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1.
AIDS ; 37(7): 1177-1179, 2023 06 01.
Article in English | MEDLINE | ID: mdl-36927653

ABSTRACT

This study evaluated the association between the transmigration of monocyte subpopulations that contributes to atherosclerosis development, along with surrogate biomarkers of inflammation and atherosclerosis, through carotid intima-media thickness (cIMT) measurements of 72 people with HIV (PWH) on suppressive antiretroviral therapy (ART). We found that the transmigration of intermediate monocytes was positively correlated with D-dimer and cIMT, suggesting that intermediate monocytes may have a greater propensity to promote cardiovascular disease (CVD) in PWH on ART.


Subject(s)
Atherosclerosis , Cardiovascular Diseases , HIV Infections , Humans , HIV Infections/complications , HIV Infections/drug therapy , Monocytes , Risk Factors , Carotid Intima-Media Thickness , Atherosclerosis/complications , Cardiovascular Diseases/complications
2.
BMJ Case Rep ; 14(5)2021 May 12.
Article in English | MEDLINE | ID: mdl-33980567

ABSTRACT

A novel coronaravirus, identified as SARS-CoV-2, spread throughout the world in 2020. The COVID-19 pandemic has led to many discoveries and clinical manifestations. A young patient is presented with new, self-resolving neutropenia presenting weeks after a prolonged hospital stay for COVID-19 pneumonia. Workup included analysis for underlying infection, nutritional abnormalities, malignancy, medication and toxin exposure, all of which were negative. From 2020 to the present, few reports have described neutropenia associated with a recent COVID-19 infection. In particular, no reports have described a delayed presentation of neutropenia. The authors would like to propose that the significant inflammatory response associated with COVID-19 is likely what led to this patient's postviral neutropenia. Furthermore, in young healthy patients, bone marrow biopsy may be deferred and a watchful-waiting approach may be taken to assess for neutropenia resolution.


Subject(s)
COVID-19 , Neoplasms , Neutropenia , Humans , Neutropenia/chemically induced , Neutropenia/drug therapy , Pandemics , SARS-CoV-2
3.
Front Microbiol ; 11: 577762, 2020.
Article in English | MEDLINE | ID: mdl-33343520

ABSTRACT

Neisseria gonorrhoeae infections are a serious global health problem. This organism has developed disturbing levels of antibiotic resistance, resulting in the need for new approaches to prevent and treat gonorrhea. The genus Neisseria also includes several members of the human microbiome that live in close association with an array of microbial partners in a variety of niches. We designed an undergraduate antibiotic discovery project to examine a panel of nonpathogenic Neisseria species for their ability to produce antimicrobial secondary metabolites. Five strains belonging to the N. mucosa species group displayed activity against other Neisseria in delayed antagonism assays; three of these were active against N. gonorrhoeae. The antimicrobial compound secreted by N. mucosa NRL 9300 remained active in the presence of catalase, trypsin, and HEPES buffer, and effectively inhibited a DNA uptake mutant of N. gonorrhoeae. Antimicrobial activity was also retained in an ethyl acetate extract of plate grown N. mucosa NRL 9300. These data suggest N. mucosa produces an antimicrobial secondary metabolite that is distinct from previously described antigonococcal agents. This work also serves as a demonstration project that could easily be adapted to studying other members of the human microbiome in undergraduate settings. We offer the perspective that both introductory and more advanced course-based and apprentice-style antibiotic discovery projects focused on the microbiome have the potential to enrich undergraduate curricula and we describe transferrable techniques and strategies to facilitate project design.

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