研究目的
To examine the effect of intravitreal human bone marrow CD34t stem cells on the degenerating retina using a murine model of retinal degeneration.
研究成果
Intravitreal human BM CD34t cells home to the retinal surface and induce molecular changes in the degenerating retina, suggesting potential trophic regenerative effects, but no functional improvement was observed in this model. Further investigation is warranted.
研究不足
Systemic immunosuppression may influence cell behavior and retinal response; EGFP labeling was not complete; treatment was initiated at an advanced stage of retinal degeneration, potentially attenuating therapeutic effects; the rd1 model is rapidly progressive, which may not be ideal for detecting functional benefits.
1:Experimental Design and Method Selection:
The study used a murine model (C3H/HeJrd1/rd1 mice) with systemic immunosuppression to investigate the effects of intravitreal injection of human BM CD34t cells. Methods included in vivo imaging (SLO/OCT), ERG testing, immunohistochemistry, and microarray analysis.
2:Sample Selection and Data Sources:
Thirty-two mice were used, with human BM aspirate from a healthy donor. Mice were immunosuppressed and injected with either CD34t cells or PBS.
3:List of Experimental Equipment and Materials:
Equipment included Alzet micro-osmotic pumps, magnetic cell sorter (Miltenyi), SLO/OCT imaging system, ERG system (LKC Big Shot), microscopes (Nikon), and microarray tools (Affymetrix). Materials included immunosuppressants (tacrolimus, rapamycin), EGFP labeling reagents, antibodies, and RNA isolation kits.
4:Experimental Procedures and Operational Workflow:
Mice were immunosuppressed, injected intravitreally, imaged or tested at 1 and 4 weeks, euthanized, and eyes harvested for analysis.
5:Data Analysis Methods:
Microarray data analyzed using Affymetrix software and IPA; statistical analysis with ANOVA; immunohistochemistry and imaging data analyzed qualitatively.
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Photomultiplier tube
H7422-40
Hamamatsu Photonics, K.K.
Used to detect EGFP emitted fluorescence light in the SLO imaging system.
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Photomultiplier tube
H7422-20
Hamamatsu Photonics, K.K.
Used to acquire reflected light signal in the SLO imaging system.
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CMOS camera
Sprint spL4096-140km
Basler Electronics
Used as the OCT detector in the spectrometer for retinal imaging.
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Leica microtome
RM2125RT
Leica
Used to cut sections of retinal tissue for immunohistochemistry.
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Agilent BioAnalyzer
RNA Nano 6000
Agilent Technologies
Used to assess the quality and quantity of RNA samples.
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Alzet micro-osmotic pump
1004
Durect Corporation
Used for systemic immunosuppression by releasing tacrolimus and rapamycin at a constant rate.
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Miltenyi human CD34 MicroBead Kit
Cat#130-046-702
Miltenyi Biotec, Inc.
Used to magnetically sort CD34t cells from the mononuclear cell fraction of human bone marrow aspirate.
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LKC Big Shot
UTAS Visual Electrodiagnostic System with EM for Windows Version 1.3
LKC Technologies, Inc.
Used for electroretinography (ERG) testing to measure retinal function.
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Super-continuum laser
SC-400
Fianium, Inc.
Used as the light source for the scanning laser ophthalmoscopy (SLO) subsystem in retinal imaging.
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Broadband light source
Broadlighter 890
Superlum Diodes Ltd.
Used for the optical coherence tomography (OCT) subsystem in retinal imaging.
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Mouse contact lens
0-diopter (D)
Unicon Corporation
Used to keep the mouse cornea hydrated during retinal imaging.
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Nikon Eclipse E800 microscope
E800
Nikon
Used for viewing and digitizing images in immunohistochemistry.
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Qiagen miRNeasy isolation kit
miRNeasy
Qiagen
Used to isolate total RNA from retinal tissue for microarray analysis.
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Affymetrix GeneChip microarray
Mouse Transcriptome Assay 1.0 (MTA1)
Affymetrix
Used for microarray analysis to study gene expression changes in the retina.
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