- 1
Balsam LB, , Wagers AJ, , Christensen JL, , Kofidis T, , Weissman IL, & Robbins RC: Haematopoietic stem cells adopt mature haematopoietic fates in ischaemic myocardium. Nature 428:668–673, 2004
- Crossref
- PubMed
Balsam LB, Wagers AJ, Christensen JL, Kofidis T, Weissman IL, Robbins RC: Haematopoietic stem cells adopt mature haematopoietic fates in ischaemic myocardium. Nature 428:668–673, 200410.1038/nature02460
)| false
- Search Google Scholar
- Export Citation
- 2
Banik NL, , Powers JM, & Hogan EL: The effects of spinal cord trauma on myelin. J Neuropathol Exp Neurol 39:232–244, 1980
- Crossref
- PubMed
Banik NL, Powers JM, Hogan EL: The effects of spinal cord trauma on myelin. J Neuropathol Exp Neurol 39:232–244, 198010.1097/00005072-198005000-00002
)| false
- Search Google Scholar
- Export Citation
- 3
Basso DM, , Beattie MS, & Bresnahan JC: Graded histological and locomotor outcomes after spinal cord contusion using the NYU weight-drop device versus transection. Exp Neurol 139:244–256, 1996
- Crossref
- PubMed
Basso DM, Beattie MS, Bresnahan JC: Graded histological and locomotor outcomes after spinal cord contusion using the NYU weight-drop device versus transection. Exp Neurol 139:244–256, 199610.1006/exnr.1996.0098
)| false
- Search Google Scholar
- Export Citation
- 4
Basso DM, , Beattie MS, & Bresnahan JC: A sensitive and reliable locomotor rating scale for open field testing in rats. J Neurotrauma 12:1–21, 1995
- Crossref
- PubMed
Basso DM, Beattie MS, Bresnahan JC: A sensitive and reliable locomotor rating scale for open field testing in rats. J Neurotrauma 12:1–21, 199510.1089/neu.1995.12.1
)| false
- Search Google Scholar
- Export Citation
- 5
Broxmeyer HE: Primitive hematopoietic stem and progenitor cells in human umbilical cord blood: an alternative source of transplantable cells. Cancer Treat Res 84:139–148, 1996
- Crossref
- PubMed
Broxmeyer HE: Primitive hematopoietic stem and progenitor cells in human umbilical cord blood: an alternative source of transplantable cells. Cancer Treat Res 84:139–148, 199610.1007/978-1-4613-1261-1_7
)| false
- Search Google Scholar
- Export Citation
- 6
Broxmeyer HE, , Douglas GW, , Hangoc G, , Cooper S, , Bard J, & English D, et al.: Human umbilical cord blood as a potential source of transplantable hematopoietic stem/progenitor cells. Proc Nat Acad Sci U S A 86:3828–3832, 1989
- Crossref
- PubMed
Broxmeyer HE, Douglas GW, Hangoc G, Cooper S, Bard J, English D, : Human umbilical cord blood as a potential source of transplantable hematopoietic stem/progenitor cells. Proc Nat Acad Sci U S A 86:3828–3832, 198910.1073/pnas.86.10.3828
)| false
- Search Google Scholar
- Export Citation
- 7
Buzanska L, , Machaj EK, , Zablocka B, , Pojda Z, & Domanska-Janik K: Human cord blood-derived cells attain neuronal and glial features in vitro. J Cell Sci 115:2131–2138, 2002
- Crossref
- PubMed
Buzanska L, Machaj EK, Zablocka B, Pojda Z, Domanska-Janik K: Human cord blood-derived cells attain neuronal and glial features in vitro. J Cell Sci 115:2131–2138, 200210.1242/jcs.115.10.2131
)| false
- Search Google Scholar
- Export Citation
- 8
Chen J, , Sanberg PR, , Li Y, , Wang L, , Lu M, & Willing AE, et al.: Intravenous administration of human umbilical cord blood reduces behavioral deficits after stroke in rats. Stroke 32:2682–2688, 2001
- Crossref
- PubMed
Chen J, Sanberg PR, Li Y, Wang L, Lu M, Willing AE, : Intravenous administration of human umbilical cord blood reduces behavioral deficits after stroke in rats. Stroke 32:2682–2688, 200110.1161/hs1101.098367
)| false
- Search Google Scholar
- Export Citation
- 9
Chopp M, , Zhang XH, , Li Y, , Wang L, , Chen J, & Lu D, et al.: Spinal cord injury in rat: treatment with bone marrow stromal cell transplantation. Neuroreport 11:3001–3005, 2000
- Crossref
- PubMed
Chopp M, Zhang XH, Li Y, Wang L, Chen J, Lu D, : Spinal cord injury in rat: treatment with bone marrow stromal cell transplantation. Neuroreport 11:3001–3005, 200010.1097/00001756-200009110-00035
)| false
- Search Google Scholar
- Export Citation
- 10
Chung K, & Chung JM: Sympathetic sprouting in the dorsal root ganglion after spinal nerve ligation: evidence of regenerative collateral sprouting. Brain Res 23:204–212, 2001
- PubMed
Chung K, Chung JM: Sympathetic sprouting in the dorsal root ganglion after spinal nerve ligation: evidence of regenerative collateral sprouting. Brain Res 23:204–212, 2001
)| false
- Search Google Scholar
- Export Citation
- 11
Ha Y, , Choi JU, , Yoon DH, , Yeon DS, , Lee JJ, & Kim HO, et al.: Neural phenotype expression of cultured human cord blood cells in vitro. Neuroreport 12:3523–3527, 2001
- Crossref
- PubMed
Ha Y, Choi JU, Yoon DH, Yeon DS, Lee JJ, Kim HO, : Neural phenotype expression of cultured human cord blood cells in vitro. Neuroreport 12:3523–3527, 200110.1097/00001756-200111160-00030
)| false
- Search Google Scholar
- Export Citation
- 12
Joshi SS, , Tarantolo SR, , Kuszynski CA, & Kessinger A: Antitumor therapeutic potential of activated human umbilical cord blood cells against leukemia and breast cancer. Clin Cancer Res 6:4351–4358, 2000
- PubMed
Joshi SS, Tarantolo SR, Kuszynski CA, Kessinger A: Antitumor therapeutic potential of activated human umbilical cord blood cells against leukemia and breast cancer. Clin Cancer Res 6:4351–4358, 2000
)| false
- Search Google Scholar
- Export Citation
- 13
Kamada T, , Koda M, , Dezawa M, , Yoshinaga K, , Hashimoto M, & Koshizuka S, et al.: Transplantation of bone marrow stromal cell-derived Schwann cells promotes axonal regeneration and functional recovery after complete transection of adult rat spinal cord. J Neuropathol Exp Neurol 64:37–45, 2005
- Crossref
- PubMed
Kamada T, Koda M, Dezawa M, Yoshinaga K, Hashimoto M, Koshizuka S, : Transplantation of bone marrow stromal cell-derived Schwann cells promotes axonal regeneration and functional recovery after complete transection of adult rat spinal cord. J Neuropathol Exp Neurol 64:37–45, 200510.1093/jnen/64.1.37
)| false
- Search Google Scholar
- Export Citation
- 14
Koda M, , Okada S, , Nakayama T, , Koshizuka S, , Kamada T, & Nishio Y, et al.: Hematopoietic stem cell and marrow stromal cell for spinal cord injury in mice. Neuroreport 16:1763–1767, 2005
- Crossref
- PubMed
Koda M, Okada S, Nakayama T, Koshizuka S, Kamada T, Nishio Y, : Hematopoietic stem cell and marrow stromal cell for spinal cord injury in mice. Neuroreport 16:1763–1767, 200510.1097/01.wnr.0000183329.05994.d7
)| false
- Search Google Scholar
- Export Citation
- 15
Koshizuka S, , Okada S, , Okawa A, , Koda M, , Murasawa M, & Hashimoto M, et al.: Transplanted hematopoietic stem cells from bone marrow differentiate into neural lineage cells and promote functional recovery after spinal cord injury in mice. J Neuropathol Exp Neurol 63:64–72, 2004
- Crossref
- PubMed
Koshizuka S, Okada S, Okawa A, Koda M, Murasawa M, Hashimoto M, : Transplanted hematopoietic stem cells from bone marrow differentiate into neural lineage cells and promote functional recovery after spinal cord injury in mice. J Neuropathol Exp Neurol 63:64–72, 200410.1093/jnen/63.1.64
)| false
- Search Google Scholar
- Export Citation
- 16
Lu D, , Sanberg PR, , Mahmood A, , Li Y, , Wang L, & Sanchez-Ramos J, et al.: Intravenous administration of human umbilical cord blood reduces neurological deficit in the rat after traumatic brain injury. Cell Transplant 11:275–281, 2002
- Crossref
- PubMed
Lu D, Sanberg PR, Mahmood A, Li Y, Wang L, Sanchez-Ramos J, : Intravenous administration of human umbilical cord blood reduces neurological deficit in the rat after traumatic brain injury. Cell Transplant 11:275–281, 200210.3727/096020198389924
)| false
- Search Google Scholar
- Export Citation
- 17
Massengale M, , Wagers AJ, , Vogel H, & Weissman IL: Hematopoietic cells maintain hematopoietic fates upon entering the brain. J Exp Med 16:1579–1589, 2005
- PubMed
Massengale M, Wagers AJ, Vogel H, Weissman IL: Hematopoietic cells maintain hematopoietic fates upon entering the brain. J Exp Med 16:1579–1589, 2005
)| false
- Search Google Scholar
- Export Citation
- 18
McDonald JW, , Liu XZ, , Qu Y, , Liu S, , Mickey SK, & Turetske D, et al.: Transplanted embryonic stem cells survive, differentiate and promote recovery in injured rat spinal cord. Nat Med 5:1410–1412, 1999
- Crossref
- PubMed
McDonald JW, Liu XZ, Qu Y, Liu S, Mickey SK, Turetske D, : Transplanted embryonic stem cells survive, differentiate and promote recovery in injured rat spinal cord. Nat Med 5:1410–1412, 199910.1038/70986
)| false
- Search Google Scholar
- Export Citation
- 19
Murry CE, , Soonpaa MH, , Reinecke H, , Nakajima H, , Nakajima HO, & Rubart M, et al.: Haematopoietic stem cells do not transdifferentiate into cardiac myocytes in myocardial infarcts. Nature 428:664–668, 2004
- Crossref
- PubMed
Murry CE, Soonpaa MH, Reinecke H, Nakajima H, Nakajima HO, Rubart M, : Haematopoietic stem cells do not transdifferentiate into cardiac myocytes in myocardial infarcts. Nature 428:664–668, 200410.1038/nature02446
)| false
- Search Google Scholar
- Export Citation
- 20
Nakamura M, & Bregman BS: Differences in neurotrophic factor gene expression profiles between neonate and adult rat spinal cord after injury. Exp Neurol 169:407–415, 2001
- Crossref
- PubMed
Nakamura M, Bregman BS: Differences in neurotrophic factor gene expression profiles between neonate and adult rat spinal cord after injury. Exp Neurol 169:407–415, 200110.1006/exnr.2001.7670
)| false
- Search Google Scholar
- Export Citation
- 21
Nakamura M, , Houghtling RA, , MacArthur L, , Bayer BM, & Bregman BS: Differences in cytokine gene expression profile between acute and secondary injury in adult rat spinal cord. Exp Neurol 184:313–325, 2003
- Crossref
- PubMed
Nakamura M, Houghtling RA, MacArthur L, Bayer BM, Bregman BS: Differences in cytokine gene expression profile between acute and secondary injury in adult rat spinal cord. Exp Neurol 184:313–325, 200310.1016/S0014-4886(03)00361-3
)| false
- Search Google Scholar
- Export Citation
- 22
Newman MB, , Davis CD, , Borlongan CV, , Emerich D, & Sanberg PR: Transplantation of human umbilical cord blood cells in the repair of CNS diseases. Expert Opin Biol Ther 4:121–130, 2004
- Crossref
- PubMed
Newman MB, Davis CD, Borlongan CV, Emerich D, Sanberg PR: Transplantation of human umbilical cord blood cells in the repair of CNS diseases. Expert Opin Biol Ther 4:121–130, 200410.1517/14712598.4.2.121
)| false
- Search Google Scholar
- Export Citation
- 23
Ogawa Y, , Sawamoto K, , Miyata T, , Miyao S, , Watanabe M, & Nakamura M, et al.: Transplantation of in vitro-expanded fetal neural progenitor cells results in neurogenesis and functional recovery after spinal cord contusion injury in adult rats. J Neurosci Res 69:925–933, 2002
- Crossref
- PubMed
Ogawa Y, Sawamoto K, Miyata T, Miyao S, Watanabe M, Nakamura M, : Transplantation of in vitro-expanded fetal neural progenitor cells results in neurogenesis and functional recovery after spinal cord contusion injury in adult rats. J Neurosci Res 69:925–933, 200210.1002/jnr.10341
)| false
- Search Google Scholar
- Export Citation
- 24
Ohta M, , Suzuki Y, , Noda T, , Ejiri Y, , Dezawa M, & Kataoka K, et al.: Bone marrow stromal cells infused into the cerebrospinal fluid promote functional recovery of the injured rat spinal cord with reduced cavity formation. Exp Neurol 187:266–278, 2004
- Crossref
- PubMed
Ohta M, Suzuki Y, Noda T, Ejiri Y, Dezawa M, Kataoka K, : Bone marrow stromal cells infused into the cerebrospinal fluid promote functional recovery of the injured rat spinal cord with reduced cavity formation. Exp Neurol 187:266–278, 200410.1016/j.expneurol.2004.01.021
)| false
- Search Google Scholar
- Export Citation
- 25
Pahwa RN, , Fleischer A, , Than S, & Good RA: Successful hematopoietic reconstruction with transplantation of erythrocyte-depleted allogeneic human umbilical cord blood cells in a child with leukemia. Proc Natl Acad Sci U S A 91:4485–4488, 1994
- Crossref
- PubMed
Pahwa RN, Fleischer A, Than S, Good RA: Successful hematopoietic reconstruction with transplantation of erythrocyte-depleted allogeneic human umbilical cord blood cells in a child with leukemia. Proc Natl Acad Sci U S A 91:4485–4488, 199410.1073/pnas.91.10.4485
)| false
- Search Google Scholar
- Export Citation
- 26
Saporta S, , Kim JJ, , Willing AE, , Fu ES, , Davis CD, & Sanberg PR: Human umbilical cord blood stem cells infusion in spinal cord injury: engraftment and beneficial influence on behavior. J Hematother Stem Cell Res 12:271–278, 2003
- Crossref
- PubMed
Saporta S, Kim JJ, Willing AE, Fu ES, Davis CD, Sanberg PR: Human umbilical cord blood stem cells infusion in spinal cord injury: engraftment and beneficial influence on behavior. J Hematother Stem Cell Res 12:271–278, 200310.1089/152581603322023007
)| false
- Search Google Scholar
- Export Citation
- 27
Sribnik EA, , Wingrave JM, , Matzelle DD, , Wilford GG, , Ray SK, & Banik NL: Estrogen attenuated markers of inflammation and decreased lesion volume in acute spinal cord injury in rats. J Neurosci Res 82:283–293, 2005
- Crossref
- PubMed
Sribnik EA, Wingrave JM, Matzelle DD, Wilford GG, Ray SK, Banik NL: Estrogen attenuated markers of inflammation and decreased lesion volume in acute spinal cord injury in rats. J Neurosci Res 82:283–293, 200510.1002/jnr.20622
)| false
- Search Google Scholar
- Export Citation
- 28
Taguchi A, , Soma T, , Tanaka H, , Kanda T, , Nishimura H, & Yoshikawa H, et al.: Administration of CD34+ cells after stroke enhances neurogenesis via angiogenesis in a mouse model. J Clin Invest 114:330–338, 2004
- Crossref
- PubMed
Taguchi A, Soma T, Tanaka H, Kanda T, Nishimura H, Yoshikawa H, : Administration of CD34+ cells after stroke enhances neurogenesis via angiogenesis in a mouse model. J Clin Invest 114:330–338, 200410.1172/JCI200420622
)| false
- Search Google Scholar
- Export Citation
- 29
Takami T, , Oudega M, , Bates ML, , Wood PM, , Kleitman N, & Bunge MB: Schwann cell but not olfactory ensheathing glia transplants improve hindlimb locomotor performance in the moderately contused adult rat thoracic spinal cord. J Neurosci 15:6670–6681, 2002
- PubMed
Takami T, Oudega M, Bates ML, Wood PM, Kleitman N, Bunge MB: Schwann cell but not olfactory ensheathing glia transplants improve hindlimb locomotor performance in the moderately contused adult rat thoracic spinal cord. J Neurosci 15:6670–6681, 2002
)| false
- Search Google Scholar
- Export Citation
- 30
Walczak P, , Chen N, , Hudson JE, , Willing AE, , Garbuzova-Davis SN, & Song S, et al.: Do hematopoietic cells exposed to a neurogenic environment mimic properties of endogenous neural pre-cursors?. J Neurosci Res 76:244–254, 2004
- Crossref
- PubMed
Walczak P, Chen N, Hudson JE, Willing AE, Garbuzova-Davis SN, Song S, : Do hematopoietic cells exposed to a neurogenic environment mimic properties of endogenous neural pre-cursors?. J Neurosci Res 76:244–254, 200410.1002/jnr.20042
)| false
- Search Google Scholar
- Export Citation
- 31
Wennersten A, , Meier X, , Holmin S, , Wahlberg L, & Mathiesen T: Proliferation, migration, and differentiation of human neural stem/progenitor cells after transplantation into a rat model of traumatic brain injury. J Neurosurg 100:88–96, 2004
- Crossref
- PubMed
Wennersten A, Meier X, Holmin S, Wahlberg L, Mathiesen T: Proliferation, migration, and differentiation of human neural stem/progenitor cells after transplantation into a rat model of traumatic brain injury. J Neurosurg 100:88–96, 200410.3171/jns.2004.100.1.0088
)| false
- Search Google Scholar
- Export Citation
- 32
Willing AE, , Lixian J, , Milliken M, , Poulos S, , Zigova T, & Song S, et al.: Intravenous versus intrastriatal cord blood administration in a rodent model of stroke. J Neurosci Res 73:296–307, 2003
- Crossref
- PubMed
Willing AE, Lixian J, Milliken M, Poulos S, Zigova T, Song S, : Intravenous versus intrastriatal cord blood administration in a rodent model of stroke. J Neurosci Res 73:296–307, 200310.1002/jnr.10659
)| false
- Search Google Scholar
- Export Citation
- 33
Wu S, , Suzuki Y, , Ejiri Y, , Noda T, , Bai H, & Kitada M, et al.: Bone marrow stromal cells enhance differentiation of cocultured neurosphere cells and promote regeneration of injured spinal cord. J Neurosci Res 72:343–351, 2003
- Crossref
- PubMed
Wu S, Suzuki Y, Ejiri Y, Noda T, Bai H, Kitada M, : Bone marrow stromal cells enhance differentiation of cocultured neurosphere cells and promote regeneration of injured spinal cord. J Neurosci Res 72:343–351, 200310.1002/jnr.10587
)| false
- Search Google Scholar
- Export Citation
- 35
Zhao ZM, , Li HJ, , Liu HY, , Lu SH, , Yang RC, & Zhang QJ, et al.: Intraspinal transplantation of CD34+ human umbilical cord blood cells after spinal cord hemisection injury improves functional recovery in adult rats. Cell Transplant 13:113–122, 2004
- Crossref
- PubMed
Zhao ZM, Li HJ, Liu HY, Lu SH, Yang RC, Zhang QJ, : Intraspinal transplantation of CD34+ human umbilical cord blood cells after spinal cord hemisection injury improves functional recovery in adult rats. Cell Transplant 13:113–122, 200410.3727/000000004773301780
)| false
- Search Google Scholar
- Export Citation
- 36
Zhao ZM, , Lu SH, , Zhang QJ, , Liu HY, , Yang RC, & Cai YL, et al.: The preliminary study on in vitro differentiation of human umbilical cord blood cells into neural cells. Zhonghua Xue Ye Xue Zhi 24:484–487, 2003
- PubMed
Zhao ZM, Lu SH, Zhang QJ, Liu HY, Yang RC, Cai YL, : The preliminary study on in vitro differentiation of human umbilical cord blood cells into neural cells. Zhonghua Xue Ye Xue Zhi 24:484–487, 2003
)| false
- Search Google Scholar
- Export Citation