a

Incorporation of a Virtual Proteomics Module into the Undergraduate Analytical Curriculum (Journal Article)

By: Material type: TextTextSeries: American Chemical Society, Volume 100, Issue 8Publication details: USA :American Chemical Society August 2023Description: 3124-3131 PISSN:
  • 0021-9584
Subject(s): DDC classification:
  • 540.7
Online resources:
Contents:
***______{For Hard Copy, Please visit Library.}________***
Summary: Abstract Proteomics, or the study of the set of proteins in an organism, tissue, or cell, is a rapidly growing field within bioanalytical chemistry that can be used to investigate many biological questions. However, proteomics is not fully integrated into the undergraduate chemistry curriculum because of a lack of access to expertise, the cost of required analytical instrumentation (liquid chromatography [LC] and mass spectrometry [MS]), and the time required for proteomics experiments. A virtual proteomics module was developed for flexible learning environments (i.e., in-person, hybrid, online) to introduce undergraduate Analytical Chemistry students to proteomics without the need for expensive instrumentation. This module teaches students about proteomics sample preparation and data acquisition, provides real LC-MS/MS data from unknown plasma samples for students to analyze, and provides experience with Mascot, a free online data analysis platform that can be used to identify the species of origin. The module was implemented in Introduction to Analytical Chemistry in two ways: (1) as a laboratory (online; ∼120 min) and (2) as a lecture (hybrid; ∼75 min). Students reported improved knowledge of proteomics after exposure to this module with average quiz scores increasing from 27% to 73%. In the lecture implementation, >90% of students successfully identified their unknowns, with almost 80% correctly justifying their conclusions. Additionally, students demonstrated increased interest in proteomics by formulating more complex research questions on the post-quiz (average of 40 words) than the pre-quiz (average of 18 words). This module was effective for students across majors and years and is a valuable educational tool that incorporates proteomics into the undergraduate chemistry curriculum across learning environments.
Tags from this library: No tags from this library for this title. Log in to add tags.
Star ratings
    Average rating: 0.0 (0 votes)
Holdings
Item type Current library Call number Status Date due Barcode
Periodicals Periodicals RIE BPL Library 540.7 (Browse shelf(Opens below)) Not for loan

***______{For Hard Copy, Please visit Library.}________***

Abstract

Proteomics, or the study of the set of proteins in an organism, tissue, or cell, is a rapidly growing field within bioanalytical chemistry that can be used to investigate many biological questions. However, proteomics is not fully integrated into the undergraduate chemistry curriculum because of a lack of access to expertise, the cost of required analytical instrumentation (liquid chromatography [LC] and mass spectrometry [MS]), and the time required for proteomics experiments. A virtual proteomics module was developed for flexible learning environments (i.e., in-person, hybrid, online) to introduce undergraduate Analytical Chemistry students to proteomics without the need for expensive instrumentation. This module teaches students about proteomics sample preparation and data acquisition, provides real LC-MS/MS data from unknown plasma samples for students to analyze, and provides experience with Mascot, a free online data analysis platform that can be used to identify the species of origin. The module was implemented in Introduction to Analytical Chemistry in two ways: (1) as a laboratory (online; ∼120 min) and (2) as a lecture (hybrid; ∼75 min). Students reported improved knowledge of proteomics after exposure to this module with average quiz scores increasing from 27% to 73%. In the lecture implementation, >90% of students successfully identified their unknowns, with almost 80% correctly justifying their conclusions. Additionally, students demonstrated increased interest in proteomics by formulating more complex research questions on the post-quiz (average of 40 words) than the pre-quiz (average of 18 words). This module was effective for students across majors and years and is a valuable educational tool that incorporates proteomics into the undergraduate chemistry curriculum across learning environments.

There are no comments on this title.

to post a comment.

Find us on the map

Contact Us

RIE Bhopal
Shyamla Hills
Bhopal
Madhya pradesh - 46003.
E-mail: library.riebpl@gmail.com
Phone: + 91 (0) 755 2522003

Powered by Koha