sugitani@staff.kanazawa-u.ac.jpUnlike mammals, fish retinal ganglion cells have the capacity to repair their axons even after optic nerve transection. In the process of fish optic nerve regeneration, a large number of genes have been described as regeneration-associated molecules. Using molecular cloning techniques, we identified two types of cDNA clones belonging to the transglutaminase (TG) family which were upregulation genes; one is cellular factor XIII (cFXIII) and the other is a tissue type TG named retinal transglutaminase (TGR). cFXIII mRNA started to increase in the retinal ganglion cells at 1-2 days, peaked at 5-7 days, and returned to the control level by 20 days post optic nerve injury. In contrast, TGR mRNA started to increase ...
My Honors Research Project will test the function of the N-cadherin molecule on the zebrafish optic ...
AbstractThe molecular regulation of tubulin synthesis was investigated in the regenerating goldfish ...
Adult mammals are unable to repair spinal cord, brain, and other CNS tissues. Although mature mammal...
Unlike in mammals, fish retinal ganglion cells (RGCs) have a capacity to repair their axons even aft...
Unlike mammals, lower vertebrates are able to regenerate injured pathways of the central nervous sys...
AbstractUnlike mammals, teleost fish are able to mount an efficient and robust regenerative response...
Mammalian retinal ganglion cells (RGCs) in the central nervous system (CNS) often die after trauma t...
The mammalian central nervous system (CNS) shows a very limited capacity for axonal regeneration, a ...
The neural retina of teleost fish can regenerate following surgical or neurotoxic lesions. As a firs...
Neuroglobin (Ngb) is a new member of the family of heme proteins and is specifically expressed in ne...
In lower vertebrates, retinal ganglion cells (RGCs) can regenerate their axons and reestablish funct...
取得学位 : 博士(医学), 学位授与番号 : 医博乙第1627号, 学位授与年月日 : 平成18年11月15日, 学位授与大学 : 金沢大学, 主査教授 : 多久和 陽, 副査教授 : 東田 陽博,...
The mammalian central nervous system (CNS) is incapable of regenerating damaged axons; as a result, ...
Following injury to the central nervous system (CNS), adult mammals are largely unable to regenerate...
The ability of lower vertebrates to regenerate an injured optic nerve has been widely studied as a m...
My Honors Research Project will test the function of the N-cadherin molecule on the zebrafish optic ...
AbstractThe molecular regulation of tubulin synthesis was investigated in the regenerating goldfish ...
Adult mammals are unable to repair spinal cord, brain, and other CNS tissues. Although mature mammal...
Unlike in mammals, fish retinal ganglion cells (RGCs) have a capacity to repair their axons even aft...
Unlike mammals, lower vertebrates are able to regenerate injured pathways of the central nervous sys...
AbstractUnlike mammals, teleost fish are able to mount an efficient and robust regenerative response...
Mammalian retinal ganglion cells (RGCs) in the central nervous system (CNS) often die after trauma t...
The mammalian central nervous system (CNS) shows a very limited capacity for axonal regeneration, a ...
The neural retina of teleost fish can regenerate following surgical or neurotoxic lesions. As a firs...
Neuroglobin (Ngb) is a new member of the family of heme proteins and is specifically expressed in ne...
In lower vertebrates, retinal ganglion cells (RGCs) can regenerate their axons and reestablish funct...
取得学位 : 博士(医学), 学位授与番号 : 医博乙第1627号, 学位授与年月日 : 平成18年11月15日, 学位授与大学 : 金沢大学, 主査教授 : 多久和 陽, 副査教授 : 東田 陽博,...
The mammalian central nervous system (CNS) is incapable of regenerating damaged axons; as a result, ...
Following injury to the central nervous system (CNS), adult mammals are largely unable to regenerate...
The ability of lower vertebrates to regenerate an injured optic nerve has been widely studied as a m...
My Honors Research Project will test the function of the N-cadherin molecule on the zebrafish optic ...
AbstractThe molecular regulation of tubulin synthesis was investigated in the regenerating goldfish ...
Adult mammals are unable to repair spinal cord, brain, and other CNS tissues. Although mature mammal...