Literature DB >> 18307404

Cellular MRI and its role in stem cell therapy.

Ali S Arbab1, Joseph A Frank.   

Abstract

Hematopoietic, stromal and organ-specific stem cells are under evaluation for therapeutic efficacy in cell-based therapies of cardiac, neurological and other disorders. It is critically important to track the location of directly transplanted or infused cells that can serve as gene carrier/delivery vehicles for the treatment of disease processes and be able to noninvasively monitor the temporal and spatial homing of these cells to target tissues. Moreover, it is also necessary to determine their engraftment efficiency and functional capability following transplantation. There are various in vivo imaging modalities used to track the movement and incorporation of administered cells. Tagging stem cells with different contrast agents can make these cells probes for different imaging modalities. Recent reports have shown that stem cells labeled with iron oxides can be used as cellular MRI probes demonstrating the cell trafficking to target tissues. In this review, we will discuss the status and future prospect of stem cell tracking by cellular MRI for cell-based therapy.

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Year:  2008        PMID: 18307404     DOI: 10.2217/17460751.3.2.199

Source DB:  PubMed          Journal:  Regen Med        ISSN: 1746-0751            Impact factor:   3.806


  24 in total

1.  Label-free magnetic resonance imaging to locate live cells in three-dimensional porous scaffolds.

Authors:  A Abarrategi; M E Fernandez-Valle; T Desmet; D Castejón; A Civantos; C Moreno-Vicente; V Ramos; J V Sanz-Casado; F J Martínez-Vázquez; P Dubruel; P Miranda; J L López-Lacomba
Journal:  J R Soc Interface       Date:  2012-03-22       Impact factor: 4.118

2.  β‑Diketonate-Iron(III) Complex: A Versatile Fluorine-19 MRI Signal Enhancement Agent.

Authors:  Chao Wang; Stephen R Adams; Hongyan Xu; Wenlian Zhu; Eric T Ahrens
Journal:  ACS Appl Bio Mater       Date:  2019-08-13

Review 3.  MRI as a tool to monitor islet transplantation.

Authors:  Zdravka Medarova; Anna Moore
Journal:  Nat Rev Endocrinol       Date:  2009-06-23       Impact factor: 43.330

4.  Nanomagnetic activation as a way to control the efficacy of nucleic acid delivery.

Authors:  Bartosz F Grześkowiak; Yolanda Sánchez-Antequera; Edelburga Hammerschmid; Markus Döblinger; Dietmar Eberbeck; Anna Woźniak; Ryszard Słomski; Christian Plank; Olga Mykhaylyk
Journal:  Pharm Res       Date:  2014-07-18       Impact factor: 4.200

5.  Targeted imaging of breast tumor progression and therapeutic response in a human uMUC-1 expressing transgenic mouse model.

Authors:  Subrata K Ghosh; Masashi Uchida; Byunghee Yoo; Alana W Ross; Sandra J Gendler; Jianlin Gong; Anna Moore; Zdravka Medarova
Journal:  Int J Cancer       Date:  2012-10-25       Impact factor: 7.396

6.  Superparamagnetic iron oxide nanoparticle-labeled cells as an effective vehicle for tracking the GFP gene marker using magnetic resonance imaging.

Authors:  Z Zhang; N Mascheri; R Dharmakumar; Z Fan; T Paunesku; G Woloschak; D Li
Journal:  Cytotherapy       Date:  2009       Impact factor: 5.414

Review 7.  Detection and quantification of magnetically labeled cells by cellular MRI.

Authors:  Wei Liu; Joseph A Frank
Journal:  Eur J Radiol       Date:  2008-11-07       Impact factor: 3.528

8.  Cord blood endothelial progenitor cells as therapeutic and imaging probes.

Authors:  Branislava Janic; Ali S Arbab
Journal:  Imaging Med       Date:  2012-08-01

9.  In Vivo Cellular Imaging for Translational Medical Research.

Authors:  Ali S Arbab; Branislava Janic; Jodi Haller; Edyta Pawelczyk; Wei Liu; Joseph A Frank
Journal:  Curr Med Imaging Rev       Date:  2009-02-01

10.  Rapid spectrophotometric technique for quantifying iron in cells labeled with superparamagnetic iron oxide nanoparticles: potential translation to the clinic.

Authors:  Esmaeel R Dadashzadeh; Matthew Hobson; L Henry Bryant; Dana D Dean; Joseph A Frank
Journal:  Contrast Media Mol Imaging       Date:  2013 Jan-Feb       Impact factor: 3.161

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