cellular labeling
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Author(s):  
Vaidas Klimkevičius ◽  
Evelina Voronovic ◽  
Greta Jarockyte ◽  
Artiom Skripka ◽  
Fiorenzo Vetrone ◽  
...  

Upconverting nanoparticles (UCNPs) possess great potential for biomedical applications. UCNPs absorb and convert near-infrared (NIR) radiation in the biological imaging window to that of visible (Vis) and even ultraviolet (UV)....


Biomedicines ◽  
2021 ◽  
Vol 9 (10) ◽  
pp. 1459
Author(s):  
Christu Rajan ◽  
Jaya Seema ◽  
Yu-Wen Chen ◽  
Tsai-Chen Chen ◽  
Ming-Huang Lin ◽  
...  

We developed a new probe, Gd-DO3A-Am-PBA, for imaging tumors. Our results showed active targeting of Gd-DO3A-Am-PBA to sialic acid (SA) moieties, with increased cellular labeling in vitro and enhanced tumor accumulation and retention in vivo, compared to the commercial Gadovist. The effectiveness of our newly synthesized probe lies in its adequate retention phase, which is expected to provide a suitable time window for tumor diagnosis and a faster renal clearance, which will reduce toxicity risks when translated to clinics. Hence, this study can be extended to other tumor types that express SA on their surface. Targeting and MR imaging of any type of tumors can also be achieved by conjugating the newly synthesized contrast agent with specific antibodies. This study thus opens new avenues for drug delivery and tumor diagnosis via imaging.


Author(s):  
Andy Wiranata Wijaya ◽  
Andreas Ulmer ◽  
Lara Hundsdorfer ◽  
Natascha Verhagen ◽  
Attila Teleki ◽  
...  

Abstract13C labeling data are used to calculate quantitative intracellular flux patterns reflecting in vivo conditions. Given that approaches for compartment-specific metabolomics exist, the benefits they offer compared to conventional non-compartmented 13C flux studies remain to be determined. Using compartment-specific labeling information of IgG1-producing Chinese hamster ovary cells, this study investigated differences of flux patterns exploiting and ignoring metabolic labeling data of cytosol and mitochondria. Although cellular analysis provided good estimates for the majority of intracellular fluxes, half of the mitochondrial transporters, and NADH and ATP balances, severe differences were found for some reactions. Accurate flux estimations of almost all iso-enzymes heavily depended on the sub-cellular labeling information. Furthermore, key discrepancies were found for the mitochondrial carriers vAGC1 (Aspartate/Glutamate antiporter), vDIC (Malate/H+ symporter), and vOGC (α-ketoglutarate/malate antiporter). Special emphasis is given to the flux of cytosolic malic enzyme (vME): it could not be estimated without the compartment-specific malate labeling information. Interesting enough, cytosolic malic enzyme is an important metabolic engineering target for improving cell-specific IgG1 productivity. Hence, compartment-specific 13C labeling analysis serves as prerequisite for related metabolic engineering studies.


Author(s):  
Sebastian Raja ◽  
Eva Miriam Buhl ◽  
Stephan Dreschers ◽  
Carmen Schalla ◽  
Martin Zenke ◽  
...  

Membranes ◽  
2021 ◽  
Vol 11 (7) ◽  
pp. 484
Author(s):  
Yue Gao ◽  
Anna Jablonska ◽  
Chengyan Chu ◽  
Piotr Walczak ◽  
Miroslaw Janowski

Rapidly ageing populations are beset by tissue wear and damage. Stem cell-based regenerative medicine is considered a solution. Years of research point to two important aspects: (1) the use of cellular imaging to achieve sufficient precision of therapeutic intervention, and the fact that (2) many therapeutic actions are executed through extracellular vesicles (EV), released by stem cells. Therefore, there is an urgent need to interrogate cellular labels in the context of EV release. We studied clinically applicable cellular labels: superparamagnetic iron oxide nanoparticles (SPION), and radionuclide detectable by two main imaging modalities: MRI and PET. We have demonstrated effective stem cell labeling using both labels. Then, we obtained EVs from cell cultures and tested for the presence of cellular labels. We did not find either magnetic or radioactive labels in EVs. Therefore, we report that stem cells do not lose labels in released EVs, which indicates the reliability of stem cell magnetic and radioactive labeling, and that there is no interference of labels with EV content. In conclusion, we observed that direct cellular labeling seems to be an attractive approach to monitoring stem cell delivery, and that, importantly, labels neither locate in EVs nor affect their basic properties.


2021 ◽  
Author(s):  
Rainer Mueller ◽  
Ana Kojic ◽  
Mevlut Citir ◽  
Carsten Schultz
Keyword(s):  

2020 ◽  
Author(s):  
Sebastian Raja ◽  
Ahmed E. I. Hamouda ◽  
Marcelo A. S. de Toledo ◽  
Chaolei Hu ◽  
Marcela P. Bernardo ◽  
...  

Author(s):  
Ryoko Ando ◽  
Asako Sakaue-Sawano ◽  
Keiko Shoda ◽  
Atsushi Miyawaki

We cloned and characterized two new coral fluorescent proteins: h2-3 and 1-41. h2-3 formed an obligate dimeric complex and exhibited bright fluorescence. On the other hand, 1-41 formed a highly multimeric complex and exhibited dim red fluorescence. We engineered 1-41 into AzaleaB5, a practically useful red-emitting fluorescent protein for cellular labeling applications. We fused h2-3 and AzaleaB5 to the ubiquitination domains of human Geminin and Cdt1, respectively, to generate a new color variant of Fucci (Fluorescent Ubiquitination-based Cell-Cycle Indicator): Fucci5. We found Fucci5 provided brighter nuclear labeling for monitoring cell cycle progression than the 1st and 2nd generations that used mAG/mKO2 and mVenus/mCherry, respectively.


2019 ◽  
Vol 26 (2) ◽  
pp. 384-389 ◽  
Author(s):  
Rainer Müller ◽  
Mevlut Citir ◽  
Sebastian Hauke ◽  
Carsten Schultz
Keyword(s):  

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