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Immobilised Enzymes

Enzymes catalyze biological reactions in our body, but they can also be used to catalyse industrial reactions outside the body. These enzymes are often bound to a support (‘ immobilized’) and can be used for a wide range of purposes.

Using enzymes instead of other molecules in reactions is useful because enzymes catalyze specific reactions and work at much lower temperatures than chemical catalysts.

The molecule that an enzyme acts on is called a substrate. Enzymes can either be mixed freely with the substrate in solution or immobilized to a solid support so they do not mix freely.

There are many advantages of immobilisation, one of which is that the enzymes can be reused – catalysing the same reaction many times. Binding the enzymes to a surface also makes them more stable and less likely to denature (lose their shape). In addition, there will be no enzyme left in the product at the end, so purification is not necessary.

There are several techniques used to immobilize enzymes. Which one is used depends on the enzymes, substrates and products.

One method is adsorption, in which enzymes are attached to a support (e.g. charcoal, glass beads or clay) through hydrophobic interactions and ionic bonds. Other methods involve different types of bonds and support.


Immobilised Enzymes for Cephalexin

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Immobilised Enzymes for Cephalexin
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We are counted amongst the most prominent manufacturers and suppliers of Immobilised Enzymes for Synthesis of Cephalexin using 7ADCA.

Considering the impact of chemical process on cost of production,environment, product yield, it is imperative to look for alternative approach by using enzyme catalyst.

Enzymatic route would have the following advantages:

  • Cost effective
  • Cosistent yield
  • Higher productivity
  • More number of cycles

 

 

 

 

 

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Immobilised Enzymes for Cefoxithin

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Immobilised Enzymes for Cefoxithin
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We are counted amongst the most prominent manufacturers and suppliers of Immobilised Enzymes for synthesis of Cefoxithin.

Considering the impact of chemical process on cost of production,environment, product yield, it is imperative to look for alternative approach by using enzyme catalyst.

Enzymatic route would have the following advantages:

•Reactions in aqueous phase ( no solvent)
•Reactions at ambient temperature
•Mild reaction conditions, hence no product degradation leading to better yields.
•Cost effective

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Immobilised Enzymes For Transesterification

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Immobilised Enzymes For Transesterification
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We are counted amongst the most prominent manufacturers and suppliers of Immobilised Enzymes for Transesterification.

The transesterification reaction is base catalyzed. Any strong base capable of deprotonating the alcohol will do (e.g. NaOH, KOH, Sodium methoxide etc.), but the sodium and potassium hydroxides are often chosen for their cost. The presence of water causes undesirable base hydrolysis, so the reaction must be kept dry.

The use of lipases makes the reaction less sensitive to high free fatty-acid content, which is a problem with the standard biodiesel process. One problem with the lipase reaction is that methanol cannot be used because it inactivates the lipase catalyst after one batch. However, if methyl acetate is used instead of methanol, the lipase is not in-activated and can be used for several batches, making the lipase system much more cost effective.[

Features:

  • Consistent quality
  • Highly effective
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Immobilised Enzyme for 7ADCA

Immobilised Enzyme for 7ADCA
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Yatinkumar Wani (Business Head)
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Thane - 421302, Maharashtra, India
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