User manuals and SDS form can be obtained from ambrdlabs@gmail.com
As the size of the tissue sample used for nucleic acid isolation decreases, the rate of material loss increases and the efficiency of DNA isolation decreases. Thus, there is a certain tissue amount range in which standard kits used for DNA isolation. For amounts below this range, it is essential to use specially designed sensitive systems. The Micro Tissue DNA Isolation Kit allows the isolation of DNA with high efficiency and purity from tissue samples of less than 2 mg.
As the size of the tissue sample used for nucleic acid isolation decreases, the rate of material loss increases and the efficiency of DNA isolation decreases. Thus, there is a certain tissue amount range in which standard kits used for DNA isolation. For amounts below this range, it is essential to use specially designed sensitive systems. The Micro Tissue DNA Isolation Kit allows the isolation of DNA with high efficiency and purity from tissue samples of less than 2 mg.
In a normal adult's blood, the number of white blood cells containing DNA is 5-10 thousand per microliter, while the number of red blood cells, which do not contain DNA because they do not have a nucleus, is between 4-6 million per microliter. The low number of white blood cells and the high amount of hemoglobin carried in red blood cells cause both a decrease in efficiency and protein contamination in the isolate obtained as a result of the use of ordinary isolation kits. The specially designed Blood Genomic DNA Isolation Kit allows the isolation of DNA from white blood cells with high efficiency and purity.
Isolating DNA from FFPE (formalin-fixed, paraffin-embedded) tissues is challenging due to DNA fragmentation and cross-linking caused by formaldehyde fixation. Our new FFPE DNA Isolation Kit is specifically developed to address these issues, providing high-quality, amplifiable DNA from even the most difficult samples. With an optimized deparaffinization and lysis process, the kit ensures efficient recovery and purity—perfect for molecular diagnostics, cancer research, and archival tissue analysis.
DNA isolation from amniotic fluid or chorionic villus samples requires overcoming low DNA quantities and potential contaminants. Our Prenatal DNA Isolation Kit is specifically optimized to efficiently extract high-quality genomic DNA from these sample types, ensuring minimal degradation and impurities. The robust protocol delivers pure DNA suitable for prenatal genetic screening, diagnostic testing, and molecular research applications.
Isolating extracellular or cell-free DNA (cfDNA) is demanding due to its low abundance and fragmented nature. Our Extracellular DNA Isolation Kit offers a highly efficient and sensitive method to extract cfDNA from plasma, serum, and other biological fluids. With optimized spin column binding chemistry and minimal DNA loss, this kit delivers high-purity DNA suitable for liquid biopsy, cancer diagnostics, prenatal testing, and precision medicine applications.
Isolating DNA from stool samples is notoriously challenging due to the presence of PCR inhibitors and complex sample composition. Our new Stool DNA Isolation Kit is expertly designed to overcome these hurdles, delivering high-quality, inhibitor-free DNA suitable for even the most sensitive downstream applications. With optimized buffer chemistry and a streamlined protocol, this kit ensures maximum yield, purity, and reliability—ideal for microbiome analysis, pathogen detection, and genetic studies.
Urine contains low levels of DNA and various inhibitors such as urea, beta-human chorionic gonadotropin. Many types of crystals can precipitate and form large pellets that can interfere with DNA extraction using commercially available kits. Using a streamlined protocol and specialized buffer system, our Urine DNA Isolation Kit enables both genomic and cell-free DNA isolation from minimal input—ideal for non-invasive sampling, biomarker discovery, and genetic monitoring in research settings.
Isolating DNA from sperm cells is difficult due to their highly compacted chromatin and resilient nuclear membrane. Our Sperm DNA Isolation Kit is specially formulated to efficiently break down these barriers, providing high-yield, high-purity DNA ideal for fertility research, forensic analysis, and genetic studies. With a robust lysis buffer and optimized protocol, the kit ensures consistent results and preserves DNA integrity, making it a reliable choice for demanding laboratory applications.
Isolating viral DNA and RNA can be difficult due to low viral loads and the need to preserve nucleic acid integrity. Our new Viral DNA/RNA Isolation Kit is designed for rapid, efficient extraction from a wide range of sample types, including swabs, serum, and tissue. With optimized lysis and purification steps, the kit delivers high-yield, high-purity viral nucleic acids—ideal for diagnostic testing, epidemiological studies, and molecular virology research.
The cell walls of bacterial cells are resistant to osmotic pressure and cell disrupting chemicals used in general DNA isolation kits. Specific enzymes are needed to break down the peptidoglycan molecules that make up the cell wall. Since the composition of the cell wall may differ between species, a single type of enzyme may not be sufficient for every bacteria. The Bacterial DNA Isolation Kit allows the isolation of genomic DNA from a wide spectrum of bacteria thanks to the optimum enzyme mixture it contains.
Plasmid extraction requires selective isolation of circular plasmid DNA while keeping genomic DNA and proteins effectively separated. Because plasmids vary in copy number and bacterial strains differ in membrane robustness, standard lysis conditions may not yield consistent results. The Plasmid Isolation Kit ensures efficient and reproducible plasmid purification through its optimized lysis system and special buffer formulation, enabling high-quality plasmid DNA recovery from a wide range of bacterial cultures.
The cell wall of yeast cells consists of highly glycosylated glycoproteins, β-glucans and chitin. The composition of these macromolecules can vary considerably between species as well as according to the growth conditions. Yeast specific lytic enzymes are needed to rupture cell wall for efficient nucleic acid isolation. Yeast Genomic DNA Isolation Kit is specifically designed for isolation of genomic DNA from a broad spectrum of mold and yeast species and any fungi whose cell walls are susceptible to enzyme lysis.
Conventional DNA isolation procedures from plants results in copurification of polysaccharides and other secondary metabolites which adeversely affect downstream enzymatic reactions. DNA yield varies between different species and tissues depending on genome size, ploidy, cell number and age of the tissue sample. Our Plant DNA Isolation Kit is specially designed to extract genomic, plasmid and mitochondrial DNA from wide range of plant species and tissues, free of downstream application inhibitors.
Isolating DNA from high polyphenol-containing plant tissues is challenging due to oxidation and strong inhibitors. Our High Polyphenol Plant DNA Isolation Kit is specially formulated with advanced antioxidants and inhibitor removal reagents to prevent DNA degradation and eliminate contaminants, delivering high-yield, pure DNA free from polysaccharides and polyphenols—ideal for PCR, cloning, and genomic studies in plants with tough secondary metabolite profiles.
Soil samples present unique challenges for DNA isolation due to the presence of humic acids, heavy metals, and other PCR inhibitors. Our new Soil DNA Isolation Kit is expertly engineered to overcome these obstacles, delivering high-quality, inhibitor-free DNA from a wide range of soil types. With efficient lysis chemistry and powerful purification steps, this kit ensures excellent yield and purity—ideal for environmental microbiology, metagenomics, and agricultural research.
Environmental DNA (eDNA) isolation is challenging due to low DNA concentrations and the presence of diverse inhibitors in water, soil, and sediment samples. Our Environmental DNA Isolation Kit is specially formulated to capture trace amounts of DNA while efficiently removing contaminants. With a sensitive, high-yield extraction process and inhibitor-free output, this kit is ideal for biodiversity monitoring, ecological research, and conservation studies across a variety of environmental conditions .
Isolating DNA from food products is difficult due to complex matrices and processing chemicals that can degrade nucleic acids. Our Food DNA Isolation Kit is optimized to extract pure, high-quality DNA from a wide range of food types, including processed, raw, plant-based, and animal-derived samples. With efficient removal of inhibitors, it is perfect for food authentication, allergen detection, GMO testing, and quality control in food safety labs.