Stem cell basis of a host driven transmission of antigen packed aerosols: a novel mechanism of natural vaccination for tuberculosis
Das, B.; Pathak, L.; Gayan, S.; Pal, B.; Saikia, P. j.; Baishya, T.; Das, N. R.; Das, R.; Maral, M.; Mahanta, R.; Bhuyan, S.; Gautam, P.; Talukdar, J.; Sandhya, S.; Kalita, D.; Swami, V.; Das, K. R.; Bora, D. K.; Ghora, J.; Pulu, I.
Show abstract
Natural vaccination against pathogens are known to be achieved by herd-immunity i.e. infected human host provide immunity to the community by spreading the pathogen. Whether, infected human hosts transmit vesicle packed aerosols of pathogens antigen for natural vaccination of the community has not yet been considered. We have explored a traditional healing method of aerosol-inoculation against small pox and tuberculosis in the Sualkuchi-Hajo cultural complex of Kamarupa, an ancient Indian region known for tantra-based healing and spirituality. In the aerosol-inoculation method against TB, selected persons with TB (later identified as smear negative TB subject) are encouraged to spread good nigudah in the community by Kirtan chanting; the good Nigudah are thought to be present within bad-nigudah or invisible krimis (tiny flesh eating living being mentioned in ancient Indias medicinal text Caraka Samhita and Atharva Veda). A 15-years of contact TB investigation study, as well as laboratory study of aerosol obtained from smear negative PTB (SN-PTB) subjects led to the identification of good Nigudah as extracellular vesicles (EVs) filled with Mtb-antigen ESAT-6. We then developed a mouse model of aerosol-inoculation using SN-PTB subject derived aerosol EVs, and identified Mtb infected mesenchymal stem cells (MSCs) of the lung as the putative source of the ESAT-6+ EVs. These Mtb infected MSCs reprogram to altruistic stem cell (ASC) phenotype, which then secrete ESAT-6+ EVs to the aerosols; healthy mice receiving the aerosol develop Mtb specific herd immunity. These results expedite our ongoing work on the innate defense mechanism of ASCs against pathogen, and provide a novel mechanism of natural vaccination, where the host extracts appropriate antigens from a pathogen, and then spread it in the community via aerosols.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
Similar papers in this journal
- A Modified BPaL Regimen for Tuberculosis Treatment replaces Linezolid with Inhaled Spectinamides 94%
- Efferocytosis of SARS-CoV-2-infected dying cells impairs macrophage anti-inflammatory programming and continual clearance of apoptotic cells 94%
- Murine Alveolar Macrophages Rapidly Accumulate Intranasally Administered SARS-CoV-2 Spike Protein leading to Neutrophil Recruitment and Damage 94%
Similar papers in this journal
- HIV Impairs And Exploits Pulmonary Th17 And Th22 Cell-Mediated Immune Responses To Mycobacterium Tuberculosis 94%
- Fatty acid metabolism in neutrophils promotes lung damage and bacterial replication during tuberculosis. 94%
- NK cell-macrophage interactions in granulomas correlate with limited tuberculosis pathology 94%
Similar papers in this journal
- Acute inflammation, mediated by lung neutrophils, confers enhanced protection against Mycobacterium tuberculosis infection in mice 93%
- A versatile human intestinal organoid-derived epithelial monolayer model for the study of enteric pathogens 93%
- Deciphering the role of mucosal immune responses and cervicovaginal microbiome in resistance to HIV infection in HIV-exposed seronegative (HESN) women 92%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.