Javascript must be enabled to continue!
Harnessing the Potential of Biosurfactants for Biomedical and Pharmaceutical Applications
View through CrossRef
Biosurfactants (BSs) are microbial compounds that have emerged as potential alternatives to chemical surfactants due to their multifunctional properties, sustainability and biodegradability. Owing to their amphipathic nature and distinctive structural arrangement, biosurfactants exhibit a range of physicochemical properties, including excellent surface activity, efficient critical micelle concentration, humectant properties, foaming and cleaning abilities and the capacity to form microemulsions. Furthermore, numerous biosurfactants display additional biological characteristics, such as antibacterial, antifungal and antiviral effects, and antioxidant, anticancer and immunomodulatory activities. Over the past two decades, numerous studies have explored their potential applications, including pharmaceuticals, cosmetics, antimicrobial and antibiofilm agents, wound healing, anticancer treatments, immune system modulators and drug/gene carriers. These applications are particularly important in addressing challenges such as antimicrobial resistance and biofilm formations in clinical, hygiene and therapeutic settings. They can also serve as coating agents for surfaces, enabling antiadhesive, suppression, or eradication strategies. Not least importantly, biosurfactants have shown compatibility with various drug formulations, including nanoparticles, liposomes, micro- and nanoemulsions and hydrogels, improving drug solubility, stability and bioavailability, and enabling a targeted and controlled drug release. These qualities make biosurfactants promising candidates for the development of next-generation antimicrobial, antibiofilm, anticancer, wound-healing, immunomodulating, drug or gene delivery agents, as well as adjuvants to other antibiotics. Analysing the most recent literature, this review aims to update the present understanding, highlight emerging trends, and identify promising directions and advancements in the utilization of biosurfactants within the pharmaceutical and biomedical fields.
Title: Harnessing the Potential of Biosurfactants for Biomedical and Pharmaceutical Applications
Description:
Biosurfactants (BSs) are microbial compounds that have emerged as potential alternatives to chemical surfactants due to their multifunctional properties, sustainability and biodegradability.
Owing to their amphipathic nature and distinctive structural arrangement, biosurfactants exhibit a range of physicochemical properties, including excellent surface activity, efficient critical micelle concentration, humectant properties, foaming and cleaning abilities and the capacity to form microemulsions.
Furthermore, numerous biosurfactants display additional biological characteristics, such as antibacterial, antifungal and antiviral effects, and antioxidant, anticancer and immunomodulatory activities.
Over the past two decades, numerous studies have explored their potential applications, including pharmaceuticals, cosmetics, antimicrobial and antibiofilm agents, wound healing, anticancer treatments, immune system modulators and drug/gene carriers.
These applications are particularly important in addressing challenges such as antimicrobial resistance and biofilm formations in clinical, hygiene and therapeutic settings.
They can also serve as coating agents for surfaces, enabling antiadhesive, suppression, or eradication strategies.
Not least importantly, biosurfactants have shown compatibility with various drug formulations, including nanoparticles, liposomes, micro- and nanoemulsions and hydrogels, improving drug solubility, stability and bioavailability, and enabling a targeted and controlled drug release.
These qualities make biosurfactants promising candidates for the development of next-generation antimicrobial, antibiofilm, anticancer, wound-healing, immunomodulating, drug or gene delivery agents, as well as adjuvants to other antibiotics.
Analysing the most recent literature, this review aims to update the present understanding, highlight emerging trends, and identify promising directions and advancements in the utilization of biosurfactants within the pharmaceutical and biomedical fields.
Related Results
Harnessing the Potential of Biosurfactants for Biomedical and Pharmaceutical Applications
Harnessing the Potential of Biosurfactants for Biomedical and Pharmaceutical Applications
Biosurfactants (BSs) are microbial compounds that have emerged as potential alternatives to chemical surfactants due to their multifunctional properties, sustainability, and biodeg...
Isolation and characterization of two glycolipopeptids biosurfactants produced by a Lactobacillus plantarum strain isolated from green olive curing water
Isolation and characterization of two glycolipopeptids biosurfactants produced by a Lactobacillus plantarum strain isolated from green olive curing water
Abstract
Microbial surfactants are natural amphiphilic compounds with high surface activities and emulsifying properties. Due to their structural diversity, low toxicity, b...
Microbial Surfactants: The Next Generation Multifunctional Biomolecules for Diverse Applications
Microbial Surfactants: The Next Generation Multifunctional Biomolecules for Diverse Applications
ABSTRACT Surfactants are a broad category of tensio-active biomolecules with multifunctional properties applications in diverse industrial sectors and processes. Surfactants are pr...
Advancements in Biomedical and Bioinformatics Engineering
Advancements in Biomedical and Bioinformatics Engineering
Abstract: The field of biomedical and bioinformatics engineering is witnessing rapid advancements that are revolutionizing healthcare and medical research. This chapter provides a...
Welcome to Pharmaceutical Communications
Welcome to Pharmaceutical Communications
Welcome to the inaugural issue of Pharmaceutical Communications-a biannual, open access, and peer-reviewed journal aiming to publish high-quality research articles in the field of ...
Multifunctional Biosurfactants with Unusual pH Sensitive Interfacial Behavior for Remediation of Iron and Zinc Sulfide Formation Damage
Multifunctional Biosurfactants with Unusual pH Sensitive Interfacial Behavior for Remediation of Iron and Zinc Sulfide Formation Damage
Abstract
Metal sulfide scales are found in several fields in onshore and offshore oil and gas wells around the world. Although there has been some success in the dev...
Biomedical Engineering International joins the Family of Platinum Open Access Journals
Biomedical Engineering International joins the Family of Platinum Open Access Journals
We are delightfully announcing the launch of Biomedical Engineering International, a new interdisciplinary international scholarly open-access journal dedicated to publishing origi...
Corporate social responsibility of pharmaceutical industry in Korea
Corporate social responsibility of pharmaceutical industry in Korea
Background: Global pharmaceutical companies in Korea argue that the development of innovative drugs should be recognized as a social contribution, yet it has been countered by vari...

