Related Experiment Video
Updated: May 10, 2025

Prospecting Microbial Strains for Bioremediation and Probiotics Development for Metaorganism Research and Preservation
Published on: October 31, 2019
Comparison of microbial preservation methods: a narrative review
Wijesundara Mudiyanselage Thilini Nimansala Senaratne1, Jayaweera Arachchige Asela Sampath Jayaweera2
1BSc Department of Microbiology Faculty of Medicine and Allied Sciences Rajarata University of Sri Lanka, 50008, Saliyapura, Sri Lanka.
Abstract:
Many microorganisms are used to produce antibiotics, vaccines, and medicines for various diseases, and preserving these microorganisms and viruses can ensure that the development process is streamlined. We have reviewed the short-term and long-term microbial and viral preservation methods including novel and emerging technologies. Short-term preservation methods of microorganisms are designed to maintain the viability of the organisms for periods ranging from a few days up to one year. The novel microfluid systems allow for the creation of microenvironments that support the growth and proliferation of specific microorganisms and the isolation of individual cells or small populations of microorganisms for studying microbial behavior and interactions. Long-term preservation involves storing the organisms for an extended period, ranging from months to decades, while retaining their viability and genetic stability. The mineral oil or liquid paraffin storage, storage in distilled water, storage in sterile soil, lyophilization, and cryopreservation are well known, and encapsulation of nanoparticles to preserve microorganisms, electrospinning, and electro spraying and supercooling are novel and emerging methods. Each short and long-term microbial and viral preservation method has advantages and disadvantages, and, based on the requirement, the appropriate method can be chosen.
Related Concept Videos
Sample Handling
Samples should be transported carefully from collection points to the laboratory. They should be properly sealed and clearly labeled to prevent cross-contamination. To preserve the sample integrity, optimal temperature conditions during transport are essential. This could involve using...
Methods of Sterilization I: Physical Methods
Steam sterilization uses non-toxic, low-cost moist heat in the form of saturated steam under pressure, which is fast, microbicidal, and sporicidal, and quickly warms and penetrates fabrics. Autoclaves, or steam sterilizers, expose each item to direct steam contact for a predetermined time at the necessary...
Methods of Sterilization II: Chemical Methods
Using chemical sterilization rather than heat to clean out equipment is recommended. It eradicates and removes all bacteria,...

