Our Science

The blueprint was always there.
It took 30 years of science to read it.

Every company developing in vivo cell therapy is using technology that was built for something else. CAR constructs adapted from ex vivo therapy. Delivery vectors borrowed from gene therapy. The field has been innovating around a broken foundation instead of replacing it.

Modulari-T built two things from scratch: a next-generation receptor that mirrors the natural architecture of immune cells, and a modular delivery vehicle purpose-designed for in vivo targeting. Together, they form the only complete 2nd generation in vivo CGT system in existence.

The only company that has developed both the receptor AND the delivery vehicle from scratch.

MARC – Modular Actuation Receptor Complex

Modulari-T’s proprietary MARC platform was purposefully designed to expand the power and reach of cell therapies

Receptor MODULARITY is CRITICAL to signaling integrity

The MARCs recreate the natural architecture and signaling of immune receptors to safely and efficiently direct the immune response

MARCs will allow the expansion of the CAR-T market to more patients and new indications

Our Science Illustration Marc

Modular Actuation Receptor Complex (MARC)

Modular complex
with separate
targeting and
signaling modules

Powerful
signalling
fully activates
cells

ON when
triggered and
OFF when
recycled


Antibody-based target interaction


Multiple signal outputs

The groundbreaking modular design of the MARC system offers unprecedented opportunity in unlocking next-generation cell therapies

Modulari-T has generated and validated MARCs across diverse cell types and modalities:

Logic-gated target binding
tuned for pH sensitivity and  target expression levels

Bispecific receptors
to prevent antigen escape

Novel signaling modalities
to expand therapeutic reach

Going further to rewire non-immune cells like adipocytes, neurons, and epithelial cells

Moving beyond T cell modulation into NK cells, B cells and T regulatory cells

Modulari-T has validated its technology across diverse cell types

Immune Cell (Subset)

Our Science Tile Immune T Cells
Our Science Tile Immune Nk Cells
Our Science Tile Immune B Cells
Our Science Tile Immune Treg

Non-Immune Cell (Subset)

Our Science Tile Non Immune Adipocytes
Our Science Tile Non Immune Neuron
Our Science Tile Non Immune Epithelial
MARCs can be modified for enhanced situation and indication-based specificity
Our Science Marc Ph Sensitive Activation

ph-sensitive
activation

Our Science Marc Enhanced Adhesion

Enhanced adhesion

Our Science Marc Bispecific Recognition

Bispecific recognition

Our Science Marc Proliferation Activation

Proliferation activation

Our Science Marc Metabollic Tuning

Metabollic tuning

Our Science Marc Anti Inflammatory

Anti- inflammatory

MARCs outperform CARs on efficacy, safety & targeting by unleashing the power of immune cells and creating a broader range of TAAs

MARCs can differentiate

between normal and overexpression of solid tumor antigens, expanding TAAs

Reduced exhaustion

MARC-T cells proliferate longer, preserve a better phenotype and accumulate fewer exhaustion markers

Persistent response

MARC-T provides a persistent response and prevents relapse even upon redosing

Improved Safety

MARC-T cells secrete significantly less of the toxic cytokines involved in cytokine release syndrome (CRS)

MoVe – Modular Vector

Modular Vectors (MoVe)s are First-in-Class rationally designed delivery vehicles for In Vivo Therapies

MoVes were designed to avoid the limitations of traditional, off-the-shelf lentiviral and adenoviral approaches, which show poor safety and efficacy

Our Science Illustration Move

Competing in vivo
technology
only efficiently
targets T cells

MoVes can target a broad
range of immune and
non-immune cells
via
custom promoters

Bispecific MoVes can
simultaneously target T, NK and NKT cells to enable a
combined innate and adaptive immune response.

Genetic cargo can be
permanently integrated or
expressed
in a transient
manner using inactivated
vectors

MoVes can deliver partner technology or other genetic payloads (e.g. gene therapy)

Modular Vectors (MoVes)

Modular Vector (MoVe) are proprietary de-targeted viral vectors that are re-engineered with custom modular envelopes for selective entry into target cells for in vivo cell and gene therapy delivery

MoVe technology allows for efficient and robust delivery of MARCs, and other payload formats (Gene therapy, IPSC, HSCT) for scalable, in vivo and off-the-shelf therapy

MoVes are significantly more versatile, efficient and manufacturable compared to competitors, which rely on older, generic delivery vehicles

MoVes significantly and more efficiently transduce both T and NK cells to generate active therapeutic cells

Compared to competitors, MoVes show best-in-class versatility, activation and therapeutic potential

The MoVe has best-in-class specificity to reduce the off-targets effects that limit LVs and LNP vectors relied on by competitors

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