Featuring the world’s first

'On-Slide Glass' system,

it allows for direct printing

onto slide glass,

enabling immediate microscopic observation and analysis


The game-changing ZENESIS is the world's fastest DLP 3D bioprinter, achieving 144x productivity improvement over manual methods while maintaining high precision and exceptional cell viability


By enabling mass production of organoids with consistent quality through pressure-free cell printing and seamless integration with standard laboratory equipment, researchers can transform their workflows from low-throughput experiments to industrial-scale screening. This breakthrough platform empowers pharmaceutical companies, research institutions, and biotech innovators to accelerate discoveries in oncology regenerative medicine, and next-generation food technologies

The New Standard

in Cell Culture

Revolutionize Your Research

with Ultra-Fast Bioprinting



Print over 300 samples in just one minute with the next-generation DLP bioprinter.

High cell viability and precision accelerate organoid research and drug development.


Direct Glass Printing


Directly prints structures onto slide glass, effectively eliminating the need for transfer steps. Enables immediate microscopic observation and analysis without requiring additional post-processing.

Intuitive Visual Control


Visualizes complex parameter control through an intuitive graphic interface for enhanced operational convenience. Allows users to instantly grasp parameter changes and make precise adjustments immediately

Smart Cost Efficiency


The optimized design minimizes bioink waste, reducing research costs. Furthermore, through in-house development and production, the initial cost of introduction is significantly lower than that of expensive third-party equipment

Optimized Bio-Digital light


Optimized for bioprinting with a 385nm optical system designed to maximize cell viability. Delivers high-speed,    high-resolution outputs while maintaining excellent biocompatibility

Flexible Software Support


Features built-in software have guidelines and supports the format of various well-chamber. Enables easy setup for beginners while flexibly adapting to diverse research specifications

Open Material System


It is not locked to specific materials. Nearly limitless material compatibility maximizes research freedom


*Carimatec cannot guarantee printing capability

for materials not provided by Carimatec


Watch this short video to learn more about how the ZENESIS works.

SPECIFICATION

75 x 25 x 100mm (Slide Glass Type)

Build Volume(W/D/H)


50 μm

Pixel Size(X/Y)


50, 100 μm

Layer Thickness


385, 405nm UV LED

Light Source


FHD 1920 x 1080

Resolution


Bioink & Consumables


Compatible consumables maximize research efficiency and performance


ZENESIS supports stable and precise printing with compatible consumables, EZ-preBioink and PSG (Photocrosslinkable Slide Glass). This integrated system, eliminating cumbersome weighing and preprocessing steps, dramatically simplifies the entire research process. Experience the most convenient workflow, seamlessly transitioning from material preparation to printing and observation, without worrying about contamination.

[Applications]

Exploring the Broader World

with ZENESIS


Cancer Research &

Tumor Microenvironment Modeling


By culturing cancer cells obtained from a cancer 

patient's tumor and infusing them with bioink,

3D printed samples can recreate the complex

tumor environment in vitro, allowing them to

function similarly to the body.

These 3D models can be used to assess

anticancer drug resistance and efficacy.

Microfluidics & Lab-on-a-Chip


Maximizing the benefits of the On-Slide Glass

system, researchers can print hydrogel chips

containing micro-channels directly onto slide

glasses. This enables the creation of all-in-one

chips for simultaneous cell culture and drug

response observation without complex assembly.

Drug Delivery Systems (DDS)


ZENESIS enables precise printing of drug-loaded

hydrogel microneedle patches or smart pill

structures. Researchers designed these patches

to slowly release or absorb drugs in response to

specific temperature levels. The thin patch form

was seamlessly printed using an on-slide glass system.

3D printed cell-cultured meat


This application focuses on the research and

development of 3D scaffolds using edible hydrogels

for cultured meat production. We successfully

achieved growth and division of muscle and fat cells

within these 3D-printed scaffolds.

We demonstrated that regulating the ratio

of muscle and fat cells could potentially

control nutrients such as protein and fat.


Cancer Research & Tumor Microenvironment Modeling


By culturing cancer cells obtained from a cancer patient's tumor and infusing them with bioink,

3D printed samples can recreate the complex tumor environment in vitro, allowing them to function

similarly to the body. These 3D models can be used to assess anticancer drug resistance and efficacy.



Microfluidics & Lab-on-a-Chip


Maximizing the benefits of the On-Slide Glass system, researchers can print hydrogel chips containing micro-channels directly onto slide glasses. This enables the creation of all-in-one chips for simultaneous cell culture and drug response observation without complex assembly.



Drug Delivery Systems (DDS)


ZENESIS enables precise printing of drug-loaded hydrogel microneedle patches or smart pill structures.

Researchers designed these patches to slowly release or absorb drugs in response to specific temperature levels.

The thin patch form was seamlessly printed using an on-slide glass system.



3D printed cell-cultured meat


This application focuses on the research and development of 3D scaffolds using edible hydrogels for cultured meat

production. We successfully achieved growth and division of muscle and fat cells within these 3D-printed scaffolds.

We demonstrated that regulating the ratio of muscle and fat cells could potentially control nutrients such as protein and fat.


Get in Touch
Tell us about your project and our team will get back to you


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Frequently Asked Questions

Q1. Which cell types are compatible with ZENESIS?


A: ZENESIS is designed with a stable optical system that maintains consistent light intensity, coupled with filter for biocompatibility to minimize phototoxicity and cellular damage during the printing process. Furthermore, the open-material system allows users to freely adjust setting parameters. This allows for greater flexibility, tailored to the cell type, purpose, and situation.

Q2. Is it compatible with existing lab equipment?


A: They are fully compatible. ZENESIS prints directly onto standard slide glass (75×25mm), so it can be used with existing microscopes, imaging systems, and analytical equipment that support standard slide glass. No equipment replacement is required.

Q3. What bioink does it use?


A: ZENESIS uses EZ-preBioink, developed by CARIMA. It's a GelMA (Gelatin Methacryloyl)-based photocrosslinkable bioink with excellent cell compatibility and printability. The printed structure mimics the ECM environment, ensuring nutrient and oxygen supply.


Q4. Can I culture immediately after printing?


A: Once printing is complete, you can place the slide glass directly into an incubator for culture. Since printing occurs at 36°C, there's no temperature stress on cells, and the extrusion-free method minimizes cell damage, allowing immediate culture initiation.

Q5. Which research fields is it most suitable for?


A: ZENESIS is particularly suitable for:

• Drug development and high-throughput screening

• Personalized medicine (patient-derived organoids)

• Cancer research and anticancer drug response prediction

• Regenerative medicine and tissue engineering

• Organ-on-a-chip and disease modeling

• Cultured meat and food tech

• Toxicity testing and preclinical trials

• Research on the development of new photocrosslinkable materials

Q6. Can I see a demo or demonstration?


A: You are always welcome!

• Online demo: Real-time operation demonstration remotely

• Visit demo: Visit CARIMATEC showroom in South Korea


→ Get in Touch