Customer Favorite Iphase Monkey(rhesus) Lung Microsomes,female Save 60% Now [f67FlPLu]
IPHASE Monkey(Rhesus) Lung Microsomes, FemaleIPHASE Monkey(Rhesus) Lung Microsomes, Female, are a premium-grade product designed for researchers and scientists in the field of pharmacology and toxicology. These microsomes are derived from female Rhes
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Customer Favorite Iphase Monkey(rhesus) Lung Microsomes,female Save 60% Now [f67FlPLu]
IPHASE Monkey(Rhesus) Lung Microsomes, Female
IPHASE Monkey(Rhesus) Lung Microsomes, Female, are a premium-grade product designed for researchers and scientists in the field of pharmacology and toxicology. These microsomes are derived from female Rhesus monkeys, offering a reliable source of lung tissue for comprehensive studies. Our microsomes are processed under strict quality control measures to ensure the highest purity and consistency.- High Purity: Our lung microsomes undergo rigorous purification processes to remove contaminants and impurities, guaranteeing high purity levels.
- Consistent Quality: Standardized protocols are employed to maintain consistent quality across batches, ensuring reliable results in your experiments.
Key Features and Specifications
IPHASE Monkey(Rhesus) Lung Microsomes, Female, come with several key features that make them an ideal choice for various research applications. These microsomes are rich in enzymes and other cellular components, making them suitable for studying drug metabolism and toxicity.- Enzyme Content: Our microsomes contain a high concentration of relevant enzymes, such as cytochrome P450, which are essential for drug metabolism studies.
- Cellular Components: The microsomes are preserved with minimal disruption to cellular components, allowing for accurate assessments of drug absorption, distribution, metabolism, and excretion (ADME) processes.
Practical Applications and Benefits
IPHASE Monkey(Rhesus) Lung Microsomes, Female, offer numerous practical applications in the pharmaceutical and biotechnology industries. These microsomes are particularly useful for preclinical drug development, where understanding the ADME properties of new compounds is crucial.- Preclinical Drug Development: Our microsomes facilitate the evaluation of drug metabolism and toxicity, helping to identify potential drug candidates with favorable ADME profiles.
- Academic Research: These microsomes are an invaluable resource for academic researchers studying lung biology and pharmacology, providing a reliable model system for in vitro experiments.
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