lV Inno-Biotech

Global Perspective
Rooted in Taiwan

With four groundbreaking technologies at the Innovative Core Biotechnology Center, we embark on a journey of innovation and revolution in the field of microbiology. These cutting-edge advancements redefine the boundaries of microbial research, ushering in a new era of possibilities and applications. From the Synthetic Microbial Consortium to next-generation probiotics, genome-scale synthetic biology, and artificial intelligence-driven microbiome big data training, each technology represents a paradigm shift in our understanding and manipulation of microbial ecosystems.

Exploring Biotechnologies Symbiotic Fermentation Next-Generation Probiotics Synthetic Biology AI Gene Editing

Innovative Core Biotech I

Synthetic Microbial Consortia (SMC)

Screening and Synthesizing Microbial Communities

Synthetic Microbial Consortia (SMC) hold immense potential but are challenging to control. Through natural microbial selection strategies in processes A and B, we successfully cultivate multifunctional SMC. By identifying core participant “Players” and fundamental metabolic “Networks”, we establish optimal microbial consortia (SMC). This process ensures the presence of desired functional microbes in applied environments, overcoming limitations of efficiency and complexity associated with single-strain systems. Through a rigorous scientific microbial selection process, we delve into scientific domains with greater depth and precision, unveiling innovative possibilities for the development of microbial technology.”

A. Strategic A to approaches for SMC

B. Strategic B to approaches for SMC

Innovative Core Biotech II

Unveiling the Potential of Next-Generation Probiotics (NGP)

In the dynamic arena of microbiome research, Next-Generation Probiotics (NGP) emerges as a beacon of innovation, transcending traditional probiotic limitations. Harnessing advancements in microbiome science and genomics, NGP delves into microbial diversity to unlock novel therapeutic benefits and address diverse health concerns. Our exploration of NGP’s development journey spans diverse microbiota sources, groundbreaking discovery methods, rigorous evaluation, and clinical validation.

Join us on a journey into the mysteries of NGP, a microbial technology revolution poised to redefine health, nutrition, and well-being. Together, let’s explore the untapped potential and exciting horizons that NGP brings to the forefront of scientific discovery and human betterment.

Innovative Core Biotech III

Genomic Synthetic Biology

CRISPR-Cas9 system technology is a revolutionary gene-editing tool widely applied in the study and manipulation of microbial genomes. It relies on a natural immune mechanism found in bacteria, where the organism integrates segments of invading viral genes into its genome, forming CRISPR sequences. Using Cas proteins and guide RNA, CRISPR can precisely cut and edit microbial DNA, allowing for modifications to the genome. This technology is versatile, enabling the deletion, replacement, or addition of gene sequences and regulation of gene expression levels. In microbial communities, CRISPR finds applications in functional gene studies, metabolic engineering, optimization of drug production, and various other fields. Its efficiency and precision make CRISPR a crucial tool for microbiologists and bioengineers, advancing scientific research and applications in microbial-related disciplines.

 

A. GEM - Genomic Engineering Microbiomes Systems Tech Flow

B. A broader spectrum of applications and innovations within the field of microbiome-related products.

Innovative Core Biotech IV

Artificial Intelligence Microbiome Big Data Training

Our Artificial Intelligence Microbiome Big Data Training System is a cutting-edge platform designed to harness the power of Artificial Intelligence (AI) for the analysis and understanding of microbiome-related big data. The microbiome, consisting of diverse microbial communities, plays a crucial role in various domains, including agriculture, healthcare, and environmental sciences.

  1. Advanced AI Algorithms:

    • Our system employs state-of-the-art AI algorithms, including Machine Learning (ML) and Deep Learning (DL) techniques, to unravel complex patterns within microbiome big data. These algorithms enable comprehensive analysis and predictive modeling.
  2. Microbiome Genomic Sequencing:

    • The system integrates high-throughput sequencing data to characterize and identify microbial genomes within diverse environments, such as soil, intestines, and industrial settings. This facilitates precise profiling of microbial communities.
  3. Gene Editing and Strain Screening:

    • Utilizing AI-driven gene editing and strain screening, the system enables the identification and selection of novel microbial strains with specific characteristics. This enhances the development of customized microbial formulations for various applications.
  4. Protein Structure Speculation:

    • The platform employs advanced computational techniques to speculate on protein structures based on genomic data. This contributes to a deeper understanding of microbial functionalities and their potential applications.
  5. Integration with AIOT in Agriculture:

    • Our system seamlessly integrates with the Agricultural Internet of Things (AIOT), providing real-time insights into microbial activities. This integration supports precision agriculture, optimizing resource utilization and crop health.
  6. Blockchain Technology for Data Security:

    • To ensure the integrity and security of microbiome big data, the system leverages blockchain technology. This enables transparent and tamper-proof data management.

Practice Validates Truth

Limited Sessions, Join Now

On the journey of seeking knowledge and innovation, we don’t just stop at theory; we emphasize practical validation. To ensure our ideas come to fruition, we earnestly seek partners for experimental sites. It’s an opportunity not only to demonstrate scientific truths but also to lay a solid foundation for future innovations.

Terms of Cooperation

  1. Interested in the applications of microbiology
  2. Can be divided into control group and experimental group
  3. Can share data and multimedia content
  4. Agrees with ESGs sustainable business philosophy

Dr.GEM Service Team

  • Service Days: Monday to Friday
  • Service Hours: 08:00 AM – 09:00 PM
  • Service Phone: 04-24793216
  • Contact Person: Mr. Chen