transporter protein. Solute carriers are one of two superfamilies of membrane transporters that can affect pharmacokinetics and drug exposure by governing the transport of solutes into and out of cells. Membrane transporters are found in hepatic cells, kidney proximal tubule cells, intestinal cells, and brain cells.

Find additional tips, troubleshooting help, and resources within our Drug Discovery & Development Support Center.

Is there a protocol available for the TRANSiPORT solute carrier (SLC) transporter cells?

Yes, the protocol is available here (https://www.genomembrane.com/information).

What should I use as a control with TRANSiPORT solute carrier (SLC) transporter cells?

Mock HEK293 cells (Cat. No. GM1001) that do not overexpress the SLC transporter are available for use as a negative experimental control. Some compounds may demonstrate high background levels of SLC transport due to the presence of endogenous transporters or non-specific binding.

With TRANSiPORT solute carrier (SLC) transporter cells, what should my choice of measurement be for SLC transporter activity?

Cell-based assays can be performed using radioisotope-labeled compounds, fluorescence-labeled compounds, or non-labeled compounds. The amount of substrate transported into the cells can be measured directly using a liquid scintillation counter, fluorescence plate reader, or LC-MS/MS, thereby allowing direct evaluation of SLC transporter activity.

How many cells can I expect in one vial of TRANSiPORT solute carrier (SLC) transporter cells?

One vial contains 8-12 million cells with high viability, designed to seed one 24-well plate for single use.