Investigation of the Best Saccharomyces cerevisiae Growth Condition

Introduction: Saccharomyces cerevisiae is known as one of the useful yeasts which are utilized in baking and other industries. It can be easily cultured at an economic price. Today the introduction of safe and efficient carriers is being considered. Due to its generally round shape, and the volume...

Full description

Bibliographic Details
Main Authors: Roshanak Salari, Rosita Salari
Format: Article
Language:English
Published: Electronic Physician 2017-01-01
Series:Electronic Physician
Subjects:
Online Access:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5308499/
id doaj-3e79e9dd5b024386bed9f2a7151b4524
record_format Article
spelling doaj-3e79e9dd5b024386bed9f2a7151b45242020-11-24T22:36:37ZengElectronic PhysicianElectronic Physician2008-58422008-58422017-01-01913592359710.19082/3592Investigation of the Best Saccharomyces cerevisiae Growth ConditionRoshanak SalariRosita SalariIntroduction: Saccharomyces cerevisiae is known as one of the useful yeasts which are utilized in baking and other industries. It can be easily cultured at an economic price. Today the introduction of safe and efficient carriers is being considered. Due to its generally round shape, and the volume that is enclosed by its membrane and cell wall, it is used to encapsulate active materials to protect them from degradation or to introduce a sustained release drug delivery system. Providing the best conditions in order to achieve the best morphological properties of Saccharomyces cerevisiae as a carrier. Methods: In this research, the most suitable growth condition of yeast cells which provides the best size for use as drug carriers was found by a bioreactor in a synthetic culture medium. Yeast cell reproduction and growth curves were obtained, based on pour plate colony counting data and UV/Visible sample absorption at 600 nm. Yeast cell growth patterns and growth rates were determined by Matlab mathematical software. Results: Results showed that pH=4 and dissolving oxygen (DO) 5% was the best condition for yeast cells to grow and reproduce. This condition also provided the largest size (2 × 3 µ) yeast cells. Conclusion: Owing to the yeast cells’ low-cost production and their structural characteristics, they could be used as potent drug carriers. Funding: This work was supported by a grant from the Vice Chancellor of Research of Mashhad University of Medical Sciences.https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5308499/CarrierGrowthMathematics
collection DOAJ
language English
format Article
sources DOAJ
author Roshanak Salari
Rosita Salari
spellingShingle Roshanak Salari
Rosita Salari
Investigation of the Best Saccharomyces cerevisiae Growth Condition
Electronic Physician
Carrier
Growth
Mathematics
author_facet Roshanak Salari
Rosita Salari
author_sort Roshanak Salari
title Investigation of the Best Saccharomyces cerevisiae Growth Condition
title_short Investigation of the Best Saccharomyces cerevisiae Growth Condition
title_full Investigation of the Best Saccharomyces cerevisiae Growth Condition
title_fullStr Investigation of the Best Saccharomyces cerevisiae Growth Condition
title_full_unstemmed Investigation of the Best Saccharomyces cerevisiae Growth Condition
title_sort investigation of the best saccharomyces cerevisiae growth condition
publisher Electronic Physician
series Electronic Physician
issn 2008-5842
2008-5842
publishDate 2017-01-01
description Introduction: Saccharomyces cerevisiae is known as one of the useful yeasts which are utilized in baking and other industries. It can be easily cultured at an economic price. Today the introduction of safe and efficient carriers is being considered. Due to its generally round shape, and the volume that is enclosed by its membrane and cell wall, it is used to encapsulate active materials to protect them from degradation or to introduce a sustained release drug delivery system. Providing the best conditions in order to achieve the best morphological properties of Saccharomyces cerevisiae as a carrier. Methods: In this research, the most suitable growth condition of yeast cells which provides the best size for use as drug carriers was found by a bioreactor in a synthetic culture medium. Yeast cell reproduction and growth curves were obtained, based on pour plate colony counting data and UV/Visible sample absorption at 600 nm. Yeast cell growth patterns and growth rates were determined by Matlab mathematical software. Results: Results showed that pH=4 and dissolving oxygen (DO) 5% was the best condition for yeast cells to grow and reproduce. This condition also provided the largest size (2 × 3 µ) yeast cells. Conclusion: Owing to the yeast cells’ low-cost production and their structural characteristics, they could be used as potent drug carriers. Funding: This work was supported by a grant from the Vice Chancellor of Research of Mashhad University of Medical Sciences.
topic Carrier
Growth
Mathematics
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5308499/
work_keys_str_mv AT roshanaksalari investigationofthebestsaccharomycescerevisiaegrowthcondition
AT rositasalari investigationofthebestsaccharomycescerevisiaegrowthcondition
_version_ 1725719318760521728