4titude® 96 Well Non-Skirted PCR Plate (Clear)
Brooks Life SciencesUniversal fit to standard 96 well blocks, moulded from virgin polypropylene under cleanroom conditions in our UK-based production laboratory.
Life sciences encompass a diverse range of scientific disciplines focused on the study of living organisms and their interactions with the environment. From basic life sciences (such as cell biology, genetics, immunology, and microbiology) to applied life sciences (such as disease research, multi-omics, and biotechnology), this broad field explores the fundamental processes of life and drives advancements in disease research, patient care, and our overall understanding of living organisms. Discover the endless possibilities of life sciences and their impact on shaping a healthier and more sustainable world.
Universal fit to standard 96 well blocks, moulded from virgin polypropylene under cleanroom conditions in our UK-based production laboratory.
Pre-perforated plate which easily tears into strips of 8 tubes or part plates giving a more cost effective solution than using half-empty plates or the fiddly separation of plates with scissors.
Our PCR plates are moulded from virgin polypropylene under clean-room conditions in our UK-based production laboratory, and comply with the same stringent requirements as our FrameStar® range.
This FrameStar® PCR plates are designed for and tested on ABI standard blocks. The patented two-component technology reduces evaporation from PCR plates, improving your results and allowing you to reduce the volume of expensive reagents to save you money.
Universal fit to standard blocks, designed with patented two-component technology that reduces evaporation from PCR plates, improving your results and allowing you to reduce the volume of expensive reagents to save you money.
This FrameStar® PCR plates are designed for and tested on ABI fast blocks. The patented two-component technology reduces evaporation from PCR plates, improving your results and allowing you to reduce the volume of expensive reagents to save you money.
Our FrameStar® Low Profile Break-A-Way plates offer you all the flexibility of tube strips, in a plate format. FrameStar® Break-A-Way is a vertically pre-perforated 96 well PCR plate that can easily be divided into smaller plate sections, ensuring no tubes are wasted.
Mass Spectrometry MS grade manufactured by Wako Pure Chemicals
ELISA-based assay for the detection and quantification of global DNA methylation in human genomic DNA
An efficient method to isolate nuclear and cytoplasmic RNA without cross-contamination
Enabling generation of genome-wide binding profiles from as few as 10,000 cells
For use with The LightSwitch™ Luciferase Assay System for analysis of promoter regulation
For use with The LightSwitch™ Luciferase Assay System to measure the impact of a 3´UTR on post-transcriptional regulation
Designed to identify the physical interactions of a miRNA with endogenous mRNA transcripts
Simple plate-based non-radioactive DNA-binding assays that facilitate the study of NFkB transcription factor activation in mammalian tissue and cell extracts
Complete solution for convenient, accurate monitoring of protein/DNA interactions
Simple solution for studying Nrf2 activation in human, mouse and rat model systems
An optimized and streamlined protocol for high-resolution genome-wide mapping of transcription factor binding sites in the human and mouse genomes
Providing the highest quality ChIP-enriched DNA for analysis by qPCR or Next Generation sequencing
Specially formulated to perform ChIP from PBMCs, including lymphocytes (T cells, B cells and NK cells), monocytes and dendritic cells
Modified ChIP assay that utilizes the CRISPR/Cas9 system to target a specific DNA locus for immunoprecipitation
Highly sensitive and rapid microplate-based assay to simplify the measurement of DNA methyltransferase activity
ELISA-based assay designed to detect and quantify 5-hydroxymethylcytosine (5-hmC) levels in genomic DNA from different sample types
Multiplex epigenetic assay for high throughput profiling of histone post-translational modifications