Synergistic biosurfactant blend for enhanced antibacterial detergent formulations

Consulting service
University

Research exploring the combined use of microbial and plant-derived biosurfactants (rhamnolipids and saponins) to boost the surface-active and antibacterial performance of cleaning products. Targets greener detergent formulations with improved efficacy through synergistic action between structurally distinct natural surfactants.

Overview

This research investigates whether combining biosurfactants from different biological origins can produce synergistic effects that enhance both the surface activity and antibacterial function of detergent formulations. The work centers on pairing microbially produced surfactants, such as rhamnolipids from Pseudomonas species, with plant-derived saponins. Because each class of biosurfactant has a distinct molecular structure, their combination may generate complementary interactions at liquid–liquid and liquid–solid interfaces, potentially outperforming either surfactant used alone. The goal is to contribute to the development of more effective, bio-based cleaning products with reduced reliance on synthetic surfactants and chemical disinfectants.

Technical specifications

Core approach:

  • Rhamnolipids: glycolipid biosurfactants produced by bacteria such as Pseudomonas aeruginosa, known for strong surface tension reduction and emulsification.
  • Saponins: plant-derived surfactants with membrane-interacting properties that can disrupt microbial cell walls.
  • Combined application leverages structural differences between the two classes to produce synergistic surface-active and antimicrobial effects.

Proposed experimental workflow:

  • Prepare a library of biosurfactants from microbial producers (Pseudomonas for rhamnolipids, Bacillus for surfactin, and additional strains) and from plant sources (saponin-rich extracts).
  • Generate multiple binary and ternary combinations across a range of concentrations.
  • Measure surface tension reduction for each combination to identify synergistic formulations.
  • Evaluate antimicrobial performance against bacterial membranes using microbiological assays and complementary techniques such as emulsion capacity testing.

Potential applications:

  • Household and industrial cleaning products
  • Food-safe sanitizers and disinfectants
  • Cosmetics and personal care formulations
  • Bioremediation and environmental cleaning agents
Technology readiness level

The work is at an early conceptual stage (TRL 2–3). The hypothesis is grounded in prior laboratory experience with multiple biosurfactants but has not yet been systematically validated. Future validation requires establishing biosurfactant-producing bacterial cultures, sourcing plant-derived saponins, and conducting controlled combination studies with surface tension and microbiological assays. Successful demonstration of synergy would justify formulation optimization and downstream efficacy testing in real-world cleaning matrices.


About Universidad Autónoma de Querétaro

Universidad Autónoma de Querétaro is a comprehensive public university serving the state through a multi‑campus footprint and a broad portfolio of undergraduate, graduate, and professional programs. Industry engagement is enabled by co‑located applied research laboratories, prototyping and testing shops, and pilot‑scale capabilities that help partners de‑risk scale‑up. Its location in Querétaro’s advanced manufacturing corridor gives companies rapid access to faculty expertise, student talent, and shared facilities for on‑site collaboration and workforce upskilling. Research is supported by competitive funding from Mexico’s national science and technology agency and state programs, alongside industry‑sponsored agreements. A dedicated technology transfer office assists with IP management, licensing, and startup formation, providing clear pathways from lab to market.

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