| Literature DB >> 25143726 |
Larissa T Alvarim1, Leopoldo P Nucci2, Javier B Mamani3, Luciana C Marti3, Marina F Aguiar4, Helio R Silva1, Gisele S Silva3, Mariana P Nucci-da-Silva5, Elaine A DelBel6, Lionel F Gamarra7.
Abstract
The increase in clinical trials assessing the efficacy of cell therapy for structural and functional regeneration of the nervous system in diseases related to the aging brain is well known. However, the results are inconclusive as to the best cell type to be used or the best methodology for the homing of these stem cells. This systematic review analyzed published data on SPION (superparamagnetic iron oxide nanoparticle)-labeled stem cells as a therapy for brain diseases, such as ischemic stroke, Parkinson's disease, amyotrophic lateral sclerosis, and dementia. This review highlights the therapeutic role of stem cells in reversing the aging process and the pathophysiology of brain aging, as well as emphasizing nanotechnology as an important tool to monitor stem cell migration in affected regions of the brain.Entities:
Keywords: Parkinson’s disease; brain aging; dementia; iron oxide; sclerosis disease; stem cell; stroke
Mesh:
Substances:
Year: 2014 PMID: 25143726 PMCID: PMC4137998 DOI: 10.2147/IJN.S65616
Source DB: PubMed Journal: Int J Nanomedicine ISSN: 1176-9114
Figure 1Schematic representation of a SPION labeled stem cell.
Notes: (A) The main routes of SPION internalization, were: i) mediated by membrane receptors, ii) independent of clathrin and caveolin, iii) clathrin-mediated, iv) caveolin-mediated, and v) mediated by transfection poly-L-lysine agent. The labeled stem cell may be used in several situations or pathological conditions of the aging brain, such as: (B) Parkinson’s disease, (C) stroke, (D) sclerosis, and (E) Alzheimer’s disease. (F) Sagittal and (G) coronal MR image of the human brain; the gray circle corresponds with part C, the green circle with part B, the white circle with part D, and the purple circle with part E.
Abbreviations: SPION, superparamagnetic iron oxide nanoparticle; MR, magnetic resonance.
Figure 2Flowchart of the article screening process for inclusion in this review.
Abbreviation: SPION, superparamagnetic iron oxide nanoparticles.
Physico-chemical characteristics of SPION used in the treatment of brain aging diseases
| Neurological disorder | Ref | SPION
| Developer | |||
|---|---|---|---|---|---|---|
| Iron oxide | [Fe] mg/mL | Core/hydrodynamic size (nm) | Coating agent | |||
| Stroke | SPIO | N/A | N/A/N/A | N/A | N/A | |
| SPIO | N/A | N/A/N/A | N/A | N/A | ||
| Fe3O4 | ~87.5×10−3 | 12.2/152.8 | meso-2,3-Dimercaptosuccinic acid – poly-l-lysine | Synthesized | ||
| Fe3O4 | 50.0 | 8.6/182 | Starch | FluidMAG-D (Chemicell GmbH, Berlin, Germany) | ||
| Fe3O4 | 25.0 | 11.3/121 | Phosphatidylcholine | FluidMAG-lipid (Chemicell GmbH, Berlin, Germany) | ||
| Fe3O4 | 25.0 | 9.6/176 | DEAE-starch | FluidMAG-DEAE (Chemicell GmbH, Berlin, Germany) | ||
| Fe3O4 | 35.0 | 8.6/162 | Diphosphate | FluidMAG-P (Chemicell GmbH, Berlin, Germany) | ||
| Fe3O4 | 50.0 | 11.5/175 | Poly-diallyl-dimethylamine | FluidMAG-Q (Chemicell GmbH, Berlin, Germany) | ||
| FeO1.44 | 16.0 | 6.9/118 | Dextran | Endorem™(Guerbet, Roissy, France) | ||
| Fe3O4/γ-Fe2O3 | 56.0 | 9.1/62 | Dextran | Ferucarbotran (Meito Sangyo Co. LTD., Japan) | ||
| Fe3O4 | N/A | 10/50 | Dextran | CD34 Nanobeads, QBEND-10 antibody (mouse antihuman CD34) (MACS, MiltenyiBiotec, Bergisch, Gladbach, Germany) | ||
| Fe3O4 | 150×10−3 | 6/150 | PEG-PGA-coated nanovesicle | Synthesized SPION by modified polyol method; Preparation of PEI-SA vesicles; PEG-PGA coating of PEI-SA vesicles | ||
| Fe3O4 | 10.0 | N/A/900 | Carboxylated iron oxide core and carried Dragon Green Fluorophore | M-SPIO (IFPs, Bangs Laboratory, Fishers, IN, USA) | ||
| Fe3O4 | N/A | 76–80/120 | Silica-rhodamine | FMNC | ||
| FeO1.44 | 11.2 | 5–6/50–180 | Dextran T10 | Endorem™ (Guerbet, Roissy, France) | ||
| Fe3O4/γ-Fe2O3 | 27.9 | 4/55–65 | Carboxydextran | Resovist® (Bayer Schering Pharma AG, Berlin, Germany) | ||
| Fe3O4 | N/A | 6/65 | Chitosan | Synthesized by sonochemical method followed by chitosan coating process | ||
| Fe3O4/γ-Fe2O3 | 27.9 | 4/55–65 | Carboxydextran | Resovist® (Bayer Schering Pharma AG, Berlin, Germany) | ||
| FeO1.44 | 11.2 | 5–6/50–180 | Dextran T10 | Endorem™ (Guerbet, Roissy, France) | ||
| Fe3O4 | 20.0 | 5–6/20–40 | Dextran T10 | Sinerem® (Guerbet, Roissy, France) | ||
| FeO1.44 | 11.2 | 5–6/50–180 | Dextran T10 | Feridex® (Advanced Magnetic, Cambridge, MA USA) | ||
| Iron oxide | N/A | 5/87–766 | N/A | Synthesized MGIO (polymerization and coprecipitation) | ||
| Fe3O4/γ-Fe2O3 | 27.9 | 4.2/64 | Carboxydextran | Ferucarbotran – Resovist® (Bayer Schering Pharma AG, Berlin, Germany) | ||
| FeO1.44 | 11.2 | 5–6/50–180 | Dextran T10 | Feridex® (Advanced Magnetic, Cambridge, MA USA) | ||
| FeO1.44 | 11.2 | 5–6/50–180 | Dextran | Feridex® (Berlex Laboratories, Wayne, NJ, USA) | ||
| FeO1.44 | 11.2 | 5–6/50–180 | Dextran T10 | Feridex® (Advanced Magnetic, Cambridge, MA USA) | ||
| FeO1.44 | 11.2 | 5–6/50–180 | Dextran T10 | Feridex® (Berlex Laboratories, Wayne, NJ, USA) | ||
| FeO1.44 | 11.2 | 5–6/50–180 | Dextran T10 | Endorem™ (Guerbet, Roissy, France) | ||
| Fe3O4 | 20.0 | 5–6/20–40 | Dextran | Sinerem® (Guerbet, Roissy, France) | ||
| Parkinson’s | FeO1.44 | 11.2 | 5–6/50–180 | Dextran T10 | Feridex® (Advanced Magnetic, Cambridge, MA USA) | |
| Fe3O4/γ-Fe2O3 | 27.9 | 4/55–65 | Carboxydextran | Resovist® (Bayer Schering Pharma AG, Berlin, Germany) | ||
| FeO1.44 | 11.2 | 5–6/50–180 | Dextran T10 | Feridex® (Advanced Magnetic, Cambridge, MA USA) | ||
| USPIO | 2.5 | N/A/(15–20) | Dextran | Synthesized (IODEX-TAT-FITC) | ||
| Fe3O4 | 27.9 | 5/9 | Monomercitrate | VSOP (C200, Ferropharm, Teltow, Germany) | ||
| FeO1.44 | 11.2 | 5–6/50–180 | Dextran T10 | Feridex® (Advanced Magnetic, Cambridge, MA USA) | ||
| Iron oxide | 3.01 | N/A/79 | DPPA Na – F108 | Synthesized | ||
| Sclerosis | FeO1.44 | 11.2 | 5–6/50–180 | Dextran T10 | Endorem™ (Guerbet, Roissy, France) | |
| USPIO | 2.0 | 8/35 | N/A | Molday ION Rhodamine B (BioPAL Inc, Worcester, MA USA) | ||
| FeO1.44 | 11.2 | 5–6/50–180 | Dextran T10 | Endorem™ (Guerbet, Roissy, France) | ||
| FeO1.44 | 11.2 | 5–6/50–180 | Dextran T10 | Feridex® (Advanced Magnetic, Cambridge, MA USA) | ||
| Fe3O4 | 11.2 | N/A/80–150 | Dextran T10 | Feridex® (Advanced Magnetic, Cambridge, MA USA) | ||
| Fe3O4/γ-Fe2O3 | 27.9 | N/A/62 | Carboxydextran | Resovist® (Bayer Schering Pharma AG, Berlin, Germany) | ||
| Fe3O4 | 20.0 | 5–6/20–40 | Dextran | Sinerem® (Guerbet, Roissy, France) | ||
Notes:
Not specific of the iron oxide crystal phase
dipalmitoylphosphatidic acid sodium salt (DPPA Na) “ethylene oxide-propyleneoxide block copolymer” (F108) prepared by Bracco Research (Geneva, Switzerland)
Polystyrene magnetite nanocluster (PMNC)
FMNC, fluorescent-magnetite-nanocluster
Iron oxide nanoparticles coated with dextran (IODEX) conjugated with TAT-fluoresceinisothiocyanate (FITC) peptide.
Abbreviation: N/A, not identified; Ref, reference; SPIO, superparamagnetic iron oxide; SPION, superparamagnetic iron oxide nanoparticles; USPIO, ultra small iron oxide particles; DEAE, diethylamine ethyl; PEI-SA, stearic acid - grafted polyethyleneimine copolymer; PEG-PGA, poly (ethylene glycol)-poly (L-glutamic acid); MGIO, microgel iron oxide; VSOP, very small superparamagnetic iron oxide particles; M-SPIO, micrometer superparamagnetic iron oxide; IFPs, iron fluorescent particles.
Stem cell and labeling process of SPION in brain asine diseases
| Neurological disorder | Ref | Stem cells
| Cell labeling
| Cell viability
| |||||||
|---|---|---|---|---|---|---|---|---|---|---|---|
| Source | Type | Concentration | Culture assay | TRe | SPION type | [Fe] (μg/mL) | TG (hour) | Efficiency (%) | In vitro | ||
| Stroke | Rat | nSC | N/A | DMEM/F12 | N/A | N/A | N/A | N/A | N/A | N/A | |
| Rat (bone marrow) | MSC | 1×105 | N/A | N/A | N/A | N/A | N/A | N/A | Trypan blue | ||
| Dog (bone marrow) | MSC | 1×106 | DMEM | PLL | N/A | 5, 10, 20, 40,80 | 24 | N/A | Trypan blue; Annexin V | ||
| Human | hSC | N/A | N/A | N/A | FluidMag – D, FluidMag-lipid, FluidMag-DEAE, Fluid Mag – Q, Endorem™ | N/A | N/A | N/A | N/A | ||
| Rabbit | MSC | 104 | N/A | N/A | Nanobead FeO | 0–2,500 | 24 | 95 | MTT | ||
| Rat (bone marrow) | MSC | 5×105 | DMEM | N/A | N/A | 0, 1 mM | 1 | N/A | Trypan blue; MTT | ||
| Human (bone marrow) | MSC | N/A | α-MEM | N/A | M-SPION | 76.1 | 20 | N/A | Fn; Kar; DOAC | ||
| Mice (femur and tibia) | MSC | N/A | DMEM | N/A | FMNC | 0.01; 0.05; 0.1; 0.5 mM | 0.5; l;2;4 | N/A | CCK 8; DOAC | ||
| Rat (femur and tibia) | MSC | N/A | DMEM | N/A | Endorem™ | N/A | N/A | N/A | N/A | ||
| Rat | rMAPC | N/A | DMEM | PLL; 388 kDa | Resovit® | 50 | 18 ON | N/A | DOAC | ||
| Human (bone marrow) | MSC | N/A | DMEM | PLL; 388 kDa | Resovit® | 50 | 18 ON | N/A | VVST-8; DOAC | ||
| Mice | MSC | N/A | DMEM | PLL; 388 kDa | Resovit®; Endorem™; Sinerem® | 50, 348, 500 | 24 | N/A | TD7; DOAC; rtPCR; ACG | ||
| Human | nSC | 5×105 | DMEM | N/A | Feridex® | 112.4 | 62 | N/A | Trypan blue | ||
| Human | ESC | N/A | DMEM | PLL | Feridex® | N/A | N/A | N/A | N/A | ||
| Human | MSC | 5×105 | DMEM | N/A | MGIO | 25–200 | 24 | N/A | DOAC | ||
| Rat (bone marrow) | MSC | 1×106 | alpha-MEM/F12 | PLL | Feridex® | 25 | 24 | N/A | Trypan blue; MTT | ||
| Human | MSC | N/A | DMEM | Protamine sulfate | Feridex® | 2 | N/A | N/A | N/A | ||
| Mice | MSC | N/A | DMEM | PLL | Feridex® | 0, 1, 2.5, 25 | 24 | N/A | MTT | ||
| Rat | ESC MSC | N/A | DMEM | N/A | Endorem™ | 112.4, 2.2 | 72 | N/A | GFP | ||
| N/A | ESC | N/A | DMEM | FuGENE | Sinerem® | 400–2,800 | 24 | >70 | N/A | ||
| Parkinson’s | Rat | mNSCs/fDAn | 1×105/N/A | DMEM/F12i | N/A | N/A | N/A | N/A | N/A | N/A | |
| Rat (bone marrow) | MSC | N/A | DMEM | N/A | Resovist® | 5.6 | 48 | N/A | N/A | ||
| Human (iliac crest) | MSC | N/A | DMEM | PLL | Feridex® | 5 | N/A | N/A | N/A | ||
| Rat (femur/tibia) | MSC | 1×105 | DMEM | N/A | IODEX-TAT-FITC | 10 | 4–6 | N/A | N/A | ||
| Mice | ESC | N/A | DMEM | FuGENE | VSOP – C200 | 1.5–12 mM | 1.5; 4, 24 | N/A | Trypan blue | ||
| Rat | nSC | 1×105 | DMEM | Lipofectamine | Feridex® | 50 | 1–2 | N/A | N/A | ||
| Rat | ESC | 1–2×103 | DMEM | N/A | DPPA | N/A | N/A | N/A | N/A | ||
| Sclerosis | Human | hSC | 5.6×105 | DMEM | PLL | Endorem™ | 35 | 72 | 100 | MTT | |
| Human | ESC | N/A | DMEM | N/A | Molday ION | 10 | 24 | N/A | N/A | ||
| Human (skeletal muscle) | MSC | 5×105 | EGF; bFGF Noggin | PLL | Endorem™ | N/A | N/A | N/A | Caspase 3; TUNEL | ||
| Human (bone marrow) | MSC | MS: 2.5/25×106 | DMEM | PLL | Feridex® | N/A | 24–48 | N/A | N/A | ||
| Mice | nSC | N/A | DMEM | PLL | Endorem™; Resovist®; Sinerem® | 100 | 72 | 97.6, 100, 15.4 | Trypan blue | ||
Abbreviations: Ref, reference; hSC, hematological stem cells; MSC, mesenchymal stem cells; nSC, neurological stem cell; rMAPC, rat multipotent adult progenitor cells; ESC, embrionary stem cells; TRe, transfection reagent; PLL, poly-L-lysine; TG, time of grafting; eGFP/fLuc+, green fluorescence protein/firefly luciferase+; GFP, green fluorescent protein; Fn, phenotype; FMNC, fluorescent magnetite nano cluster; ON, overnight; TD7, time of population doubling mobile for 7 days; VSOP, very small superparamagnetic iron oxide particles; MGIO, microgel iron oxide; IODEX-TAT-FITC, iron oxide nanoparticles coated with dextran conjugated with fluorescein isothiocyanate peptide; DPPA, dipalmitoylphosphatidic acid sodium salt; ACG, cytogenetic analysis; Kar, karyotype; DOAC, osteogenic adipogenic and chondrogenic differentiation; mNSCs, Ventral mesencephalic neural stem cells; fDAn, fetal DA neurons; N/A, not identified; DA, dopamine; SPION, superparamagnetic iron oxide nanoparticles; DMEM, Dulbecco’s Modified Eagle Medium; MS, multiple sclerosis; ALS, amiotrophyc lateral sclerosis; MTT, 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide.
Experimental designs of stroke studies – in vivo
| Ref | Animal | Sex | Weight (g) | N/G | Animal model
| Stem cell
| Sacrifice
| |||||||||
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
| Occlusion
| Test
| Concentration | Im (mg/kg) | Tp (day) | Grafting site | Test
| Type | Day | ||||||||
| Type | OT (min) | Mth | Day | Mth | Day | |||||||||||
| Rat SD | N/A | 160–180 | N/A | MCDA | T 5 | NS/MRI | 0 | 3×104 | N/A | 2 | ISt (0.5/3/5) | MRI | 1, 7, 21 | 4% PFA | 21 | |
| Rat | N/A | N/A | N/A | MCDA | T 90 | MRI | 1 h | 107 | N/A | 90 min | IC | MRI | 1 h, 1, 3, 7 | 4% PFA | 7 | |
| Dog (Beagle) | M | 14 kg | 14/2 | MCDA | T 120 | NS AG | 2 h | 3×106 | N/A | 2 h | IC | MRI NS | 6 h, 17 | 4% PFA | 1, 28 | |
| Rabbit NZ | M | N/A | 16/N/A | OAF | T 5 | MRI | 1, 21 | 105 (300 μL) | N/A | 5 min | EV | MRI | 1, 21 | 4% PFA | 1, 21 | |
| Rat SD | N/A | N/A | N/A | MCDA | T 30 | N/A | N/A | 105 | N/A | 7 | ICe | MRI | 1, 21 | N/A | 21 | |
| Rat SD | M | 300 | 14/3 | MCDA | T 90 | NS | 0 | 4×105 (7 μL) | N/A | 1 | ISt (0/3/6) IC | NS | 2,7, 14, 21 | 4% PFA | 1, 15, 28 | |
| Mice | F | N/A | 21/3 | MCDA | T 60 | MRI | 0 | 105 (5 μL) | N/A | 7 | ISt (1/1/3) bilat | MRI | 1, 7, 30 | 4% PFA | 30 | |
| Rat SD | M | 250–300 | 60/6 | MCDA | P or T 30 | NS | 0, 1, 14 | 2×106 (650 μL) | N/A | 1 | IC EV | NS, MRI | 0, 1, 14 | 4% PFA | 14 | |
| Rat Fisher | M | N/A | N/A | FOT | N/A | N/A | N/A | 1–5×104 | N/A | 2 | ISt | MRI | 0.5, 10 | 4% PFA | 10, 21 | |
| Rabbit NZ | N/A | N/A | N/A | ICAO | P | MRI | 0 | 106 (1 μL) | N/A | 4 | ICe | MRI | 5, 12, 15, 21 | 4% PFA | 21 | |
| Rat Fisher | M | 250 | 14/2 | FOT | N/A | N/A | N/A | 106 | N/A | 1 | ISt | MRI | 4 h, 2, 7, 14 | 4% PFA | 2, 6, 14 | |
| Rat SD | M | 275–310 | 15/3 | MCDA | T 30 | N/A | N/A | 5×104 (1 μL) | CC (20) | 7 | ISt (0.5; −0.5/3/−5) | MRI | 2, 60 | 4% PFA | 60 | |
| Rat Wistar | F | 200–250 | 22/6 | FOT | N/A | N/A | N/A | 2×104 | CC (20) | 2 | IC EV | MRI | 5, 12 | 2% | 0 | |
| Rat SD | M | 250–300 | 12/4 | MCDA | T 120 | NS | 1 | 4×105 | N/A | 1 | ISt (0.7/3/6.4) | MRI | 1, 3, 7–28 | 4% PFA | 28 | |
| Rat SD | M | 200–250 | 16/N/A | MCDA | N/A | MRI | N/A | 105 (2 μL) | N/A | 7 | ISt (l/−2/−4; or 0.5/3/−4) | MRI | 2, 7–70 | N/A | 70 | |
| Rat Wistar | F | 250–300 | 25/N/A | MCDA | T 120 | LDF | 0.5 h | 106 | N/A | 30 min | IC EV | MRI | 0, 2 h, 1 | 4% PFA | 1 | |
| Mice | M | N/A | 12/N/A | MCDA | T 60 | MRI | 14 | 5×102 or | N/A | 1 | ISt/IHp | MRI | 1 | GF | 1 | |
| Rat Wistar | M | N/A | 69/7 | FOT | N/A | N/A | N/A | 2×105 | CC | 7 | IC (−1/2.5/3.5) | MRI | 14–49 | 4% PFA | 14–49 | |
| Rat Wistar | M | 260–300 | 14/2 | MCDA | T 60 | MRI | 0–14 | 2×3×1a | N/A | 14 | CCa/ISt (0.5/3/5) | MRI | 0, 7, 14, 21 | 4% PFA | 21 | |
Note: The orientation of the grafting site was (AP/ML/DL).
Abbreviations: Ref, reference; SD, Sprague-Dawley; NZ, New Zealand; F, female; M, male; N/G, number of animals/group; OAF, femoral artery occlusion; MCDA, occlusion of the middle cerebral artery; CCO, occlusion of the common carotid artery; ICAO, occlusion of the internal carotid artery; FOT1, photothrombosis model (rose Bengal 20 mg/kg, 20 min, 540 nm light); FOT2, photothrombosis model (rose Bengal 10 mg/kg, 10 min, light 327–650 nm); OT, occlusion time; T, temporary; P, permanent; Mth, methods; MRI, magnetic resonance imaging; NS, neurological scale; Im, immunosuppression; CC, cyclosporine; Tp, time; min, minute; h, hour; ICe, intrahemisferic left; IHP, intrahippocampal; IC, intracortical; TTC, trifeniltetrazolium; PFA, paraformaldehyde; LDF, local default field test; EV, endovenous; ISt, intrastriatal; CCa, common carotid implantation; IHp, intrahippocampus; GF, 10% paraformaldehyde buffered with 5% gadoteridol; PPA, particles polyvinyl alcohol (150–250 μm); AG, angiography analyzed; N/A, not identified; AP, anteroposterior; ML, mediolateral; DV, dorsoventral.
Experimental designs of Parkinson’s disease studies – in vivo
| Ref | Animal | Sex | Weight (g) | N/G | Animal model | Stem cells | Sacrifice | |||||||||
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
|
| ||||||||||||||||
| Agent | Lesion site | Behavioral analysis
| Concentration | Im | Time (Week) | Grafting site | Behavioral analysis
| Type | Week | |||||||
| Drug | Week | Drug | Week | |||||||||||||
| Rat/SD | M | 250 | 36/6 | 6-OHDA | MFB/VTA | PA | 1 | 2, 5×105 (10 μL) | N/A | N/A | ISt | AP | 2, 4, 6, 8 | 4% PFA | 8 | |
| Rat/SD | M | 220–280 | 40/5 | 6-OHDA | MFB | PA | 2 | 0,5–2, 5×105 (4 μL) | N/A | 2 | ISt | AP | 0, 1, 4, 8 | 4% PFA | 12 | |
| Rat/SD | M | 260–300 | 63 | 6-OHDA+De | ISt | N/A | 1 | 1, 5–4, 5×105 (3 μL) | CC (15) | 1 | ISt | AF | 2, 4, 6 | 4% PFA | 1, 5, 7.1 | |
| Rat/SD | M | 250–300 | 12/2 | 6-OHDA+De | ISt | MA | 1 | 5×104 (5 μL) | CC (2.5) | 2 | ISt | MA | 2 | 4% PFA | 6 | |
| Rat/Wistar | M | 190–210 | 13/2 | 6-OHDA | MFB | AF | 4 | 1×105 (3 μL) | N/A | 3 | ISt | AF | 5, 7, 9 | 4% PFA | 2, 3.4, 10 | |
| Rat/SD | M | 250–300 | 18/3 | 6-OHDA | MFB | PA | 2, 4, 6 | 1×107 (3 μL) | CC (15) | 6 | ISt | AF | 1, 2, 4, 6, 8, 10 | 4% PFA | 10 | |
| Rat/SD | M | 200–250 | 28/2 | 6-OHDA+De | MFB | AF | 5, 7 | 1–2×103 (4 μL) | CC (15) | 3 | ISt | AF | 4 | 4% PFA | 12 | |
Abbreviations: Ref, reference; SD, Sprague-Dawley; M, male; N/G, number of animals/groups; 6-OHDA, 6-hydroxydopamine; +De, Desipramine 25 mg/kg intraperitoneal; MFB, medial forebrain bundle; ISt, intrastriatal; AF, amphetamine; AP, apomorphine; MA, methamphetamine; Im, immunosuppression (mg/kg); CC, cyclosporine A; PFA, paraformaldehyde; VTA, ventral tegmental area; N/A, not identified.
Figure 3Schematic timeline representation of experimental and sample paradigm.
Notes: (A) Stroke by photothrombosis; (B) stroke by occlusion; (C) Parkinson’s disease; and (D) sclerosis.
Abbreviations: Pk, Parkinson’s disease; MRI, magnetic resonance imaging; Scl, sclerosis.
Experimental designs of multiple sclerosis or amyothophic lateral sclerosis – in vivo
| Ref | Model | Sex | Age (w) | N/G | Stem cells | Sacrifice | ||||||
|---|---|---|---|---|---|---|---|---|---|---|---|---|
|
| ||||||||||||
| Concentration | Im (mg/kg) | Time (day) | Infusion site (AP/ML/DV) | Behavioral test
| Type | Week | ||||||
| Method | Week | |||||||||||
| Mice Wr | M | 4 | 48/13 | 105 | CC (15) | 0 | ICV | MRI | 1, 7.1 | 4% PFA | 1, 7.1 | |
| Mice Wr (C57BL/6) | F | 9–10 | 23/2 | 106 | N/A | 7 | ICV (0/1, 0/2, 5) | MRI | 1, 2, 3, 4 | 4% PFA | 2, 3, 4 | |
| Mice Wr | M/F | 4 | 45/3 | 5×105 (5 μL) | N/A | 14 | ICV (0, 5/0, 8/2, 5) | MRI | 7 | 4% PFA | 7 | |
| Mice Wr (C57BL/6) | F | 6–8 | 47/3 | 106 | N/A | 17 | ICV | MRI | −1, 24–48 h, 16–18 d | 4% PFA | 48 h, 18 d | |
Abbreviations: Ref, reference; Wr, Woldder; F, female; M, male; w, week; N/G, number of animals/groups; Im, immunosuppression; CC, cyclosporine A; ICV, intracerebroventricular; MRI, magnetic resonance imaging; PFA, paraformaldehyde; AP, anteroposterior; ML, mediolateral; DV, dorsoventral; N/A, not identified; h, hours; d, days.
Detection methods of SPION and therapeutic response
| Neurological disorder | Ref | Magnetic resonance imaging
| Histological image
| Other methods
| ||||||||
|---|---|---|---|---|---|---|---|---|---|---|---|---|
| MF (T) | Sequence | Weighted images (TR/TE; ms) | FOV; MT; ST | Time | Assay | Time | Result | Technique | Time | Result | ||
| Stroke | 3.0 | N/A | T2*: 2,560/6.8 | N/A; N/A; 1.6 mm | 1, 7, 21 d | ImH (Sox2; BrdU) | 21 d | +Sox2/BrdU | N/A | N/A | N/A | |
| N/A | 3D GRE 3D spin echo | T2*: 100/10 T2: 2,000/60 | 256×128; 50×50; 1 mm | 1 h, 1, 3, 7 d | HE; BB | 21 d | +BB | N/A | N/A | N/A | ||
| 3.0 | T2 WI DWI | T2*: 5,000/60 | 200 mm; 320×320; 2 mm | 1 h, 1, 7, 14, 21, 28 d | AP; HE | 1, 28 d | +AP | N/A | N/A | N/A | ||
| 9.4 | 3D GRE 3D spin echo | T2: 2,000/105 T2*: 6,000/70 | 70×70; 512×512; 1 mm | 10 h, 21 d | HE; ImH (CD31) | 1, 21 d | +CD31 | N/A | N/A | N/A | ||
| 3.0 | 3D spin echo | T2: 16.11/3 | N/A | 10 d | N/A | N/A | N/A | N/A | N/A | N/A | ||
| 3.0 | spin echo | T2: 5,840/104 | 45×45; 256×256; 1.5 mm | 1, 3, 7, 30 d | AP; ImH (β tubulin III) | 30 d | +AP, β tubulin III | N/A | N/A | N/A | ||
| 7.0 | 3D RARE 8 | T2: N/A | N/A | 1, 14 d | AP; ImH (GFAP; VEGF; CD90, CD11C, neurofilament) | 14 d | =AP; +GFAP; VEGF; CD90 | MiCo | 14 d | N/A | ||
| 9.4 | 2D MSMD 3D FLASH | T2: 6,000/10 T2: 100/12 | 40×40; 256×256; 2 mm | 12 h, 10 d | AP; HE; ImH (GFP) | 10, 21 d | +AP; GFP | CF; CG: ME | 10, 21 d | +Ir/SC | ||
| 2.35 | Spin echo | T2: 400/25 | 234×234; 0; 469 mm | 0, 1, 15, 28 d | ImH MAB1281; | 1, 15, 28 d | +MAB1 281 | N/A | N/A | N/A | ||
| 3.0 | Turbo spin echo | T2: 2,548/80 | 80×80; 224×205; 1.5 mm | 1, 8, 11, 17 d | AP | 21 d | +AP | CF; ICP-AES | 21 d | N/A | ||
| 9.4 | 3D FLASH 2D multi-echo | T2: 2,250/10; T1: N/A | 4.0×4.0; 256×256; 0.4 mm | 4 h, 2, 4, 7 and 14 d | AP; ImH GFP; ferritin | 2, 6, 14 d | +AP; GFAP | N/A | N/A | N/A | ||
| 7.0 | 3D spin echo | T2: 82.5/4,000 | 5×5 cm; 256×256; 0.6 mm | 2, 60 d | AP; ImH (CD133; vimentin; GFAP; NeuN; synaptophysin) St | 60 d | +AP; GFAP; NeuN; CD133 | EFG; CF; FC; Biol | 2–60 d | N/A | ||
| 1.5 | Turbo spin echo GRE | T2: 2,000/81 | 5 cm; 512×512; 1.5 mm | 1, 5, 12 d | AP; HE; ImH (ED1; vimentin) | 1, 5, 12 d | +AP; =ED1; +vit (5 d) | Microarray | 0 | +28 genes | ||
| 1.5 | Turbo spin echo | T2: 5,000/90 | 120×120; 256×128; 2 mm | −1, 1, 3, 7, 14, 21 d | AP; NiS; ImH (BrdU, NeuN, GFAP, MHC-III) | 1 ISt 28 IV | N/A | N/A | N/A | N/A | ||
| 4.7 | Spin echo; RARE; FLASH; 3D (T2*) | T1: 600/14 | 4×3 cm; 256×196; 1 mm | 2, 7–70 d | AP; ImH (nestin; β tubulin; MAP2; TH; GFAP) | N/A | N/A | N/A | N/A | N/A | ||
| 4.7 or 9.4 | 3D spin echo | T2: 1,300/98 | 34×22×11; 128×64×32; N/A | 1 h, 2 h, 1 d | AP; HE | N/A | +AP | N/A | N/A | N/A | ||
| 7.0 or 9.4 | Spin-echo multislice | T2: N/A | 3.5 cm; 128×128; 1 mm | 24 h, 14 d | AP; NiS; ImH (GFP) | 14 d | +AP; GFP | N/A | N/A | N/A | ||
| 4.7 | Turbo spin echo | T2: 2,000/42.5 | 3.5 cm; 256×256; 0.5 mm | 14–49 d | AP ImH (CD90, fibronectin, CD45, CD11b) | 14, 49 d | +AP; CD90, CD45 | ME | 14 d | +Ir/SC | ||
| 7.0 | 2D multislice | T2: 200/20 | 20×12×10; 256×256×128; 0.5–0.7 mm | 6, 8, 11, 16 d | ImH (GFP) | 6, 8, 11 d | +GFP | N/A | N/A | N/A | ||
| Parkinson’s | 1.5 | FFE | T2: 388/23 | 205×256; 120; 2 mm | 1, 2, 4, 8 w | ImH (TH; nestin; B-III-tubulin; GFP); AP (10 μm) | 8 w | +GFP/T H STr rig | PCR (GDNF; TH) | 8 w | +GDN F/TH | |
| 1.5 | FFE | T2: 274/12 | 60×60; 256×256; 1.2 mm | 1, 4, 8 and 12 w | BrdU; AP (5 μm) | 12 w | +BrdU STr rig | rtPCR (GFAP; nestin; NSE; TH) | 12 w | § | ||
| 7.0 | RARE; 3D | T2: 3,500/75 | 256×256; 256×256; 0.7 mm | 1, 5 and 7.1 w | ImH (TH); AP (40 μm) St | 7.1 w | +TH + STr rig | HPLC (C18) brain | 1 w | >2.5× | ||
| 9.4 | FLASH | T2: 500/40 | 40×40; 256×128; 0.5 mm | 3, 6 w | ImH (GFAP; TH); AP (10 μm) | 6 w | =TH + STr | PET (11C-raclopride; 560 MBq) | 2, 4 w | ** | ||
| 7.0 | 2D GRE | T2: 400.4/5.4 | N/A | 2 d, 4, 8, 16 and 24 w | ImH (SSEA-1; TH; DAT; 5-HT; GFP); AP (20 μm) St | 8, 16, 24 w | +10% GFP + with AP | N/A | N/A | N/A | ||
| 1.5 | Spin-echo fast spin-eco GRE | T1: 340/11 T2: 3,000/102 | 6×6 cm; 256×256; 2 mm | 1, 2, 4, 6, 8 and 10 w | AP; ImH (nestin; GFAP; β-tubulin; IgG-FITC; 40 μm) | 10 w | +GFP with AP | N/A | N/A | N/A | ||
| 4.7 | FLASH | T2: 3,500/40 | 256×256; 0.5 mm | 4 w | ImH (TH; 30 μm) | 14–16 w | +11% TH + STr right | PET (11C-CFT; 10 mCi) | 4 w | +DAT | ||
| Sclerosis | 3.0 | Spin echo | T2: 4,000/36 | 2×2; 256×256; 1 mm | 1, 7, 28 d | ImH (curboxy dextran; HLA-I) | 28 d | +carboxy dextran; HLA-I | N/A | N/A | N/A | |
| 9.4 | 2D FLASH | T2: 316.5/3.49 | 1.6×1.6; 256×256; 0.4 mm | 1, 10, 20, 30 d | AP; ImH (HuNA; B-III-tubulin; GFAP; OCT-4; MBP) | 5, 15, 25, 45 d | +HuNA/B-III-tubulin/MBP | N/A | N/A | N/A | ||
| 7.0 | RARE8 | T2: 3,300/54 | 2.2×2.2; 256×256; 1 mm | 1, 18 w | ImH (GFAP), CD11b) | 9, 18 w | GFAP, CD11b | ChAT; Bioplex; rtPCR | 7, 9, 18 w | N/A | ||
| 3.0 | R2 EPI | T2: 2,500/400 T2: 200/3, 3 | N/A | N/A | AP | N/A | +AP | ME | N/A | N/A | ||
Abbreviations: SPION, superparamagnetic iron oxide nanoparticle; FLASH, fast low-angle shot; h, hours; ST, slice thickness; TR, repetition time; TE, echo time; Ref, reference; d, day; MF, magnetic field; GRE, gradient echo; RARE, rapid acquisition with relaxation enhancement; MSMD, multislice – multiecho; FFE, fast field echo; R2, reciprocal rate; EPI, echo planar; CISS, constructive interference in steady state; FOV, field of view; MT, matrix thickness; AP, Prussian Blue assay; St, count esteriological; Str, striatal region; TH, tyrosine hydroxylase; NiS, Nissl staining or methylene blue; ImH, immunohistochemical reaction; GFAP, glial fibrillary acidic protein; w, week; rtPCR, real-time polymerase chain reaction; DA, dopamine; HVA, homovanillic acid; MCA, marker for monocytes/macrophages and phagocytic microglia; ChAT, motor neuron and neuromuscular junction counting; ED1, anti macrophages/monocytes antibody; HE, hematoxylin eosin; +, increased; −, decreased; =, unchanged; ME, electron microscopy; FC, flow cytometry; EFG, electrophysiology; CG, cytogenetics; Biol, bioluminescence; MiCo, confocal microscopy; CF, fluorescence-activated cell sorting; ICP-AES, flow cytometer; ISt, intrastriatal; STr rig, right striatal nuclei; NSE, neuron specific enolase; Ir, iron; SC, stem cell; BB, Berlin Blue assay; MBP, myelin basic protein antibody; HuNA, immunostaining against human nuclear antigen antibody; N/A, not identified; vit, vimentin; +, increased; DAT, dopamine transported; GFP, green fluorescent protein.