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Direct cell to cell transfer of mitochondria by microinjection

Current plant science and biotechnology in agriculture: ) 299-300

Direct cell to cell transfer of mitochondria by microinjection

Accession: 015516164

Related references

Verhoeven, H.A.; Blaas, J., 1992: Direct cell to cell transfer of organelles by microinjection. A new technique for transfer of organelles to plant cells is presented. The organelles are removed from the donor protoplast by micromanipulation and microinjected directly into the acceptor cells. First results obtained by this technique for tran...

Galli, C.; Lagutina, I.; Vassiliev, I.; Duchi, R.; Lazzari, G., 2002: Comparison of microinjection (piezo-electric) and cell fusion for nuclear transfer success with different cell types in cattle. Amongst the many variables that can determine success of cloning, the source of nuclei, the procedure used for nuclear transfer, and the activation of the reconstructed embryo are Very important aspects. In this study, we have compared the two mos...

McEvoy, T.G.; Sreenan, J.M., 1990: The efficiency of production, centrifugation, microinjection and transfer of one- and two-cell bovine ova in a gene transfer program. Forty crossbred beef heifers were superovulated with 2000 IU pregnant mare serum gonadotropin (PMSG) and mated twice by natural service during estrus. Ovulations were counted and ova were recovered during mid-ventral laparotomy between 44 and 54 h...

Lawrence, W.A.; Davies, D.R.; Xue, Y., 1989: Transfer of mitochondria by microinjection. In an attempt to transfer cytoplasmic male sterility (CMS), known to be encoded by mitochondrial DNA (mtDNA), cytoplasm extracted from a CMS sugarbeet protoplast was immediately microinjected into a male-fertile (MF) protoplast. Eight cell lines w...

Pankotai, E.; Cselenyák, A.; Rátosi, O.; Lörincz, J.; Kiss, L.; Lacza, Z., 2012: The role of mitochondria in direct cell-to-cell connection dependent rescue of postischemic cardiomyoblasts. In thisin vitrostudy we induced ischemic injury on H9c2 rat cardiomyoblasts using the oxygen-glucose deprivation model (OGD). We monitored if the addition of healthy or mitochondria-depleted cells can save OGD treated cells from post-ischemic inju...

Irwin, M.H.; Johnson, L.W.; Pinkert, C.A., 1999: Isolation and microinjection of somatic cell-derived mitochondria and germline heteroplasmy in transmitochondrial mice. A microinjection technique for transfer of isolated, viable mitochondria between 2 mouse species has been developed previously. In the present work, transmitochondrial founder mice (Mus musculus domesticus) carrying M. Spretus mitochondria were pr...

Pinkert, C.A.; Irwin, M.H.; Johnson, L.W.; Moffatt, R.J., 1998: Mitochondria transfer into mouse ova by microinjection. A method for mitochondria isolation and interspecific transfer of mitochondria was developed in mice. Mitochondria were isolated from Mus spretus liver samples for microinjection into fertilized ova obtained from superovulated M. musculus domestic...

Hsu, Y-Chao.; Wu, Y-Ting.; Yu, T-Hsien.; Wei, Y-Huei., 2016: Mitochondria in mesenchymal stem cell biology and cell therapy: From cellular differentiation to mitochondrial transfer. Mesenchymal stem cells (MSCs) are characterized to have the capacity of self-renewal and the potential to differentiate into mesoderm, ectoderm-like and endoderm-like cells. MSCs hold great promise for cell therapies due to their multipotency in v...

Verhoeven, H.A.; Eck, J.W. van; Blaas, E.J.; Dijkhuis, P., 1995: Interspecfic transfer of isolated plant mitochondria by microinjection. Data on isolation, purification and transfer of mitochondria from a cytoplasmically male sterile line of the 'Ogura' type of Raphanus sativus to a male fertile line of Brassica napus are reported. Microinjection has been used for the tra...

Weege D.; Weber G., 1989: Transfer of mitochondria by microinjection into cells of brassica napus l. European Journal of Cell Biology Supplement (26): 77