Trusted by:
Rate working with us 9 or 10/10
For leading high-science Pharma and Biotechs
Including two from Science and NSF
6 medical animaiton styles, 20 subtypes to meet audience and budget needs
Proprietary production platform speeds up process without compromising quality at an average price tag
Digtial content/asset channel planning upfront
Main 3D is the most universal animation type. It's scientifically rigorous, eye-catching, and very cinematic. It's a great match for most MoAs and MoDs for IR needs, alongside HCP communications.
The usual Main 3D animation type in combination with 2D elements. This is an excellent option for MoAs where there's a need to incorporate research data, schematics, or other additional information.
The most advanced animation type on the market, based on computational biology methods. Science-grade molecular simulations for unprecedented accuracy.
Featured:
Awarded:
A relatively simple, yet still eye-catching 2D animation style is an ideal option for explainer animations, platform or AI-based technologies, alongside cases where IP details must not be disclosed.
This type is designed specifically for projects with tight deadlines. Through optimization, we achieve a rapid turnaround without compromising quality or scientific accuracy.
High-end 3D brings the most advanced animation type fruther distinguishing key aspects of the LDH MOD and Condoliase MOA story, based on proprietary computational biology methods.
Mix and match addtional animaiton styles and subtypes to meet mesage/audience needs
The digital assets offer a wide range of repurposing options as multiple media forms can be adapted from source files for straight- play, interactive touchscreens, websites, in broadcast, and on mobile or table devices.
PRECLINICAL
DEVELOPMENT
CLINICAL DEVELOPMENT
Phase 1 | Phase 2 | Phase 3
LAUNCH /
POST LAUNCH
BRAND MATURITY
Phase 4
Trusted by Top-20 Pharma and 100+ small and medium Biotechs
Development of interactive learning experience, including 3D models/animation, hotspot pop-ups (rotating molecules, 2D wipes or fades, etc.) that are scientifically accurate and clinically sophisticated in nature.
Users explore key LDH and condoliase targets; explore molecules individually or drag multiple molecules to the center to compare and/or deep dive to understand the molecule pathways
AR brings digital information and virtual
objects into the physical space.
By turning a distinct image on a screen or
physical statue within a space into a marker,
programmed simulated experiences are
triggered for an engaging, self-learning
experience.
Using mobile device, user hovers over
various targets, key steps in procedure
come to life- injecting the patient,
navigating to disc, use of condoliase, and
then post-op we see reformation of the disc.