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All our sincere wishes

Published on 18/12/23

In this new year that begins, let’s take the time…

Let’s take the time to extend our best wishes to you, from the bottom of our hearts. It seems essential to us, during these periods conducive to gratitude, to prioritize human relationships as the most important aspect of our lives.

We wish all our collaborators, partners, suppliers, and clients the very best that life has to offer. May every moment of your daily life be beneficial to you and contribute to the well-being of our society as a whole. May it allow us, together, to help the world progress in the right direction. May love, sharing, understanding, and tolerance permeate each of your interactions. May every decision and choice be made with your heart and in complete sincerity. May every obstacle be an opportunity to climb a new step of progress.
In short, may you seize every opportunity that life puts in your path!

As passionate followers of science, we also extend our thoughts to it. May the vastness of its value and power shine and prevail over misinformation. We also wish for the microorganisms that surround us to continue to reveal their secrets so that we can learn more about their functioning, harness their potential, and prevent them from being harmful to us.
Finally, we express our gratitude to all the people who contribute to the existence of Smaltis—for their support, the quality of our exchanges, the sharing of knowledge, the challenges they bring, and, simply, for their trust.
Let’s continue to write new chapters together!

News and articles

Resistance of Pseudomonas aeruginosa to odilorhabdins: MexXY(OprM) at the heart of the bacterial response

Why can an antibiotic active against several Gram-negative bacteria lose much of its efficacy against Pseudomonas aeruginosa?

A study published in 2026 in Microbiology Spectrum, to which Smaltis contributed, provides new insights into this question. It shows that the MexXY(OprM) efflux pump plays a major role in the resistance of P. aeruginosa to odilorhabdins, a new class of antibiotics targeting the bacterial ribosome.

Beyond this finding, the study illustrates an essential reality in the development of new antimicrobials: knowing a compound’s target is not enough. It is also necessary to understand how the bacterium detects it, adapts to it, and organises its defence

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Choosing the Right Strain to Build a Relevant Microbiological Model

In microbiology, a strain is never just another component of a protocol. It carries a genome, a history and an origin that determine what an experiment can truly reveal. Two strains belonging to the same species can therefore generate different results, all technically valid, yet not necessarily answering the same scientific question.

This is why, at Smaltis, strain selection is an integral part of experimental design. Before searching a collection or looking for a specific isolate, we first clarify the objective of the project: is the aim to standardize a method, understand a mechanism, evaluate an antimicrobial compound, reproduce a resistance phenotype, or represent a clinical situation? The answer then determines the most appropriate model: a reference strain, a human, veterinary or environmental isolate, a strain panel, an available mutant, or a custom-built strain.

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Once upon a time… the smell of rain

Once upon a time, there was a scent so familiar that it was given its own name: petrichor.
It is the unmistakable fragrance that rises from the ground after the first drops of a summer rain fall onto dry soil. A comforting, almost universal scent that evokes woodland walks, gardens after a thunderstorm, or cherished childhood memories.
For centuries, people simply believed it was the smell of wet earth. The truth, however, proved far more fascinating.

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Management of Microbiological Contamination: Identifying, Understanding and Preventing Recurrence

Microbiological contamination is not limited to a non-compliant result. In R&D development, quality control, an industrial process or biological production, it immediately raises concrete questions: where does the contaminant come from, is it isolated or recurrent, what is its impact, and how can its reappearance be prevented?

The response is not simply to identify the bacterium and then restart the process. To achieve lasting control of bacterial contamination, the investigation must be able to connect laboratory observations with the real operational context: samples, flows, raw materials, equipment, cleaning, disinfection and field practices.

At Smaltis, we approach these situations as a structured microbiological investigation: understanding the problem, isolating the contaminants, identifying and comparing the isolates, preserving useful material, and then testing appropriate prevention solutions.

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Skin Microbiome: Cultivating Rigor to Objectify Innovation

The skin microbiome is not mere scenery. It is a functional component of the skin, involved in protection against pathogens, immune dialogue, and the modulation of inflammation. It is a dynamic ecosystem shaped by subtle interactions between bacteria, yeasts, the host, and the environment.

Our approach is grounded in a simple conviction: understanding a microbiome is not merely about identifying it. It is about knowing how to culture it, interrogate it, and generate scientifically defensible data.

This is precisely how we approach the skin microbiome: as a complex ecosystem whose actors, dynamics, and mechanisms must be mastered before attempting to modulate its balance.

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The Story of a Microbiota That Became a Medicine

Once upon a time, in the hospitals of the twenty-first century, there was an infection that even antibiotics could no longer silence. An opportunistic infection caused by a bacterium called Clostridioides difficile, it often appeared in patients who were already vulnerable… and, above all, already heavily treated. Let us look back at the history of this infection, which gave rise to new therapeutic approaches.

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Probiotic Characterization: Demonstrating Safety and Substantiating Activity

Probiotics are often presented as a simple category. In reality, their characterization has become a demanding scientific and regulatory exercise. It is no longer enough to identify a species or to invoke a favorable history of use: the demonstration must now be conducted at the strain level, in a way that is consistent with the intended use, the target population, and the applicable regulatory framework. In the main reference frameworks, a microorganism can be qualified as a probiotic in the strict sense only if it is sufficiently characterized, safe for its intended use, alive at a relevant dose until the end of the product’s shelf life, and associated with a documented health benefit. [1,5,7,8]

The key question therefore becomes: what can we robustly demonstrate about its identity, safety, and functional activity? This is particularly true for new or poorly documented strains, for which taxonomy alone is not sufficient. The EFSA, GRAS, and Canadian frameworks converge on one central point: useful characterization is strain-level characterization interpreted in light of the final use. [1-6]

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Designing Bacterial Mutants: From Gene Editing to Robust Strain Engineering

The construction of bacterial mutants is a cornerstone of microbiology. Historically used to decipher gene function, it now plays an equally strategic role in bioproduction, biotechnology, and the development of therapeutic bacteria, where the engineered strain itself may ultimately become the final product.

This shift has profoundly changed how mutagenesis projects are approached. Today, the objective is no longer simply to modify a gene, but to design a strain aligned with its final application, operational constraints, and regulatory expectations.

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Lugdunin: the secret weapon of an indomitable bacterium

Once upon a time, an invisible battle was raging deep inside our noses. A microscopic battlefield, where bacteria fought relentlessly to defend their territory. Picture a small village of indomitable Gauls, surrounded on all sides… but instead of Romans, it’s microbes. And in this surprisingly strategic setting, a most unexpected antibiotic was discovered: lugdunin.

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2026: Taking on New Scientific Challenges Together

As we step into 2026, the entire Smaltis team sends you our warmest wishes. May this new year bring clarity, creativity, meaningful collaborations — and a few scientific breakthroughs that get the attention they deserve.

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