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Williams, B. D.

Publications and source records attributed to Williams, B. D..

3 recordsLinked to original sources

Backtranslation of human RNA biosignatures of tuberculosis disease risk into the preclinical pipeline is condition dependent

It is not clear whether human progression to active tuberculosis disease (TB) risk signatures are viable endpoint criteria for evaluations of treatments in clinical or preclinical development. TB is the deadliest infectious disease globally and more efficacious vaccines are needed to reduce this mortality. However, the immune correlates of protection for either preventing infection with Mycobacterium tuberculosis or preventing TB disease have yet to be completely defined, making the advancement of candidate vaccines through the pipeline slow, costly, and fraught with risk. Human-derived correlate of risk (COR) gene signatures, which identify an individuals risk to progressing to active TB disease, provide an opportunity for evaluating new therapies for TB with clear and defined endpoints. Though prospective clinical trials with longitudinal sampling are prohibitively expensive, characterization of COR gene signatures is practical with preclinical models. Using a 3Rs (Replacement, Reduction and Refinement) approach we reanalyzed heterogeneous publicly available transcriptional datasets to determine whether a specific set of COR signatures are viable endpoints in the preclinical pipeline. We selected RISK6, Sweeney3 and BATF2 human-derived blood-based RNA biosignatures because they require relatively few genes to assign a score and have been carefully evaluated across several clinical cohorts. Excitingly, these data provide proof-of-concept that human COR signatures seem to have high fidelity across several tissue types in the preclinical TB model pipeline and show best performance when the model most closely reflected human infection or disease conditions. Human-derived COR signatures offer an opportunity for high-throughput preclinical endpoint criteria of vaccine and drug therapy evaluations. One Sentence SummaryHuman-derived biosignatures of tuberculosis disease progression were evaluated for their predictive fidelity across preclinical species and derived tissues using available public data sets.

immunology↗

Taxonomic Treatment of Blighia K.D.Koenig occurring in Ghana.

Blighia, a genus consisting of trees in the Sapindaceae, is found in sub-Saharan Africa and other parts of the world. It is characterized by three species globally: B. unijugata Baker, B. sapida K.D. Koenig, and B. welwitschii (Hiern) Radlk but B. unijugata is absent in Ghana. Research on Blighia in West Africa has been primarily conducted in Nigeria, Togo, and Benin. However, the taxonomy of the genus is lacking in West Africa, with the Flora of West Tropical Africa being the only authoritative literature. A revision of this genus in Ghana is needed due to the monotonous concentration of research on B. sapida and the knowledge gap from Hutchinson & Dalziel. This paper seeks to update the taxonomy of members in Blighia occurring in Ghana. The study collected specimens of Blighia sapida and B. welwitschii from 15 localities across Ghana. Fossil records, voucher specimens, and digital collections obtained from the Ghana Herbarium and GBIF respectively, were also examined. Standard georeferencing software was used to generate distribution maps. B. sapida produces oblanceolate or obovate leaves with rounded or emarginate apices and acute bases. They are mostly distributed along the coastal belt of the country while B. welwitschii produces lanceolate leaves with bluntly attenuate or acute apices and cuneate bases. They are however distributed mainly in the middle belt of the country.

plant biology↗

Advancing knowledge of West African morning glories: a taxonomic revision of Ipomoea L. (Convolvulaceae) from Ghana

Ghanas plant diversity is estimated at 2,974 plant species, belonging to 1,077 genera and 173 plant families. However, a Flora of Ghana is yet inexistent: targeted floristic and taxonomic studies are still much needed to document the plant diversity of the country fully at the family, generic and species levels. This is essential for identifying priority conservation areas in the country and support further research in crop wild relatives or medicinal plants, which will help tackle food insecurity and improve livelihoods. In this study, we provide a taxonomic revision of the Ipomoea spp. in Ghana to enhance their identification, conservation and sustainable utilization as food and medicine among other uses. An extensive literature review was carried out, including historical references and online taxonomic databases, to recover information on accepted names, type specimens and synonyms, followed by consultation of herbarium specimens at GC herbaria, to retrieve morphological information and database specimens. Specimen locality information was georeferenced, and records plotted onto distribution maps. As a result, this work provides an identification key to the species of Ipomoea of Ghana, nomenclatural information, comprehensive morphological descriptions, detailed list of examined specimens, distribution maps and notes on conservation status and traditional plant uses. In total, 28 species are fully described, 20 of which are native and eight introduced from the Americas; five are new records to Ghana.

plant biology↗