120 results match your criteria: "MD (Z.W.); Sanofi-Genzyme R&D Center[Affiliation]"

Article Synopsis
  • The study aimed to evaluate how tourniquet usage impacts surgical time, muscle injury, and pain after ACL reconstruction.
  • Researchers conducted a systematic review of randomized controlled trials, extracting data on various factors such as operative time and postoperative pain across seven studies with 471 participants.
  • Findings indicated that tourniquet use reduced surgery duration but was linked to increased muscle injury markers (higher CPK levels) and greater postoperative pain and blood loss.
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Polygenic Risk Scores and Extreme Coronary Artery Calcium Phenotypes (CAC=0 and CAC≥1000) in Adults ≥75 Years Old: The ARIC Study.

Circ Cardiovasc Imaging

November 2024

Johns Hopkins Ciccarone Center for the Prevention of Cardiovascular Disease, Johns Hopkins University School of Medicine, Baltimore, MD (O.D., A.C.R., Z.A.D., S.P.W., M.B.M., M.J.B.).

Article Synopsis
  • The study examines the relationship between polygenic scores for coronary heart disease (CHD) and coronary artery calcium (CAC) in adults aged 75 and older, suggesting that genetic factors may influence arterial aging beyond traditional risk factors.
  • Researchers analyzed data from 1,865 participants, finding that higher polygenic CHD risk scores were associated with significantly lower odds of having no CAC and much higher odds of having high CAC levels.
  • Each standard deviation increase in the polygenic risk score corresponded to a 78% increase in CAC scores, indicating a strong link between genetic predisposition and arterial health in older adults.
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Prognostic Implications of MRI-assessed Intratumoral Fat in Hepatocellular Carcinoma: An Asian and European Cohort Study.

Radiology

November 2024

From the Department of Radiology, Functional and Molecular Imaging Key Laboratory of Sichuan Province, West China Hospital, Sichuan University, Chengdu, China (H.J., Y.W., Y.Q., J.C., Y.C., W.C., B.S.); Université Paris Cité, UMR 1149, CRI, Paris & Service de Radiologie, Hôpital Beaujon, APHP.Nord, Clichy 92110, France (R.C., M.D.B., R.S., M.R.); Department of Biomedicine, Neuroscience and Advanced Diagnostics, University of Palermo, Palermo, Italy (R.C.); Laboratory of Pathology, Key Laboratory of Transplant Engineering and Immunology, NHC, West China Hospital, Sichuan University, Chengdu, China (Z.W., Y.S.); Université Paris CIté, CRI, INSERM UMR 1149, Paris & Department of Pathology, FHU MOSAIC, AP-HP.Nord, Beaujon Hospital, Clichy, France (A.B.); and Department of Radiology, Sanya People's Hospital, Sanya, China (B.S.).

Background The clinicopathologic-radiologic and prognostic characteristics of intratumoral fat in hepatocellular carcinoma (HCC) are critical for personalized treatment but remain understudied. Purpose To investigate the clinicopathologic-radiologic associations and prognostic implications of MRI-assessed intratumoral fat in HCCs. Materials and Methods This retrospective cohort study included consecutive adult patients who underwent resection for solitary HCCs and preoperative contrast-enhanced MRI from two tertiary-care hospitals in East Asia (March 2011 to December 2021) and Western Europe (September 2012 to December 2019).

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Article Synopsis
  • Dual immune checkpoint blockade (ICB) using CTLA4 and PD-(L)1 inhibitors shows improved anti-tumor effectiveness and immune toxicity compared to PD-(L)1 inhibitors alone in advanced non-small-cell lung cancer (NSCLC) patients.
  • Patients with mutations in STK11 and/or KEAP1 genes benefit more from the combination treatment compared to those receiving only PD-(L)1 inhibitors, as shown in the POSEIDON trial.
  • The loss of KEAP1 serves as a strong predictor for the success of dual ICB, as it leads to a more favorable outcome by changing the tumor's immune environment to better engage CD4 and CD8 T cells for anti-tumor activity. *
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Intravenous Thrombolysis in Patients With Cervical Artery Dissection: A Secondary Analysis of the STOP-CAD Study.

Neurology

October 2024

From the Department of Neurology (L.S., F. Akpokiere, D.M.M., K.P., V.D., K.B., T.M.B., N.S.K., F. Khan, C.S., N. Mohammadzadeh, E.D.G., K.F., S. Yaghi), Warren Alpert Medical School of Brown University, Providence, RI; Vancouver Stroke Program (T.S.F., L.Z., P.G.), Division of Neurology, University of British Columbia, Vancouver, Canada; Department of Neurology (C.R.L.G.), Atrium Health, Charlotte, NC; Department of Neurology (J. Muppa, N.H.), University of Massachusetts Chan Medical School, Worcester; Department of Neurology (M. Affan, O.U.H.L.), University of Minnesota, Minneapolis; Department of Neurology (M.R.H., K.A., D.J.S., M. Arnold), Inselspital, University Hospital and University of Bern, Switzerland; Department of Neurology (S.S.O., R. Crandall), University of Colorado, Denver; Department of Neurology (E.L.), Weill Cornell Medicine, New York; ; Instituto Nacional de Neurología y Neurocirugía Manuel Velasco Suarez (D.L.-M., A. Arauz), Mexico City, Mexico; Service de neurologie (A.N., M.B., E.T.), Université Caen Normandie, CHU Caen Normandie, France; Department of Neurology (J.A.S., J.S.-F., V.B.), Coimbra University, ; Department of Internal Medicine (P.C.-C., M.T.B.), São João University Hospital, Porto, Portugal; Department of Neurology (M.K., D.M.), Corewell Health, Grand Rapids, MI; Department of Neurology (M.K.), Mayo Clinic, Rochester, MN; Department of Neurology (A.R., O.K.), University of Pennsylvania, Philadelphia; Neurology and Neurorehabilitation (J.E.K., S.T.E., C.T.), University Department of Geriatric Medicine FELIX PLATTER, Department of Clinical Research, University of Basel, and University Hospital Basel, Switzerland; Stroke Center (D.A.d.S.), Centro Hospitalar Universitário Lisboa Central, and Institute of Anatomy, Faculdade de Medicina da Universidade de Lisboa; Department of Neurology (M.D.S.); Department of Neuroradiology (S.B.R.), Centro Hospitalar Universitário Lisboa Central, Lisbon, Portugal; Vancouver Stroke Program (S. Mancini), Division of Neurology, University of British Columbia, Vancouver, Canada; Department of Neurology (I.M., R.R.L.), Hadassah-Hebrew University Medical Center, Jerusalem, Israel; Department of Neurology with Experimental Neurology (R.V.R., C.H.N.), Charite Universitätsmedizin-Berlin and Center for Stroke Research, Berlin, and Berlin Institute of Health, Germany; Department of Neurosciences (R. Choi, J. MacDonald), ChristianaCare, Newark, DE; Department of Neurology (R.B.S.), University of California at San Diego; Department of Neurology (X.G.), Loma Linda University, Loma Linda, CA; Department of Neurology (M. Ghannam, M. Almajali, E.A.S.), University of Iowa, Iowa City; Department of Neurosciences (B.R., F.Z.-E., A.P.), Université de Montréal, Canada; Department of Neurology (A.C.F., M.F.B., D.C.), Hospital de Santa Maria, Centro de Estudos Egas Moniz, Faculdade de Medicina, Universidade de Lisboa, Portugal; Neurology and Stroke Unit (M. Romoli, G.D.M., M.L.), Department of Neuroscience, Bufalini Hospital, Cesena, Italy; Department of Neurology (Z.K., K.J.G.), Mayo Clinic, Rochester, MN; Department of Neurology (L.K., J.A.F.), NYU Langone Health, New York; Department of Neurology (J.Y.A., J.A.G.), Washington University, Saint Louis, MO; Neurology Unit, Stroke Unit (M. Zedde, I.G.), Azienda Unità Sanitaria Locale-IRCCS di Reggio Emilia; Neuroradiology Unit (R.P.), Azienda Unità Sanitaria Locale-IRCCS di Reggio Emilia; Department of Internal Medicine (H.N.), Centro Hospital Universitario do Algarve, Faro, Portugal; Department of Neurology (D.S.L., A.M.), University of California at Los Angeles; Department of Neurology (A.C., B.M.G., R.W.), Duke University, Durham, NC; Department of Neurology (W.K.), University of North Carolina Health Rex, Raleigh; Department of Neurology (S.A.K., M. Anadani), Medical University of South Carolina, Charleston, SC; Department of Neurosurgery (K.P.K.), Medical University of South Carolina, Charleston, SC; Department of Neurology (A.E., L.C., R.C.R., Y.N.A., E.A.M.), University of Cincinnati Medical Center, OH; Department of Neurology (E.B., T.L.T.), University of Alabama at Birmingham; Department of Neurology (M.R.-G., M. Requena), University Hospital Vall d'Hebron, Barcelona, Spain; Department of Neurology (F.G.S.V., J.O.G.), University of Oklahoma; Department of Neurology (V.M.), Einstein-Jefferson Healthcare Network, Philadelphia, PA; Department of Neurology (A.H.), University of Utah, Salt Lake City; Department of Neurology (A.H.); Department of Neurology (S. Sanchez, A.S.Z., Y.K.C., R.S.), Yale New Haven Hospital, New Haven, CT; Department of Neurology (V.Y.V.), All India Institute of Medical Sciences, New Delhi, India; Department of Neurology (S. Yaddanapudi, L.A., A. Browngoehl), Thomas Jefferson University, Philadelphia, PA; Department of Neurology (T.R., R.D., Z.L.), Wake Forest Medical Center, NC; Department of Neurology (M.P., J.E.S.), Cooper University, Camden, NJ; Department of Neurology (S. Mayer, J.Z.W.), Columbia University Medical Center, New York, NY; Department of Neurology (J.P.M., D.K.), Hospital de Egas Moniz, Centro Hospitalar Lisboa Ocidental, Lisbon, Portugal; Department of Neurology (P.K., T.N.N.), Boston Medical Center, MA; Department of Neurology (S.D.A., Z.S., A. Balabhadra, S.P.), Hartford Hospital, CT; Department of Neurology (T.S.), Hospital Moinhos de Vento; Department of Neurology (S.C.M., G.P.M.), Hospital de Clínicas de Porto Alegre, Porto Alegre, Brazil; Department of Neurology (Y.D.K.), Yonsei University, Seoul, South Korea; Department of Neurology (B.K., C.E.), University of Tennessee at Memphis; Department of Neurology (S. Lingam, A.Y.Q.), Kansas University Medical Center, Kansas City; Department of Neurology (S.F., A. Alvarado), Western Ontario University, London, Canada; Department of Neurology (F. Khasiyev, G.L.), Saint Louis University, MO; Department of Neurology and Stroke Unit (M.M., V.T.), AOOR Villa Sofia-V. Cervello, Palermo, Italy; First Department of Neurology (A.T., V.T.-P.), National and Kapodistrian University of Athens, Greece; Department of Neurology (M.M.M.-M., V.C.W.), Centro Médico Nacional Siglo XXI IMSS., México City; Department of Neurology (F.I., S.E.E.J.), The Miriam Hospital, Providence, RI; Department of Neurocritical Care (S. Liu, M. Zhou), The First Affiliated Hospital of USTC, Division of Life Sciences and Medicine, University of Science and Technology, Hefei, China; Department of Neurology (M.M.A., F. Ali, M.S.), West Virginia University, WV; Department of Neurology (R.Z.M., T.K.-H.), University of Chicago, IL; Department of Neurology (F.S., J.Z.), Sir Run Run Shaw Hospital of Zhejiang University Medical School, Hangzhou, China; Department of Neurology (D.S., J.S., N. Mongare), Aga Khan University, Nairobi, Kenya; Department of Neurology (A.N.S., R.G., Shayak Sen), Cedars Sinai Medical Center, Los Angeles, CA; Department of Neurology (M. Ghani, M.E.), University of Louisville, KY; and Department of Economics (H.X.), University of California, Santa Barbara.

Article Synopsis
  • Cervical artery dissection (CeAD) is a leading cause of ischemic strokes in young adults, and this study explored the effects of intravenous thrombolysis (IVT) on patients with CeAD and stroke symptoms.
  • Analyzed data from the STOP-CAD study, it found that IVT significantly improved functional independence after 90 days in patients without increasing the risk of symptomatic intracranial hemorrhage.
  • The results suggest that IVT is a beneficial treatment for eligible patients with CeAD, aligning with current medical guidelines on its use.
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Heparan sulfate (HS) regulation of FGFR function, which is essential for salivary gland (SG) development, is determined by the immense structural diversity of sulfated HS domains. 3-O-sulfotransferases generate highly 3-O-sulfated HS domains (3-O-HS), and Hs3st3a1 and Hs3st3b1 are enriched in myoepithelial cells (MECs) that produce basement membrane (BM) and are a growth factor signaling hub. Hs3st3a1;Hs3st3b1 double-knockout (DKO) mice generated to investigate 3-O-HS regulation of MEC function and growth factor signaling show loss of specific highly 3-O-HS and increased FGF/FGFR complex binding to HS.

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Background: Factors associated with severe COVID-19 infection have been identified; however, the impact of infection on longer-term outcomes is unclear. The objective of this study was to examine the impact of COVID-19 infection on the trajectory of lung function and nutritional status in people with cystic fibrosis (pwCF).

Methods: This is a retrospective global cohort study of pwCF who had confirmed COVID-19 infection diagnosed between January 1, 2020 and December 31, 2021.

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Identification of Two Potential Gene Insertion Sites for Gene Editing on the Chicken Z/W Chromosomes.

Genes (Basel)

July 2024

Joint International Research Laboratory of Agriculture and Agri-Product Safety of Ministry of Education of China, Yangzhou University, Yangzhou 225009, China.

The identification of accurate gene insertion sites on chicken sex chromosomes is crucial for advancing sex control breeding materials. In this study, the intergenic region NC_006127.4 on the chicken Z chromosome and the non-repetitive sequence EE0.

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Background: Dietary acculturation, or adoption of dominant culture diet by migrant groups, influences human health. We aimed to examine dietary acculturation and its relationships with cardiovascular disease (CVD), gut microbiota, and blood metabolites among US Hispanic and Latino adults.

Methods: In the HCHS/SOL (Hispanic Community Health Study/Study of Latinos), US exposure was defined by years in the United States (50 states and Washington, DC) and US nativity.

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Broad-spectrum RAS inhibition has the potential to benefit roughly a quarter of human patients with cancer whose tumours are driven by RAS mutations. RMC-7977 is a highly selective inhibitor of the active GTP-bound forms of KRAS, HRAS and NRAS, with affinity for both mutant and wild-type variants. More than 90% of cases of human pancreatic ductal adenocarcinoma (PDAC) are driven by activating mutations in KRAS.

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Article Synopsis
  • PI3Kα is an important enzyme that can cause breast cancer when it goes crazy due to a mutation called H1047R, which is found in 14% of breast cancer cases.
  • Scientists studied how two special drugs, QR-7909 and QR-8557, attach to PI3Kα using a technique called cryo-EM, revealing details about its structure.
  • The study shows that these drugs can help stop the overactivity of PI3Kα by changing how it moves, which could lead to better cancer treatments in the future.
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Gut Microbiota and Blood Metabolites Related to Fiber Intake and Type 2 Diabetes.

Circ Res

March 2024

Department of Epidemiology and Population Health (Z.W., B.A.P., T.W., X.X., Y.M.-R., C.R.I., R.D.B., R.C.K., Q.Q.), Albert Einstein College of Medicine, Bronx, NY.

Article Synopsis
  • The study explored how dietary fiber intake impacts type 2 diabetes (T2D), focusing on gut microbiota and circulating metabolites in a large Latino population.
  • Researchers assessed dietary habits and analyzed gut bacteria and serum metabolites to understand fiber's role in T2D risk.
  • Findings revealed that specific gut bacteria and metabolites linked to fiber intake appear to lower the risk of T2D, suggesting a complex interplay between diet, gut health, and diabetes.
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Oral Iptacopan Monotherapy in Paroxysmal Nocturnal Hemoglobinuria.

N Engl J Med

March 2024

From the Hematology and Transplant Unit, French Reference Center for Aplastic Anemia and Paroxysmal Nocturnal Hemoglobinuria, Saint-Louis Hospital (R.P.L., F.S.F.), and Université de Paris (R.P.L.), Paris, Centre Hospitalier Universitaire (CHU) de Toulouse, Institut Universitaire du Cancer de Toulouse-Oncopole, Toulouse (S.T.), and CHU Lille, Université de Lille, Lille (L.T.) - all in France; the Department of Hematology and Stem Cell Transplantation, West German Cancer Center, University Hospital Essen, University Duisburg-Essen, Essen (A.R., F.A.), the Department of Hematology, Oncology, Hemostaseology, and Stem Cell Transplantation, University Hospital RWTH Aachen, and the Center for Integrated Oncology Aachen Bonn Cologne Düsseldorf, Aachen (J.P.), the University of Ulm, the Institute of Transfusion Medicine and Immunogenetics, German Red Cross Blood Transfusion Service Baden-Württemberg-Hessen, and University Hospital Ulm, Ulm (H.S., B. Höchsmann), the Department of Oncology, Hematology, and Bone Marrow Transplantation, Section of Pneumology, University Medical Center Hamburg-Eppendorf, Hamburg (P. Schafhausen), and Elblandklinikum Riesa, Riesa (J.S.) - all in Germany; King's College Hospital NHS Foundation Trust (A.G.K., S.G., R.T.), the National Institute for Health and Care Research and Wellcome King's Clinical Research Facility (A.G.K.), King's College London (A.G.K.), and Novartis Pharmaceuticals (C.T.), London, and St. James's University Hospital, Leeds (M.G., R.J.K.) - all in the United Kingdom; Peking Union Medical College Hospital, Chinese Academy of Medical Sciences, and Peking Union Medical College, Beijing (B. Han, C.Y.), the Department of Hematology, Tianjin Medical University General Hospital (R.F., H.L.), and the Department of Hematology, Institute of Hematology and Blood Diseases Hospital, Chinese Academy of Medical Sciences (L.Z.), Tianjin, and China Novartis Institutes for BioMedical Research, Shanghai (Z.W., S.L.) - all in China; the Division of Hematology, Hospital A Beneficência Portuguesa, São Paulo (P. Scheinberg), and ABC Medical School, Santo André (V.A.Q.M.) - both in Brazil; the Department of Translational Hematology and Oncology Research, Taussig Cancer Institute, Cleveland Clinic, Cleveland (J.P.M.); Osaka University Graduate School of Medicine, Suita (Y.U.), Kyoto University Hospital, Kyoto (T.K.), and Japanese Red Cross Society Suwa Hospital, Suwa (M.U.) - all in Japan; Duke University School of Medicine and Duke Cancer Institute, Durham, NC (C.M.C.); Unità Operativa Complessa Oncoematologia, AULSS7 Pedemontana, Bassano del Grappa (E.D.B.), Fondazione IRCCS Ca' Granda Ospedale Maggiore Policlinico, Milan (W.B.), Division of Hematology, University of Turin, Città della Salute e della Scienza, Turin (E.B.), Instituto per lo Studio, la Prevenzione e la Rete Oncologica, and Azienda Ospedaliero-Universitaria Careggi, Florence (R.N.), AORN Moscati, Avellino (L.M., A.M.R.), and University of Naples Federico II, Naples (A.M.R.) - all in Italy; Radboud University Medical Center, Nijmegen, the Netherlands (S.M.C.L.); the Hematology Unit, Department of Medicine, Hospital Umum Sarawak, Kuching (L.P.C.), and the Hematology Unit, Queen Elizabeth Hospital, Kota Kinabalu (L.W.L.L.) - both in Malaysia; Hospital Clinic of Barcelona (A.G.) and the Severe Aplastic Anemia Working Party of the European Society for Blood and Marrow Transplantation (R.P.L., A.G.K., M.G., W.B., S.T., L.T., F.S.F., L.M., A.M.R.) - both in Barcelona; the Department of Hematology and Oncology and the Department of Clinical Pathology, Hualien Tzu Chi Hospital, the Buddhist Tzu Chi Medical Foundation, and the Institute of Medical Sciences, Tzu Chi University, Hualien, Taiwan (W.-H.H.); the Division of Hematology-Oncology, Department of Medicine, Samsung Medical Center, Sungkyunkwan University School of Medicine, Seoul, South Korea (J.H.J.); Medical College of Georgia, Augusta (A.K.); City of Hope Medical Center, Duarte, CA (V.P.); the Department of Laboratory Medicine, National University Hospital, Singapore (E.-S.Y.); Novartis Pharma (C.K., R.L., M.D.) and Novartis BioMedical Research (A.V.) - both in Basel, Switzerland; and Novartis Healthcare Private, Hyderabad, India (P.B., R.K., S.M.).

Article Synopsis
  • Iptacopan, an oral factor B inhibitor, shows promise in treating paroxysmal nocturnal hemoglobinuria patients suffering from persistent hemolytic anemia, especially those not responding to anti-C5 therapy.
  • In two phase 3 trials, iptacopan significantly improved hemoglobin levels in patients with low baseline hemoglobin (under 10 g/dL), with many experiencing increases of at least 2 g/dL without needing blood transfusions.
  • The results revealed that 85% of patients in the first trial and nearly all in the second trial experienced a notable increase in hemoglobin levels, leading to reduced fatigue and dependency on transfusions.
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cMPL-Based Purification and Depletion of Human Hematopoietic Stem Cells: Implications for Pre-Transplant Conditioning.

bioRxiv

February 2024

Cellular and Molecular Therapeutics Branch, National Heart, Lung and Blood Institute (NHLBI), National Institutes of Health (NIH), Bethesda, MD 20892, USA.

The transplantation of gene-modified autologous hematopoietic stem and progenitor cells (HSPCs) offers a promising therapeutic approach for hematological and immunological disorders. However, this strategy is often limited by the toxicities associated with traditional conditioning regimens. Antibody-based conditioning strategies targeting cKIT and CD45 antigens have shown potential in mitigating these toxicities, but their long-term safety and efficacy in clinical settings require further validation.

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Association Between Years of Education and Amyloid Burden in Patients With Subjective Cognitive Decline, MCI, and Alzheimer Disease.

Neurology

March 2024

From the Department of Nuclear Medicine, Faculty of Medicine and University Hospital Cologne (M.H., H.T., K.G., G.N.B., A.D.), University of Cologne; Institute of Neuroscience and Medicine (INM-2) (M.H., K.G., A.D.), Molecular Organization of the Brain, Forschungszentrum Jülich, Germany; Neurology Unit (D.A.), Department of Clinical and Experimental Sciences, University of Brescia, Italy; Laboratory of Neuroimaging of Aging (LANVIE) (D.A.), University of Geneva; Geneva Memory Center (D.A., C.C., G.B.F.), Geneva University Hospitals, Switzerland; Amsterdam UMC (L.C., F.B., B.V.B., P.S.), Location VUmc, Radiology; Amsterdam Neuroscience (L.C., F.B., B.V.B., P.S.), Brain Imaging, the Netherlands; Queen Square Institute of Neurology and Centre for Medical Image Computing (F.B.), University College London; GE Healthcare (G.F., M.R.B., C.J.B.), Pharmaceutical Diagnostics, Amersham, United Kingdom; Department of Neurology (H.T.), Faculty of Medicine and University Hospital Cologne, University of Cologne, Germany; Division of Nuclear Medicine and Molecular Imaging (V.G.), Diagnostic Department, University Hospitals of Geneva; Laboratory of Neuroimaging and Innovative Molecular Tracers (NIMTLab) (V.G.), Faculty of Medicine, Department of Radiology, University of Geneva; Center for Biomedical Imaging (CIBM) (V.G.), Geneva, Switzerland; Barcelonaβeta Brain Research Center (BBRC) (J.L.L.M., O.G.-R., J.D.G.), Pasqual Maragall Foundation, Barcelona, Spain; Gérontopôle (J.D., P.P., J.F.D.), Department of Geriatrics, Toulouse University Hospital; Maintain Aging Research Team (J.D.), CERPOP, Inserm, Université Paul Sabatier, Toulouse; ToNIC (P.P.), Toulouse NeuroImaging Center, Université de Toulouse, Inserm, UPS, France; Center for Alzheimer Research (A.K.N.), Department of Neurobiology, Care Sciences and Society, Karolinska Institutet; Theme Inflammation and Aging (A.K.N.), Karolinska University Hospital, Stockholm; Medical Radiation Physics and Nuclear Medicine (I.S.), Karolinska University Hospital, Sweden; Division of Psychiatry (Z.W.), University College London, London and Essex Partnership University NHS Foundation Trust; Department of Brain Sciences (P.E.), Imperial College London, United Kingdom; Life Molecular Imaging (A.W.S., R.G.), Berlin; Department of Psychiatry (F.J.), Faculty of Medicine and University Hospital Cologne, University of Cologne; and German Center for Neurodegenerative Diseases (DZNE) (F.J., A.D.), Bonn-Cologne, Germany.

Objectives: Higher-educated patients with Alzheimer disease (AD) can harbor greater neuropathologic burden than those with less education despite similar symptom severity. In this study, we assessed whether this observation is also present in potential preclinical AD stages, namely in individuals with subjective cognitive decline and clinical features increasing AD likelihood (SCD+).

Methods: Amyloid-PET information ([F]Flutemetamol or [F]Florbetaben) of individuals with SCD+, mild cognitive impairment (MCI), and AD were retrieved from the AMYPAD-DPMS cohort, a multicenter randomized controlled study.

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Naturally occurring T cells that recognize microbial peptides via HLA-E, a nonpolymorphic HLA class Ib molecule, could provide the foundation for new universal immunotherapeutics. However, confidence in the biological relevance of putative ligands is crucial, given that the mechanisms by which pathogen-derived peptides can access the HLA-E presentation pathway are poorly understood. We systematically interrogated the HIV proteome using immunopeptidomic and bioinformatic approaches, coupled with biochemical and cellular assays.

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Response to Bruton's tyrosine kinase inhibitors in aggressive lymphomas linked to chronic selective autophagy.

Cancer Cell

February 2024

Goethe University Frankfurt, University Hospital, 60590 Frankfurt am Main, Germany; German Cancer Consortium (DKTK), Partner Site Frankfurt/Mainz, 60528 Frankfurt am Main, Germany; University Cancer Center (UCT) Frankfurt, University Hospital, Goethe University, 60590 Frankfurt am Main, Germany; Frankfurt Cancer Institute, Goethe University, 60596 Frankfurt am Main, Germany. Electronic address:

Diffuse large B cell lymphoma (DLBCL) is an aggressive, profoundly heterogeneous cancer, presenting a challenge for precision medicine. Bruton's tyrosine kinase (BTK) inhibitors block B cell receptor (BCR) signaling and are particularly effective in certain molecular subtypes of DLBCL that rely on chronic active BCR signaling to promote oncogenic NF-κB. The MCD genetic subtype, which often acquires mutations in the BCR subunit, CD79B, and in the innate immune adapter, MYD88, typically resists chemotherapy but responds exceptionally to BTK inhibitors.

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Article Synopsis
  • - This study identifies over 13 million interactions between transcriptional enhancers and their target genes across various cell types and tissues, which is crucial for understanding how gene regulation influences diseases.
  • - Utilizing a new predictive model called ENCODE-rE2G, the researchers achieved high accuracy in predicting enhancer-gene interactions, supported by a robust dataset from CRISPR experiments and genetic mapping.
  • - The findings highlight not only the role of enhancers and their contacts with promoters but also additional factors like promoter types and enhancer interactions that affect gene regulation, creating a detailed resource for future genetic research.
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Introduction: Whether 10-day short-course vonoprazan-amoxicillin dual therapy (VA-dual) is noninferior to the standard 14-day bismuth-based quadruple therapy (B-quadruple) against Helicobacter pylori eradication has not been determined. This trial aimed to compare the eradication rate, adverse events, and compliance of 10-day VA-dual regimen with standard 14-day B-quadruple regimen as first-line H. pylori treatment.

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An FcRn-targeted mucosal vaccine against SARS-CoV-2 infection and transmission.

Nat Commun

November 2023

Division of Immunology, Virginia-Maryland College of Veterinary Medicine, University of Maryland, College Park, MD, 20742, USA.

SARS-CoV-2 is primarily transmitted through droplets and airborne aerosols, and in order to prevent infection and reduce viral spread vaccines should elicit protective immunity in the airways. The neonatal Fc receptor (FcRn) transfers IgG across epithelial barriers and can enhance mucosal delivery of antigens. Here we explore FcRn-mediated respiratory delivery of SARS-CoV-2 spike (S).

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Introduction: Convolutional neural network during endoscopy may facilitate evaluation of Helicobacter pylori infection without obtaining gastric biopsies. The aim of the study was to evaluate the diagnosis accuracy of a computer-aided decision support system for H. pylori infection (CADSS-HP) based on convolutional neural network under white-light endoscopy.

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Ethical Considerations and Fairness in the Use of Artificial Intelligence for Neuroradiology.

AJNR Am J Neuroradiol

November 2023

Athinoula A. Martinos Center for Biomedical Imaging (Z.W., Y. Liu, O.W.), Department of Radiology, Massachusetts General Hospital, Boston, Massachusetts.

In this review, concepts of algorithmic bias and fairness are defined qualitatively and mathematically. Illustrative examples are given of what can go wrong when unintended bias or unfairness in algorithmic development occurs. The importance of explainability, accountability, and transparency with respect to artificial intelligence algorithm development and clinical deployment is discussed.

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While several COVID-19 vaccines have been in use, more effective and durable vaccines are needed to combat the ongoing COVID-19 pandemic. Here, we report highly immunogenic self-assembling SARS-CoV-2 spike-HBsAg nanoparticles displaying a six-proline-stabilized WA1 (wild type, WT) spike S6P on a HBsAg core. These S6P-HBsAgs bound diverse domain-specific SARS-CoV-2 monoclonal antibodies.

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Landscape of Psychological Profiles in Patients With Esophageal Achalasia.

Clin Transl Gastroenterol

November 2023

Endoscopy Center and Endoscopy Research Institute, Zhongshan Hospital, Fudan University, Shanghai, China.

Introduction: Esophageal achalasia (EA) is a chronic esophageal dysmotility disease, of which psychological distress was poorly understood. This study aims to assess the status of psychosocial characteristics in EA and to determine the relationship between psychological distress and EA.

Methods: Seventy pairs of age and gender-matched patients with EA and healthy control individuals were prospectively enrolled from December 2019 to April 2020 at our hospital.

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Comprehensive tissue deconvolution of cell-free DNA by deep learning for disease diagnosis and monitoring.

Proc Natl Acad Sci U S A

July 2023

Department of Pathology and Laboratory Medicine, David Geffen School of Medicine, University of California at Los Angeles, Los Angeles, CA 90095.

Article Synopsis
  • Plasma cell-free DNA (cfDNA) serves as a noninvasive biomarker for identifying cell death across different organs, which can help in detecting and monitoring diseases.
  • The study presents a comprehensive tissue methylation atlas created from 521 noncancer samples, identifying specific methylation patterns that aid in accurately determining the tissue origin of cfDNA.
  • A new deep-learning model called supervised tissue deconvolution is developed, which shows improved sensitivity and accuracy for analyzing cfDNA, with applications in disease diagnosis and tracking treatment effects.
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