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[Related PubMed/MEDLINE] Total Number of Papers: 27
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Abbreviation |
: CAL-A |
Long Form |
: Candida antarctica lipase A |
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No. |
Year |
Title |
Co-occurring Abbreviation |
1 |
2022 |
Encapsulation of lipases by nucleotide/metal ion coordination polymers: enzymatic properties and their applications in glycerolysis and esterification studies. |
CPs, DAG, LU, TAG |
2 |
2022 |
Lipase-catalyzed two-step hydrolysis for concentration of acylglycerols rich in omega-3 polyunsaturated fatty acids. |
MUFAs, PUFAs, TAGs |
3 |
2021 |
A Bi-Enzymatic Cascade Pathway towards Optically Pure FAHFAs*. |
--- |
4 |
2019 |
Discovery and characterization of a stable lipase with preference toward long-chain fatty acids. |
--- |
5 |
2018 |
Comparative features between recombinant lipases CALA-like from U. maydis and CALA from C. antarctica in thermal stability and selectivity. |
UMLA |
6 |
2018 |
Lipase-catalyzed hydrolysis of (R,S)-2,3-diphenylpropionic methyl ester enhanced by hydroxypropyl-beta-cyclodextrin. |
HP-beta-CD |
7 |
2017 |
Candida antarctica lipase A effectively concentrates DHA from fish and thraustochytrid oils. |
DHA |
8 |
2017 |
Enzyme engineering: A synthetic biology approach for more effective library generation and automated high-throughput screening. |
--- |
9 |
2017 |
Modification of fatty acid selectivity of Candida antarctica lipase A by error-prone PCR. |
epPCR |
10 |
2016 |
Orientating lipase molecules through surface chemical control for enhanced activity: A QCM-D and ToF-SIMS investigation. |
QCM-D, ToF-SIMS |
11 |
2016 |
Rationale behind the near-ideal catalysis of Candida antarctica lipase A (CAL-A) for highly concentrating omega-3 polyunsaturated fatty acids into monoacylglycerols. |
--- |
12 |
2016 |
The near-ideal catalytic property of Candida antarctica lipase A to highly concentrate n-3 polyunsaturated fatty acids in monoacylglycerols via one-step ethanolysis of triacylglycerols. |
MAGs, n-3 PUFAs, TAGs |
13 |
2015 |
Combinatorial library based engineering of Candida antarctica lipase A for enantioselective transacylation of sec-alcohols in organic solvent. |
--- |
14 |
2015 |
Enhancing the Acyltransferase Activity of Candida antarctica Lipase A by Rational Design. |
--- |
15 |
2013 |
Enzymatic production of trans fatty acid free fat from partially hydrogenated soybean oil (PHSO)--theory, strategy and practicability. |
PHSO, TFA |
16 |
2012 |
The short form of the recombinant CAL-A-type lipase UM03410 from the smut fungus Ustilago maydis exhibits an inherent trans-fatty acid selectivity. |
--- |
17 |
2011 |
An ultraviolet spectrophotometric assay for the screening of sn-2-specific lipases using 1,3-O-dioleoyl-2-O-alpha-eleostearoyl-sn-glycerol as substrate. |
HPL, OA, TAGs |
18 |
2011 |
Combinatorial reshaping of the Candida antarctica lipase A substrate pocket for enantioselectivity using an extremely condensed library. |
--- |
19 |
2011 |
Enhancement of activity and selectivity of Candida rugosa lipase and Candida antarctica lipase A by bioimprinting and/or immobilization for application in the selective ethanolysis of fish oil. |
CRL, EE, PUFA |
20 |
2010 |
Directed evolution of an enantioselective lipase with broad substrate scope for hydrolysis of alpha-substituted esters. |
--- |
21 |
2010 |
Structural classification by the Lipase Engineering Database: a case study of Candida antarctica lipase A. |
LED |
22 |
2009 |
Directed evolution of Candida antarctica lipase A using an episomaly replicating yeast plasmid. |
CAST |
23 |
2006 |
Lipases in beta-dipeptide synthesis in organic solvents. |
CALB |
24 |
2002 |
Building blocks for the solution phase synthesis of oligonucleotides: regioselective hydrolysis of 3',5'-Di-O-levulinylnucleosides using an enzymatic approach. |
CALB, DCC, PSL-C |
25 |
2002 |
Regioselective enzymatic acylation of methyl shikimate. Influence of acyl chain length and solvent polarity on enzyme specificity. |
CalB |
26 |
2002 |
Synthesis of monoacyl A-ring precursors of 1alpha,25-dihydroxyvitamin D3 through selective enzymatic hydrolysis. |
CVL |
27 |
1995 |
On the interfacial activation of Candida antarctica lipase A and B as compared with Humicola lanuginosa lipase. |
HLL, PNPA, PNPB, SDS |
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