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AuthorMelzer, Michael Karldc.contributor.author
AuthorBreuning, Markusdc.contributor.author
AuthorArnold, Frankdc.contributor.author
AuthorWezel, Felixdc.contributor.author
AuthorAzoitei, Ancadc.contributor.author
AuthorRoger, Elodiedc.contributor.author
AuthorKrüger, Janadc.contributor.author
AuthorMerkle, Jessicadc.contributor.author
AuthorSchütte, Lenadc.contributor.author
AuthorResheq, Yaziddc.contributor.author
AuthorHänle, Markdc.contributor.author
AuthorZehe, Viktordc.contributor.author
AuthorZengerling, Friedemanndc.contributor.author
AuthorAzoitei, Nineldc.contributor.author
AuthorKlein, Lucasdc.contributor.author
AuthorPenz, Frederikedc.contributor.author
AuthorSingh, Shiv K.dc.contributor.author
AuthorSeufferlein, Thomasdc.contributor.author
AuthorHohwieler, Meikedc.contributor.author
AuthorBolenz, Christiandc.contributor.author
AuthorGünes, Cagataydc.contributor.author
AuthorGout, Johanndc.contributor.author
AuthorKleger, Alexanderdc.contributor.author
Date of accession2023-06-05T12:01:06Zdc.date.accessioned
Available in OPARU since2023-06-05T12:01:06Zdc.date.available
Date of first publication2022-02-18dc.date.issued
AbstractDespite intensive research and progress in personalized medicine, pancreatic ductal adenocarcinoma remains one of the deadliest cancer entities. Pancreatic duct-like organoids (PDLOs) derived from human pluripotent stem cells (PSCs) or pancreatic cancer patient-derived organoids (PDOs) provide unique tools to study early and late stage dysplasia and to foster personalized medicine. However, such advanced systems are neither rapidly nor easily accessible and require an in vivo niche to study tumor formation and interaction with the stroma. Here, the establishment of the porcine urinary bladder (PUB) is revealed as an advanced organ culture model for shaping an ex vivo pancreatic niche. This model allows pancreatic progenitor cells to enter the ductal and endocrine lineages, while PDLOs further mature into duct-like tissue. Accordingly, the PUB offers an ex vivo platform for earliest pancreatic dysplasia and cancer if PDLOs feature KRASG12D mutations. Finally, it is demonstrated that PDOs-on-PUB i) resemble primary pancreatic cancer, ii) preserve cancer subtypes, iii) enable the study of niche epithelial crosstalk by spiking in pancreatic stellate and immune cells into the grafts, and finally iv) allow drug testing. In summary, the PUB advances the existing pancreatic cancer models by adding feasibility, complexity, and customization at low cost and high flexibility.dc.description.abstract
Languageendc.language.iso
PublisherUniversität Ulmdc.publisher
LicenseCC BY-NC 4.0 Internationaldc.rights
Link to license texthttps://creativecommons.org/licenses/by-nc/4.0/dc.rights.uri
Keywordorgan culture modelsdc.subject
Keywordpancreatic cancerdc.subject
Keywordstem cell differentiationdc.subject
Dewey Decimal GroupDDC 610 / Medicine & healthdc.subject.ddc
LCSHPancreas; Cancerdc.subject.lcsh
MeSHPancreatic neoplasmsdc.subject.mesh
MeSHUrinary bladderdc.subject.mesh
MeSHPluripotent stem cellsdc.subject.mesh
MeSHCell differentiationdc.subject.mesh
MeSHOrgan culture techniquesdc.subject.mesh
MeSHOrganoidsdc.subject.mesh
TitleOrganoids at the PUB : the porcine urinary bladder serves as a pancreatic niche for advanced cancer modelingdc.title
Resource typeWissenschaftlicher Artikeldc.type
VersionpublishedVersiondc.description.version
DOIhttp://dx.doi.org/10.18725/OPARU-48924dc.identifier.doi
URNhttp://nbn-resolving.de/urn:nbn:de:bsz:289-oparu-49000-3dc.identifier.urn
GNDBauchspeicheldrüsenkrebsdc.subject.gnd
GNDInduzierte pluripotente Stammzelledc.subject.gnd
GNDZelldifferenzierungdc.subject.gnd
GNDOrgankulturdc.subject.gnd
GNDOrganoiddc.subject.gnd
InstitutionUKU. Klinik für Urologie und Kinderurologieuulm.affiliationSpecific
InstitutionUKU. Klinik für Innere Medizin Iuulm.affiliationSpecific
Peer reviewjauulm.peerReview
DCMI TypeTextuulm.typeDCMI
CategoryPublikationenuulm.category
DOI of original publication10.1002/adhm.202102345dc.relation1.doi
Source - Title of sourceAdvanced Healthcare Materialssource.title
Source - Place of publicationWileysource.publisher
Source - Volume11source.volume
Source - Issue11source.issue
Source - Year2022source.year
Source - Article number2102345source.articleNumber
Source - ISSN2192-2640source.identifier.issn
Source - eISSN2192-2659source.identifier.eissn
Bibliographyuulmuulm.bibliographie
Is Supplemented Byhttps://onlinelibrary.wiley.com/action/downloadSupplement?doi=10.1002%2Fadhm.202102345&file=adhm202102345-sup-0001-SuppMat.pdfdc.relation.isSupplementedBy
Is Supplemented Byhttps://onlinelibrary.wiley.com/action/downloadSupplement?doi=10.1002%2Fadhm.202102345&file=adhm202102345-sup-0002-TableS1.xlsxdc.relation.isSupplementedBy
DFG project uulmDifferenzierung von Pankreasgängen und -azini aus humanen pluripotenten Stammzellen zur Untersuchung des Pankreaskarzinoms / DFG / 426789343 [KL 2544/1-1]uulm.projectDFG
DFG project uulmGRK 2254 / HEIST / Heterogenität und Evolution in soliden Tumoren (HEIST) / DFG / 288342734 [KL 2544/1-2]uulm.projectDFG
DFG project uulmMonogenetische Formen des juvenil sich manifestierenden Diabetes: neue Schritte in Richtung β-Zellentwicklung, -funktion und -überleben / DFG / 406674944 [KL 2544/5-1]uulm.projectDFG
DFG project uulmZelluläre Plastizität im Pankreas - vom Krankheitsmodell über Gewebserneuerung zur personalisierten Medizin / DFG / 426789149 [KL 2544/6-1 ; KL 2544/7-1]uulm.projectDFG
DFG project uulmSelektive Deletion der Ataxia-telangiektasia mutiert Kinase (Atm) zur Analyse von Tumorheterogenität im Pankreaskarzinom / DFG / 452061284 [PE 3337/1-1]uulm.projectDFG
Project uulmBlockade der DNA-Reparatur treibt Krebszelle in den Tod - Präklinische Studie: Kombinationstherapie hemmt ATM-mutierten Pankreas-Tumor / Deutsche Krebshilfe / 70111879uulm.projectOther


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