C1orf96
- Known as:
- C1orf96
- Catalog number:
- 002807A
- Product Quantity:
- 250ul
- Category:
- Peptides
- Supplier:
- ABM
- Gene target:
- C1orf96
Ask about this productRelated genes to: C1orf96
- Gene:
- CCSAP NIH gene
- Name:
- centriole, cilia and spindle associated protein
- Previous symbol:
- C1orf96
- Synonyms:
- FLJ41471, CSAP
- Chromosome:
- 1q42.13
- Locus Type:
- gene with protein product
- Date approved:
- 2005-05-31
- Date modifiied:
- 2016-01-19
Related products to: C1orf96
Related articles to: C1orf96
- Nowadays, finding effective approaches for cancer therapy is one of the significant issues related to human health all over the world. Hence, in this research, we designed and synthesized a novel targeted DDS based on surface-modified chitosan (CS) for the effective delivery of noscapine (NO). As the surface of CS nanoparticles was firstly modified with carboxyl groups and followed by covalent conjugation of DNA-aptamer (Ap) as targeting and receptor blocker agent. Secondly, NO, as a chemotherapeutic agent, was loaded into prepared nano-complex and synthetics were effectively characterized via various analytical devices, including FT-IR, 1H NMR, DLS, Zeta potential analyzer, TGA, TEM, and SEM to verify quality and quantity of synthetics. Drug loading was obtained about 25 % and sustained drug release was observed for nano-complex at different pHs. Then, the cell viability assay was performed on MCF-7 (as breast cancer cell) and HFF-1 (as normal cell) cell lines to investigate cancer cell inhibition potency of nano-complex. Cell viability of cancer cells was 19.84 ± 1.87 % (for C-CS-Ap-NO) and 75.43 ± 2.64 % (for C-CS-Ap) after 72 h of treatment with 400 nM concentration. These results have been confirming the excellent potency of synthesized novel nano-complex as practical DDS in cancer therapy. - Source: PubMed
Publication date: 2024/10/05
Rahmani Kheyrollahi MaryamMohammadnejad JavadEidi AkramJafary Hanieh - Epigenetics, and especially DNA methylation, contributes to the pathogenesis of sporadic amyotrophic lateral sclerosis (SALS). This study aimed to investigate the role of DNA methylation in SALS using whole blood of SALS patients. - Source: PubMed
Publication date: 2022/06/20
Cai ZhengyiJia XinmiaoLiu MingshengYang XunzheCui Liying - Melatonin can improve mitochondrial dysfunction associated with the aging process by removing active oxygen, as well as inhibiting lipid peroxidation to maintain biofilm fluidity and resist free radical attack. However, there is poor understanding of the effect of melatonin on age-dependent mitochondrial function and lipid profile changes in brain. In this study, we investigated the energy metabolism of the whole body and brain of mice at 9 months, 13 months, and 25 months of continuous gastric administration of 3 mg/kg/d melatonin once per day morning for two months. In addition, we performed transcriptomic, proteomic and lipidomic analysis in the hippocampus of mice at different ages. Proteomics showed that melatonin regulated mitochondrial electron transport and leucine degradation in mouse hippocampus. Lipomics suggested that the long-chain unsaturated glycerol phospholipids in mouse hippocampus increased in an age-dependent manner, while ceramide and glycerol phospholipids decreased significantly in hippocampus of mouse chronically exposed to melatonin. The combined analysis of proteome and liposome demonstrated that Mpst, Ccsap, Hdhd5, Rpl5 and Flna were the key proteins of the network which involved in the regulation of numerous lipids. Furthermore, ultrastructure observation results illustrated that melatonin could improve the damaged mitochondrial and morphologies of 25-month-old mice hippocampus. In conclusion, we describe a mechanism that age-dependent up-regulation of long-chain unsaturated lipids is a driving risk factor for mitochondrial damage and this effect could be reversed by chronic supplement of low-dose melatonin. - Source: PubMed
Publication date: 2022/04/07
Jiang XiaowenXu ZihuaYao DongLiu XinLiu WenwuWang NanLi XiangDiao YaoZhang YingshiZhao Qingchun - Ultrahigh-pressure (UHP) treatment, a non-thermal processing technology, exerts a bactericidal effect and affects food texture. How UHP treatments influence starch-polyphenol complexes has not yet been reported. Here, we studied the effects of UHP treatment on the structure of common rice starch (CRS)-apple polyphenol (AP) and common corn starch (CCS)-AP mixtures. - Source: PubMed
Publication date: 2020/08/16
Chou ShuruiLi BinTan HuiCui HuijunZhang ShuyiWang HanchenMeng Xianjun - The Tibial dyschondroplasia (TD) in fast-growing chickens is mainly caused by improper blood circulation. The exact mechanism underlying angiogenesis and vascularization in tibial growth plate of broiler chickens remains unclear. Therefore, this research attempts to study genes involved in the regulation of angiogenesis in chicken red blood cells. Twenty-four broiler chickens were allotted into a control and thiram (Tetramethyl thiuram disulfide) group. Blood samples were collected on day 2, 6 (8- and 14-days old chickens) and 15 (23 days old chickens). - Source: PubMed
Publication date: 2020/01/15
Jahejo Ali RazaZhang DingNiu ShengMangi Raza AliKhan AfrasyabQadir Muhammad FarhanKhan AjabChen Huan-ChunTian Wen-Xia