7348. Targeting DNA Damage Response and Replication Stress in Pancreatic Cancer.
作者: Stephan B Dreyer.;Rosie Upstill-Goddard.;Viola Paulus-Hock.;Clara Paris.;Eirini-Maria Lampraki.;Eloise Dray.;Bryan Serrels.;Giuseppina Caligiuri.;Selma Rebus.;Dennis Plenker.;Zachary Galluzzo.;Holly Brunton.;Richard Cunningham.;Mathias Tesson.;Craig Nourse.;Ulla-Maja Bailey.;Marc Jones.;Kim Moran-Jones.;Derek W Wright.;Fraser Duthie.;Karin Oien.;Lisa Evers.;Colin J McKay.;Grant A McGregor.;Aditi Gulati.;Rachel Brough.;Ilirjana Bajrami.;Stephan Pettitt.;Michele L Dziubinski.;Juliana Candido.;Frances Balkwill.;Simon T Barry.;Robert Grützmann.;Lola Rahib.; .; .;Amber Johns.;Marina Pajic.;Fieke E M Froeling.;Phillip Beer.;Elizabeth A Musgrove.;Gloria M Petersen.;Alan Ashworth.;Margaret C Frame.;Howard C Crawford.;Diane M Simeone.;Chris Lord.;Debabrata Mukhopadhyay.;Christian Pilarsky.;David A Tuveson.;Susanna L Cooke.;Nigel B Jamieson.;Jennifer P Morton.;Owen J Sansom.;Peter J Bailey.;Andrew V Biankin.;David K Chang.
来源: Gastroenterology. 2021年160卷1期362-377.e13页
Continuing recalcitrance to therapy cements pancreatic cancer (PC) as the most lethal malignancy, which is set to become the second leading cause of cancer death in our society. The study aim was to investigate the association between DNA damage response (DDR), replication stress, and novel therapeutic response in PC to develop a biomarker-driven therapeutic strategy targeting DDR and replication stress in PC.
7350. High-Fidelity Drug-Induced Liver Injury Screen Using Human Pluripotent Stem Cell-Derived Organoids.
作者: Tadahiro Shinozawa.;Masaki Kimura.;Yuqi Cai.;Norikazu Saiki.;Yosuke Yoneyama.;Rie Ouchi.;Hiroyuki Koike.;Mari Maezawa.;Ran-Ran Zhang.;Andrew Dunn.;Autumn Ferguson.;Shodai Togo.;Kyle Lewis.;Wendy L Thompson.;Akihiro Asai.;Takanori Takebe.
来源: Gastroenterology. 2021年160卷3期831-846.e10页
Preclinical identification of compounds at risk of causing drug induced liver injury (DILI) remains a significant challenge in drug development, highlighting a need for a predictive human system to study complicated DILI mechanism and susceptibility to individual drug. Here, we established a human liver organoid (HLO)-based screening model for analyzing DILI pathology at organoid resolution.
7353. Fibrates for Itch (FITCH) in Fibrosing Cholangiopathies: A Double-Blind, Randomized, Placebo-Controlled Trial.
作者: Elsemieke de Vries.;Ruth Bolier.;Jorn Goet.;Albert Parés.;Jef Verbeek.;Marleen de Vree.;Joost Drenth.;Karel van Erpecum.;Karin van Nieuwkerk.;Frans van der Heide.;Nahid Mostafavi.;Jeltje Helder.;Cyriel Ponsioen.;Ronald Oude Elferink.;Henk van Buuren.;Ulrich Beuers.; .
来源: Gastroenterology. 2021年160卷3期734-743.e6页
Pruritus may seriously impair quality of life in patients with cholestatic diseases such as primary or secondary sclerosing cholangitis (PSC, SSC) and primary biliary cholangitis (PBC). Pharmacologic strategies show limited efficacy and can provoke serious side effects. We hypothesized that bezafibrate, a broad peroxisome proliferator-activated receptor (PPAR) agonist, relieves cholestasis-associated itch by alleviating hepatobiliary injury. The aim of this investigator-initiated FITCH trial (Fibrates for cholestatic ITCH) was to assess effects of bezafibrate on pruritus in patients with PSC, PBC, and SSC.
7354. Underpowered PANTS: A Response to the Conclusions of "Extended Analysis Identifies Drug-Specific Association of Two Distinct HLA Class II Haplotypes for Development of Immunogenicity to Adalimumab and Infliximab".7356. Angiotensin-converting Enzyme 2-containing Small Extracellular Vesicles and Exomeres Bind the Severe Acute Respiratory Syndrome Coronavirus 2 Spike Protein.
作者: Qin Zhang.;Dennis K Jeppesen.;James N Higginbotham.;Jeffrey L Franklin.;James E Crowe.;Robert J Coffey.
来源: Gastroenterology. 2021年160卷3期958-961.e3页 7357. Quercetin Phytosome® as a potential candidate for managing COVID-19.
作者: Francesco DI Pierro.;Amjad Khan.;Alexander Bertuccioli.;Pamela Maffioli.;Giuseppe Derosa.;Saeed Khan.;Bilal A Khan.;Roohi Nigar.;Ikram Ujjan.;Bikha R Devrajani.
来源: Minerva Gastroenterol (Torino). 2021年67卷2期190-195页
When looking for new antiviral compounds aimed to counteract the COVID-19, a disease caused by the recently identified novel Coronavirus (SARS-CoV-2), the knowledge of the main viral proteins is fundamental. The major druggable targets of SARS-CoV-2 include 3-chymotrypsin-like protease (3CLpro), papain-like protease (PLpro), RNA-dependent RNA polymerase, and spike (S) protein. Molecular docking studies have highlighted that quercetin, a natural polyphenol belonging to the flavonol class, inhibits 3CLpro, PLpro and S proteins. Biophysical technics have then very recently confirmed that quercetin is reasonably a potent inhibitor of 3CLpro. The likely antiviral properties of quercetin are anyway challenged by its very poor oral bioavailability profile and any attempt to overcome this limit should be welcome. A phospholipid delivery form of quercetin (Quercetin Phytosome®) has been recently tested in humans to evaluate a possible improvement in oral bioavailability. After hydrolysis of the conjugated form (mainly glucuronide) of quercetin found in human plasma, the pharmacokinetics results have demonstrated an increased bioavailability rate by about 20-fold for total quercetin. It has been also observed that the presence of specific glucuronidase could yield free systemic quercetin in human body. Taking also into considerations its anti-inflammatory and thrombin-inhibitory actions, a bioavailable form of quercetin, like Quercetin Phytosome®, should be considered a possible candidate to clinically face COVID-19.
7360. Elucidation of Proteus mirabilis as a Key Bacterium in Crohn's Disease Inflammation.
作者: Jingwan Zhang.;Emily C Hoedt.;Qin Liu.;Erwin Berendsen.;Jing Jie Teh.;Amy Hamilton.;Amy Wilson O' Brien.;Jessica Y L Ching.;Hong Wei.;Keli Yang.;Zhilu Xu.;Sunny H Wong.;Joyce W Y Mak.;Joseph J Y Sung.;Mark Morrison.;Jun Yu.;Michael A Kamm.;Siew C Ng.
来源: Gastroenterology. 2021年160卷1期317-330.e11页
Proteus spp, Gram-negative facultative anaerobic bacilli, have recently been associated with Crohn's disease (CD) recurrence after intestinal resection. We investigated the genomic and functional role of Proteus as a gut pathogen in CD.
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