api in pharmaceutical company

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PQQ is a quinone compound that was first discovered in the early 1970s. It is found in a variety of foods, particularly in fermented products, and is known to play a critical role as a cofactor in enzymatic reactions. PQQ supports the function of certain dehydrogenases and is involved in cellular respiration, aiding the conversion of glucose and other substrates into energy. One of the key aspects of PQQ is its ability to stimulate mitochondrial biogenesis, a process that enhances the number and function of mitochondria within cells.


Disinfection is an essential phase in wastewater treatment aimed at eliminating pathogenic microorganisms. Chlorine is perhaps the most recognized disinfectant, effective in killing bacteria, viruses, and protozoa. However, its usage can lead to the formation of harmful byproducts, such as trihalomethanes.


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The incorporation of anti-static additives in plastics offers several benefits. First and foremost, it significantly reduces the risk of static-related issues, enhancing safety in environments where flammable materials are present. In the electronics industry, the use of anti-static materials is crucial to ensure the integrity of components and prevent costly damages due to ESD.


Formulation refers to the process of combining APIs with other substances to develop a viable drug product. These additional substances, often referred to as excipients, can include fillers, binders, preservatives, and stabilizers. The formulation is crucial because it determines the drug's stability, absorption, distribution, metabolism, and excretion (ADME) properties.


api and formulation in pharma

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1. Gastrointestinal Upset One of the most common side effects of theophylline is gastrointestinal distress, which can manifest as vomiting, diarrhea, or a loss of appetite. These symptoms can be distressing for both the dog and the owner, but they often subside once the dog's system adjusts to the medication or the dosage is adjusted by a veterinarian.


In the era of smart manufacturing, the development of pharma intermediates is also experiencing new opportunities. Utilizing advanced technologies like big data, artificial intelligence, and continuous flow chemistry, pharmaceutical companies can precisely control synthesis reactions, achieving efficient production of intermediates and customized batches of antibiotics. For example, real-time monitoring of reaction conditions and automatic parameter adjustments can significantly increase the yield and purity of intermediates, reduce by-product formation, and optimize antibiotic production processes.

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