EVENT
【10/1 Seminar】Bio2Q Open Seminar: Djenet Bousbaine, PhD
August 31, 2026
Poster
Credits: WPI-Bio2Q
Keio University Human Biology-Microbiome-Quantum Research Center (WPI-Bio2Q) will hold a seminar as follows.
This is an event for faculty, students, and staff of Keio University.
| Date&Time | 17:00 -18:00, October 1, 2026 |
|---|---|
| Venue | 1F Lounge, Center for Integrated Medical Research, Shinanomachi Campus, Keio University |
| Title | Engineering Skin Bacteria for Needle-Free Topical Vaccination |
| Speaker | Djenet Bousbaine, PhD Postdoctoral scholar Department of Bioengineering Stanford University, US |
| Language | English |
| Poster | |
| Registration | Onsite only / No pre-registration required |
The ubiquitous skin colonist Staphylococcus epidermidis elicits a CD8+ T cell response pre-emptively, in the absence of infection, but the scope and purpose of this program remain unclear. Here, we show that this colonist also induces a potent, durable, and specific antibody response. Colonizing mice with S. epidermidis engineered to display tetanus toxin fragment C elicits neutralizing antibodies that protect against lethal challenge. A related strain expressing a SpyCatcher moiety can be conjugated to recombinant immunogens, and the resulting commensal elicits long-lasting, high antibody titers, including robust nasal IgA. An enzymatic approach to display immunogens on gram-positive bacteria extends this strategy to genetically intractable commensals: Cutibacterium acnes labeled with immunogens elicits strong T and B cell responses. Thus, immunity to common skin colonists involves a coordinated T and B cell response, which can be redirected against pathogens as a novel form of topical vaccination.
More Bio2Q News
【11/13 Seminar】Bio2Q Open Seminar: Richard I. Morimoto, PhD
Keio University Human Biology-Microbiome-Quantum Research Center (WPI-Bio2Q) will hold a seminar as follows. This is an event for faculty, ...
【Publication】Identification and characterization of CXCL13 producers in bone tis...
Co-authored by researchers from Bio2Q and published in the journal International Immunology, this study clarifies how fasting alters the imm...
【Publication】Inhibition of Mincle signaling by chemically synthesized disacchari...
Co-authored by researchers at Bio2Q and published in Chemical Communications, this study discovered plant-derived compounds that suppress ex...
【Publication】Accurate, sensitive, and efficient chromatin accessibility quantifi...
Co-authored by researchers at Bio2Q and published in Nature Communications, this study developed a new analytical technology to accurately a...
【Publication】Mixed-class J-domain protein scaffolds promote expanded aggregate h...
Co-authored by researchers at Bio2Q and published in FEBS Letters, this study elucidates a new degradation mechanism by which human cells re...

