01 · A problem your plant already knows

Your enzyme works in the lab.
On the line, it degrades before it does its job.

Today you compensate with cold chain, encapsulation, or overdosing — patches that add cost to every batch. We re-engineer the order in which disulfide bonds form so the protein withstands your real process, without relying on those workarounds.

Deeptech spun out of IBt-UNAM · pre-seed stage · GRIDX IGNITE program

02 · The problem

The protein doesn't fail on paper. It fails on your line.

Your enzymes and biomolecules perform well in the lab assay. The problem shows up in the real process: heat, contact time, and storage deactivate them before they finish their job. Today this gets solved outside the molecule: cold chain, encapsulation, enteric coating, or simply overdosing to compensate for what's lost along the way.

What we hear inside the plant
  1. 01
    Degradation By the time it reaches the hot step of the process, the enzyme has already lost useful activity.

    We compensate with a higher dose or a lower temperature, and that raises cost or slows down everything else.

  2. 02
    Cold chain If it isn't refrigerated properly in transit, it expires before we can even use it.

    Expensive logistics and stock breaks, just to sustain a molecule that can't hold up on its own.

  3. 03
    Workarounds We encapsulate and overdose to hide the fact that the protein can't take the process.

    Every patch adds cost and a new variable that can fail in production, in every batch.

Every workaround you sustain carries a recurring cost: more dose, more logistics, more failure points. The question worth asking isn't how to hide the protein's fragility better — it's why keep paying to hide it, when it can be solved in the molecule's design.

We work on the root of the problem, not its symptoms: we re-engineer the order in which a protein's disulfide bonds form so structural stability replaces the workaround.

03 · Our approach

Cys-BioTech's approach

Pillar 1

Stability

Withstands heat and process time
RM
Ricardo Miranda

Structural biology: designs the order of disulfide bond formation.

SC
Samuel Cardoso

Recombinant expression: validates every design in the lab.

Pillar 2

Simplicity

No cold chain or encapsulation
MM
Miguel Ángel Mejía

Immunogen design: simplifies the molecule from its base.

VC
Víctor Carpanta

Folding control: reduces the workaround's margin for error.

Pillar 3

Compatibility

Fits your existing line as-is
JR
Jorge Roldán (Jota)

Product and business development: adapts the pilot to your process.

IBt
IBt-UNAM science team

Dr. Gerardo Corzo's lab: technical backing for the design.

04 · The platform

How we do it

In silico design

We start from a proprietary library of modules derived from snake, spider, and scorpion venoms — naturally ultra-stable — to propose variants before touching the lab.

Control of disulfide bond order

The core of the platform: we don't add disulfide bonds at random — we control the order in which they form during folding. That order is what determines whether a protein ends up ultra-stable or not.

Molecular dynamics

We simulate folding before synthesis to rule out weak candidates and cut down trial-and-error cycles in the wet lab.

Recombinant expression

We validate in the lab the variants that performed best in simulation, with the expression team connected to IBt-UNAM.

Validation under your conditions

We measure stability under your process's real conditions — temperature, contact time, pH — not just the standard lab assay.

Joint pilot

We design a scoped pilot with you around your enzyme or protein of interest, with success criteria defined before starting.

05 · Further reading

Resources on disulfide bond engineering

Disulfide-bond design for protein stabilization is an active research field, not an idea exclusive to Cys-BioTech. These are public materials, in case you want to see the scientific grounding before scheduling a call.

Sources: ibt.unam.mx · Enhancing protein stability with extended disulfide bonds, PNAS, 2016 (DOI 10.1073/pnas.1605363113) · Protein disulfide engineering, FEBS Letters, 2014 (DOI 10.1016/j.febslet.2013.11.024) · gridexponential.com.

06 · What to expect from a pilot

Cys-BioTech is pre-seed: here's what we validate together, not a closed promise

01

A stability target defined with you

We agree on the process condition the protein must withstand (temperature, contact time) before designing.

02

Stability data measured in the lab

You'll receive the test results, with the method used, so your own technical team can evaluate them.

03

Less dependence on workarounds

If the variant meets the target, you have a real technical basis to reduce cold chain, encapsulation, or overdosing.

04

Success criteria agreed from day one

We define upfront what it means for the pilot to have worked, so there's no ambiguity when evaluating it.

05

Design traceability

We document the in silico design and validation process, so you can audit where every result comes from.

06

An informed next-step decision

At the end of the pilot, we decide together whether to scale up, adjust the design, or set this technical path aside.

07 · Who it's for

Who can take part?

A pilot with Cys-BioTech makes sense if your team:

  • Uses an industrial enzyme or protein that loses activity from heat, time, or storage.

  • Today pays the cost of a workaround: cold chain, encapsulation, or overdosing.

  • Has an in-house technical team that can evaluate stability data and define a success criterion.

  • Can sustain a scoped pilot, without yet committing to a production volume.

  • Understands we're at validation stage, not buying a product already on the market.

If your process today depends on a workaround to sustain a fragile protein, a technical conversation is worth having.

Tell us which vertical you work in (industrial laundry, animal nutrition, cosmeceuticals, food and beverage, or other) and which process condition you need to withstand.

08 · Get started

Let's schedule a call

Tell us your vertical and process condition, and we'll set up a short technical conversation.

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