# Culture-derived compounds strengthen a seed-mucilage coating for mutton

> A refrigerated laboratory trial found better quality retention with 2% cell-free culture supernatant, without establishing a commercial shelf-life specification.

URL: https://foodradar.org/mutton-mucilage-cell-free-culture-coating
Language: en
Author: FoodRadar Editorial
Published: 2026-10-07T11:06:18.836Z
Updated: 2026-10-07T11:06:18.836Z
Source publication date: 2026-09-01
Category: Packaging
Türkçe: https://foodradar.org/tr/mutton-mucilage-cell-free-culture-coating

## A coating built from two components

A September study pairs a plant-seed mucilage with compounds obtained from a bacterial culture to protect refrigerated mutton. The strongest formulation in the experiment combined Lallemantia iberica seed mucilage with 2% cell-free supernatant from Lactobacillus helveticus C7303. Compared with uncoated meat, it maintained lower spoilage-related measurements and better physical and sensory characteristics during a ten-day trial.

Cell-free supernatant is the liquid recovered after separating cells from a culture, here using centrifugation and filtration. The coating therefore should not be described as adding a live probiotic culture to the meat. The study examined preservation of the food itself; it did not investigate a probiotic or other health benefit for people consuming the product.

## Four treatments under controlled refrigeration

Researchers cut the meat into approximately two-centimetre cubes and compared an uncoated control with three coatings. All coated groups used a 1.5% mucilage solution, containing either no supernatant, 1% supernatant or 2% supernatant. Samples were dipped, dried and held at 4 °C, with analyses on days one, four, seven and ten. Experiments were performed in triplicate.

The measurements covered total viable and cold-tolerant microbial counts, fungi and coliforms, alongside moisture, texture, colour and chemical indicators. Counts generally rose during storage, but the supernatant-containing coatings reduced them relative to the control. These enumerations describe the tested microbial groups; they do not constitute a comprehensive pathogen challenge study or show that refrigeration and normal hygiene controls can be relaxed.

## Chemical and sensory differences at day ten

The thiobarbituric-acid measurement, used as an indicator of secondary lipid oxidation, reached 1.29 milligrams MDA per kilogram in the control on day ten. The corresponding value for the 2% formulation was 0.91. Total volatile basic nitrogen, a spoilage-related measurement associated with protein breakdown, was 30.06 milligrams per 100 grams in the control and 17.26 in the strongest treatment.

The coated meat also retained more moisture and firmness. A blind, random-coded assessment involved 52 semi-trained panellists, who rated colour, odour, texture and overall acceptability on a nine-point scale. The 2% formulation received the best end-of-storage ratings. These were evaluations of raw-meat attributes, not a cooked-product taste trial or a demonstration of preference among a representative consumer population.

## What the preservation result leaves open

The authors interpret the findings as a combined effect of a physical coating and active culture-derived compounds. Their experiment supports that formulation as a candidate for further testing, but it does not by itself establish which individual compound accounts for each observed effect. Nor does a lower oxidation or nitrogen measurement automatically define a universal legal or safety threshold for all meat products.

For processors, the relevant next step is validation in the intended cut, packaging format and distribution conditions. Small cubes held at a constant temperature differ from a commercial meat supply chain, and the study provides no industrial cost or manufacturing trial. The result is a promising laboratory comparison, with the precise formulation and storage conditions central to interpreting its reported preservation advantage.

## Sources and rights

- [Synergistic Preservation of Mutton Using a Biodegradable Edible Coating Incorporating \<i\>Lallemantia iberica\</i\> Mucilage and Cell-Free Supernatant of \<i\>Lactobacillus helveticus\</i\> C7303.](https://europepmc.org/articles/PMC13531236?utm_source=foodradar.org&utm_medium=referral&utm_campaign=editorial&utm_content=mutton-mucilage-cell-free-culture-coating-en). Wiley. Mousavi Z, Alizadeh Behbahani B, Jooyandeh H, Taki M, Vasiee A. Synergistic Preservation of Mutton Using a Biodegradable Edible Coating Incorporating \<i\>Lallemantia iberica\</i\> Mucilage and Cell-Free Supernatant of \<i\>Lactobacillus helveticus\</i\> C7303. Food science & nutrition. 2026. DOI: 10.1002/fsn3.72296. © 2026 The Author(s). Food Science & Nutrition published by Wiley Periodicals LLC. [CC-BY-4.0](https://creativecommons.org/licenses/by/4.0/?utm_source=foodradar.org&utm_medium=referral&utm_campaign=editorial&utm_content=mutton-mucilage-cell-free-culture-coating-en-license).

Adapted by FoodRadar.

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