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Home > Biochemical Engineering
Biochemical engineering transforms laboratory findings from biotechnology into industrial-scale production processes. This field, often termed biochemical engineering, encompasses various facets such as fermentation engineering, large-scale cultivation of animal and plant cells, enzyme engineering, biochemical reaction engineering, downstream engineering (biological separation engineering), biological functional elements (like enzyme electrodes), and the control and optimization of biochemical techniques. Biochemical engineering emerges from merging modern biotechnology with conventional chemical technology, and it is a discipline that successfully applies the principles and methods of chemical engineering to the industrial development of biotechnology laboratories.

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11218 Biochemical Engineering items

Cbz-beta-Amino-L-alanine

CAS No: 35761-26-3

Formula: C11H14N2O4

Categories: Biochemical Engineering > Amino Acids and Derivatives

White SolidMore

Azilsartan medoxomil

CAS No: 863031-21-4

Formula: C30H24N4O8

Categories: Biochemical Engineering > Inhibitors

Azilsartan medoxomil(TAK 491) is an orally administered angiotensin II receptor type 1 antagonist with IC50 of 0.62 nM, which used in the treatment of adults with essential hypertension. IC50 Value: 0.62 nM [2]Target: AT1 receptorin vitro: In aortic endothelial cells, azilsartan inhibited cell proliferation at concentrations as low as 1 μmol/l, whereas valsartan showed little or no antiproliferative effects at concentrations below 10 μmol/l. Antiproliferative effects of azilsartan were aMore

3-Amino-2-naphthoic acid

CAS No: 5959-52-4

Formula: C11H9NO2

Categories: Biochemical Engineering > Amino Acids and Derivatives

yellow-green to green powderMore

trans-1-Benzoyl-4-phenyl-L-proline

CAS No: 120851-71-0

Formula: C18H17NO3

Categories: Biochemical Engineering > Amino Acids and Derivatives

Glycitin

CAS No: 40246-10-4

Formula: C22H22O10

Categories: Biochemical Engineering > Biosynthetic Natural Products

Glycitin is a natural isoflavone isolated from legumes; promotes the proliferation of bone marrow stromal cells and osteoblasts and suppresses bone turnover. More

FUCHSIN BASIC

CAS No: 58969-01-0

Formula: C20H20ClN3

Categories: Biochemical Engineering > Biochemical Reagents

green crystalline powderMore

N-[[2-[[[4-(Aminoiminomethyl)phenyl]amino]methyl]-1-methyl-1H-benzimidazol-5-yl]carbonyl]-N-(2-pyridinyl)-beta-alanine ethyl ester hydrochloride

CAS No: 211914-50-0

Formula: C27H29N7O3.HCl

Categories: Biochemical Engineering > Amino Acids and Derivatives

Dabigatran ethyl ester hydrochloride is a potent inhibitor of ribosyldihydronicotinamide dehydrogenase (NQO2) with an IC50 value of 0.8 μM and a thrombin inhibitor. More

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Vitexin 2′′-O-rhamnoside

CAS No: 64820-99-1

Formula: C27H30O14

Categories: Biochemical Engineering > Chinese Herbs

Vitexin-2-O-rhamnoside, a main flavonoid glycoside of the leaves of Cratagus pinnatifida Bge, contributes to the protection against H2O2-mediated oxidative stress damage and has potential to treat cardiovascular system diseases[1]. More

(2S)-1-Methyl-2-pyrrolidinemethanol

CAS No: 34381-71-0

Formula: C6H13NO

Categories: Biochemical Engineering > Hydrocarbons and Derivatives

white to light yellow crystal powdeMore

PF-01367338

CAS No: 459868-92-9

Formula: C19H18FN3O5P

Categories: Biochemical Engineering > Inhibitors

Rucaparib (AG-014699, PF-01367338) is a potent and oral PARP1/2/3 inhibitor, with a Ki of 1.4 nM for PARP1 in cell-free assay, also showing binding affinity to eight other PARP domains. More

3,4-Dicaffeoylquinic acid

CAS No: 14534-61-3

Formula: C25H24O12

Categories: Biochemical Engineering > Plant Extracts

3,4-Dicaffeoylquinic acid is a reference substance of a common phytochemical found in Echinacea (Echinacea sp.); dietary supplement, herb, or plant testing applications with this reference material include material characterization, adulterant identification, or method validation. More

H-GLN-OTBU HCL

CAS No: 39741-62-3

Formula: C9H19ClN2O3

Categories: Biochemical Engineering > Antineoplastics

White to off-white powderMore

N-Fmoc-N'-trityl-D-histidine

CAS No: 135610-90-1

Formula: C40H33N3O4

Categories: Biochemical Engineering > Amino Acids and Derivatives

White powderMore

1-tert-Butoxycarbonylaminocyclopentanecarboxylic acid

CAS No: 35264-09-6

Formula: C11H19NO4

Categories: Biochemical Engineering > Amino Acids and Derivatives

white to off-white crystalline powderMore

Boc-L-cyclopropylglycine

CAS No: 155976-13-9

Formula: C10H17NO4

Categories: Biochemical Engineering > Amino Acids and Derivatives

White to yellow solidMore

Frequently Asked Questions

What are the applications of biochemical engineering?

Biochemical engineering has wide-ranging applications, including the industrial production of enzymes, vaccines, antibiotics, and biofuels; environmental protection through wastewater treatment and bioremediation; and fermentation processes in the food and beverage industry.

What is biochemical oxygen demand (BOD)?

Biochemical Oxygen Demand (BOD) measures the amount of oxygen consumed by biochemical reactions in water, serving as an indicator of organic pollutant levels. For example, sewage discharge can raise BOD, reducing oxygen availability and harming aquatic life. Biochemical engineers use biochemical techniques and treatment processes to reduce BOD, ensuring safer water ecosystems and supporting environmental sustainability.

Biochemical engineering vs biomedical engineering?

Biochemical engineering focuses on applying biochemical reactions and techniques for industrial-scale production of biological products. In contrast, biomedical engineering combines engineering principles with medical sciences, concentrating on designing medical devices, diagnostic tools, and therapies. While biochemical engineering emphasizes industrial bio-product production, biomedical engineering aims to improve healthcare outcomes through technology.

What is biochemical engineering?

Biochemical engineering is a branch of engineering that emerged in the 1980s, focusing on the large-scale production of biochemical products. It integrates principles from biology, chemistry, and engineering to study biochemical reactions and techniques. This field investigates intracellular components such as proteins, sugars, lipids, and nucleic acids, which are essential for producing various biological substances, including enzymes, vaccines, and biofuels.

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