DISCOVERY OF NOVEL MICRO-RNGS AND ENDOGENOUS METABOLISED WHICH PREDICT DRUG METABOLISING ENZYME ACTIVITY (CYTOCHROME P450 AND UDP-GLUCURONOSYL TRANSFERASE) IN HUMAN SUBJECTS

Master's

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Main Author: HAN HWAN CHOUR
Other Authors: PHARMACOLOGY
Format: Theses and Dissertations
Language:English
Published: 2020
Subjects:
Online Access:https://scholarbank.nus.edu.sg/handle/10635/171831
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Institution: National University of Singapore
Language: English
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spelling sg-nus-scholar.10635-1718312023-02-27T18:00:45Z DISCOVERY OF NOVEL MICRO-RNGS AND ENDOGENOUS METABOLISED WHICH PREDICT DRUG METABOLISING ENZYME ACTIVITY (CYTOCHROME P450 AND UDP-GLUCURONOSYL TRANSFERASE) IN HUMAN SUBJECTS HAN HWAN CHOUR PHARMACOLOGY Jon Deoon, Edmund Lee Chun Yong, Eric Chan CYP3A, UGT1A1, midazolam, raltegravir, human, cell-free miRNAs Master's MASTER OF SCIENCE (RSH-SOM) 2020-07-31T18:00:29Z 2020-07-31T18:00:29Z 2020-01-24 Thesis HAN HWAN CHOUR (2020-01-24). DISCOVERY OF NOVEL MICRO-RNGS AND ENDOGENOUS METABOLISED WHICH PREDICT DRUG METABOLISING ENZYME ACTIVITY (CYTOCHROME P450 AND UDP-GLUCURONOSYL TRANSFERASE) IN HUMAN SUBJECTS. ScholarBank@NUS Repository. https://scholarbank.nus.edu.sg/handle/10635/171831 en
institution National University of Singapore
building NUS Library
continent Asia
country Singapore
Singapore
content_provider NUS Library
collection ScholarBank@NUS
language English
topic CYP3A, UGT1A1, midazolam, raltegravir, human, cell-free miRNAs
spellingShingle CYP3A, UGT1A1, midazolam, raltegravir, human, cell-free miRNAs
HAN HWAN CHOUR
DISCOVERY OF NOVEL MICRO-RNGS AND ENDOGENOUS METABOLISED WHICH PREDICT DRUG METABOLISING ENZYME ACTIVITY (CYTOCHROME P450 AND UDP-GLUCURONOSYL TRANSFERASE) IN HUMAN SUBJECTS
description Master's
author2 PHARMACOLOGY
author_facet PHARMACOLOGY
HAN HWAN CHOUR
format Theses and Dissertations
author HAN HWAN CHOUR
author_sort HAN HWAN CHOUR
title DISCOVERY OF NOVEL MICRO-RNGS AND ENDOGENOUS METABOLISED WHICH PREDICT DRUG METABOLISING ENZYME ACTIVITY (CYTOCHROME P450 AND UDP-GLUCURONOSYL TRANSFERASE) IN HUMAN SUBJECTS
title_short DISCOVERY OF NOVEL MICRO-RNGS AND ENDOGENOUS METABOLISED WHICH PREDICT DRUG METABOLISING ENZYME ACTIVITY (CYTOCHROME P450 AND UDP-GLUCURONOSYL TRANSFERASE) IN HUMAN SUBJECTS
title_full DISCOVERY OF NOVEL MICRO-RNGS AND ENDOGENOUS METABOLISED WHICH PREDICT DRUG METABOLISING ENZYME ACTIVITY (CYTOCHROME P450 AND UDP-GLUCURONOSYL TRANSFERASE) IN HUMAN SUBJECTS
title_fullStr DISCOVERY OF NOVEL MICRO-RNGS AND ENDOGENOUS METABOLISED WHICH PREDICT DRUG METABOLISING ENZYME ACTIVITY (CYTOCHROME P450 AND UDP-GLUCURONOSYL TRANSFERASE) IN HUMAN SUBJECTS
title_full_unstemmed DISCOVERY OF NOVEL MICRO-RNGS AND ENDOGENOUS METABOLISED WHICH PREDICT DRUG METABOLISING ENZYME ACTIVITY (CYTOCHROME P450 AND UDP-GLUCURONOSYL TRANSFERASE) IN HUMAN SUBJECTS
title_sort discovery of novel micro-rngs and endogenous metabolised which predict drug metabolising enzyme activity (cytochrome p450 and udp-glucuronosyl transferase) in human subjects
publishDate 2020
url https://scholarbank.nus.edu.sg/handle/10635/171831
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