Keyword search (4,163 papers available)

"epidemiology" Keyword-tagged Publications:

Title Authors PubMed ID
1 Updated Status of Physical Activity Research for People With Traumatic Brain Injury Quilico EL; Driver SJ; 41606762
CONCORDIA
2 Impact of COVID-19 on incidence and trends of adverse events among hospitalised patients in Calgary, Canada: a retrospective chart review study Wu G; Eastwood CA; Cheligeer C; Southern DA; Zeng Y; Ghali WA; Bakal JA; Boussat B; Flemons W; Forster A; Xu Y; Quan H; 41592994
CONCORDIA
3 Effect of body image perception and skin-lightening practices on mental health of Filipino emerging adults: a mixed-methods approach protocol Regencia ZJG; Gouin JP; Ladia MAJ; Montoya JC; Baja ES; 37192806
PSYCHOLOGY
4 Geospatial analysis reveals a hotspot of fecal bacteria in Canadian prairie lakes linked to agricultural non-point sources Oliva A; Onana VE; Garner RE; Kraemer SA; Fradette M; Walsh DA; Huot Y; 36653256
BIOLOGY
5 Body-composition phenotypes and their associations with cardiometabolic risks and health behaviours in a representative general US sample Kakinami L; Plummer S; Cohen TR; Santosa S; Murphy J; 36183799
PERFORM
6 Household income and maternal education in early childhood and activity-limiting chronic health conditions in late childhood: findings from birth cohort studies from six countries Spencer NJ; Ludvigsson J; You Y; Francis K; Abu Awad Y; Markham W; Faresjö T; Goldhaber-Fiebert J; Andersson White P; Raat H; Mensah F; Gauvin L; McGrath JJ; 35863874
PERFORM
7 Comparison of different severe obesity definitions in predicting future cardiometabolic risk in a longitudinal cohort of children Kakinami L; Smyrnova A; Paradis G; Tremblay A; Henderson M; 35705336
PERFORM
8 COVID-19-Related Concerns and Symptoms of Anxiety: Does Concern Play a Role in Predicting Severity and Risk? Benzouak T; Gunpat S; Briner EL; Thake J; Kisely S; Rao S; 34987892
PSYCHOLOGY
9 The occurrence of potentially pathogenic fungi and protists in Canadian lakes predicted using geomatics, in situ and satellite-derived variables: Towards a tele-epidemiological approach Oliva A; Garner RE; Walsh D; Huot Y; 34915335
BIOLOGY
10 Discovery of new vascular disrupting agents based on evolutionarily conserved drug action, pesticide resistance mutations, and humanized yeast Garge RK; Cha HJ; Lee C; Gollihar JD; Kachroo AH; Wallingford JB; Marcotte EM; 34849907
BIOLOGY
11 Overestimation of Postpartum Depression Prevalence Based on a 5-item Version of the EPDS: Systematic Review and Individual Participant Data Meta-analysis Thombs BD; Levis B; Lyubenova A; Neupane D; Negeri Z; Wu Y; Sun Y; He C; Krishnan A; Vigod SN; Bhandari PM; Imran M; Rice DB; Azar M; Chiovitti MJ; Saadat N; Riehm KE; Boruff JT; Cuijpers P; Gilbody S; Ioannidis JPA; Kloda LA; Patten SB; Shrier I; Ziegelstein RC; Comeau L; Mitchell ND; Tonelli M; Barnes J; Beck CT; Bindt C; Figueiredo B; Helle N; Howard LM; Kohlhoff J; Kozinszky Z; Leonardou AA; Radoš SN; Quispel C; Rochat TJ; Stein A; Stewart RC; Tadinac M; Tandon SD; Tendais I; Töreki A; Tran TD; Trevillion K; Turner K; Vega-Dienstmaier JM; Benedetti A; 33104415
LIBRARY
12 Weight cycling is associated with adverse cardiometabolic markers in a cross-sectional representative US sample Kakinami L; Knäuper B; Brunet J; 32366587
PERFORM
13 Income inequality and social gradients in children's height: a comparison of cohort studies from five high-income countries. Bird PK, Pickett KE, Graham H, Faresjö T, Jaddoe VWV, Ludvigsson J, Raat H, Seguin L, Wijtzes AI, McGrath JJ 31909223
PSYCHOLOGY

 

Title:Discovery of new vascular disrupting agents based on evolutionarily conserved drug action, pesticide resistance mutations, and humanized yeast
Authors:Garge RKCha HJLee CGollihar JDKachroo AHWallingford JBMarcotte EM
Link:https://pubmed.ncbi.nlm.nih.gov/34849907/
DOI:10.1093/genetics/iyab101
Publication:Genetics
Keywords:angiogenesisepidemiologyevolutionhumanized yeastphenologssystems biologyvascular disrupting agents
PMID:34849907 Category: Date Added:2021-12-01
Dept Affiliation: BIOLOGY
1 Department of Molecular Biosciences, The University of Texas at Austin, Austin, TX 78712, USA.
2 Division of Hematology/Oncology, Boston Children's Hospital and Department of Pediatric Oncology, Dana-Farber Cancer Institute, Harvard Stem Cell Institute, Harvard Medical School, Boston, MA 02115, USA.
3 US Army Research Laboratory-South, Austin, TX 78758, USA.
4 The Department of Biology, Centre for Applied Synthetic Biology, Concordia University, Montreal, QC H4B 1R6, Canada.

Description:

Thiabendazole (TBZ) is an FDA-approved benzimidazole widely used for its antifungal and antihelminthic properties. We showed previously that TBZ is also a potent vascular disrupting agent and inhibits angiogenesis at the tissue level by dissociating vascular endothelial cells in newly formed blood vessels. Here, we uncover TBZ's molecular target and mechanism of action. Using human cell culture, molecular modeling, and humanized yeast, we find that TBZ selectively targets only 1 of 9 human ß-tubulin isotypes (TUBB8) to specifically disrupt endothelial cell microtubules. By leveraging epidemiological pesticide resistance data and mining chemical features of commercially used benzimidazoles, we discover that a broader class of benzimidazole compounds, in extensive use for 50 years, also potently disrupt immature blood vessels and inhibit angiogenesis. Thus, besides identifying the molecular mechanism of benzimidazole-mediated vascular disruption, this study presents evidence relevant to the widespread use of these compounds while offering potential new clinical applications.





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