Case Studies Combining Computational Intelligence and Life Sciences.
This study investigates how CRISPR interference can suppress antibiotic-resistant genes in E. coli. Using Biopython, we simulated gene knockouts and validated sequences using BLAST analysis.
Repo Reuse: MIT
This study investigates how CRISPR interference can suppress antibiotic-resistant genes in E. coli. Using Biopython, we simulated gene knockouts and validated sequences using BLAST analysis.
Repo Reuse: MIT
This study investigates how CRISPR interference can suppress antibiotic-resistant genes in E. coli. Using Biopython, we simulated gene knockouts and validated sequences using BLAST analysis.
Repo Reuse: MIT
This study investigates how CRISPR interference can suppress antibiotic-resistant genes in E. coli. Using Biopython, we simulated gene knockouts and validated sequences using BLAST analysis.
Repo Reuse: MIT
This study investigates how CRISPR interference can suppress antibiotic-resistant genes in E. coli. Using Biopython, we simulated gene knockouts and validated sequences using BLAST analysis.
Repo Reuse: MIT
This study investigates how CRISPR interference can suppress antibiotic-resistant genes in E. coli. Using Biopython, we simulated gene knockouts and validated sequences using BLAST analysis.
Repo Reuse: MITSlides and academic posters.
Work credited to collaborators and friends.
Short bio snippet showcasing expertise and contributions.
Short bio snippet showcasing expertise and contributions.
Short bio snippet showcasing expertise and contributions.
Short bio snippet showcasing expertise and contributions.
Short bio snippet showcasing expertise and contributions.
Short bio snippet showcasing expertise and contributions.