脱氧核糖核酸酶 I (过滤)
DNase I (filtered) (EC 3.1.21.1) 脱氧核糖核酸酶是一种降解 DNA 的酶, 在细胞外 DNA 的裂解中起着关键作用, 对限制炎症反应和维持体内平衡至关重要。外源性脱氧核糖核酸酶在炎症性疾病和癌症中发挥有益作用。通过0.22 μM 滤膜过滤,未进行热原性测试。
Fibrostatin C (P-23924C) 是具有口服活性脯氨酸羟化酶 (prolyl hydroxylase) 抑制剂,同时也抑制胶原蛋白 (collagen) 的生物合成。Fibrostatin C 还增加了与胶原蛋白 I 或 III 抗体免疫反应的细胞质颗粒数量。Fibrostatin C 抑制 Tenon 膜成纤维细胞中 I 型胶原蛋白的分泌。Fibrostatin C 有望用于青光眼滤过手术创伤的纤维化反应的研究。
Cross-linked dextran G 50, medium 是一种凝胶过滤介质。Cross-linked dextran G 50, medium 可用于凝胶渗透色谱法来分离糖肽混合物 (球型蛋白分离范围: 1.5K-30K Da;多糖类分离范围:500-10K Da)。Cross-linked dextran G 50, medium 是平均粒径为 D50=220-250 μm 的微球。
Cross-linked dextran G 50, fine 是一种凝胶过滤介质。Cross-linked dextran G 50, fine 可用于凝胶渗透色谱法来分离糖肽混合物 (球型蛋白分离范围: 1.5K-30K Da;多糖类分离范围:500-10K Da)。Cross-linked dextran G 50, fine 是平均粒径为 D50=110-130 μm 的微球。
Natural products are small molecules produced naturally by any organism including primary and secondary metabolites. Nowadays, new drugs based on Natural products are successfully applied to treat tumors, viral and bacterial diseases, and nervous disorders.
In response to the current drug discovery demand, we created this natural product-like compound library with 13,236 in-stock synthetic compounds similar to natural ones. The library was designed by 2D fingerprint similarity filtering, chemical descriptor-based and natural-likeness scoring selection. These compounds are useful tools for high throughput screening (HTS) and high content screening (HCS) programs.
A specially synthesized set of 2 compounds able to mimic glycosides and their interaction with proteins. The main emphasis of library design was made on drug-like compounds enriched with H-bond donors (possess at least two H-bond donors) and bearing nature-like Fsp3–rich scaffolds with diverse spatial orientation of H-bond donors and different 3D-shapes.
The incidence and significance of central nervous system diseases are increasing at an alarming rate all over the world. Although substantial research efforts have been applied to develop new CNS-active drugs, only a few CNS disorders are addressed satisfactorily, while the remaining ones pose significant clinical challenges. Blood-brain barrier (BBB) permeability is one of the most important limiting factors in the design and development of novel CNS-targeted pharmaceuticals for the treatment of neurological disorders.
Carefully selected from the HTS Compound Collection to meet the parameters optimized for high BBB-permeability, our CNS Focused Screening Library comprising over 30,300 structurally-diverse and potentially CNS-active screening compounds. This original Screening Compound Library is aimed at supporting CNS drug design projects and HTS efforts in search for novel neurotherapeutics.
FCH Group Screening Library Collection contains about 2,244,487 lead-like compounds for biological screening. This brand new collection comprises polar molecules with pharmacologically important groups such as free carboxylic and amino groups.
UORSY Screening Compounds Library contains about 680,000 compounds. The library has extensively developed a polymerization synthesis method that provides a highly diverse chemical structure. More than 85% of the compounds in the library have drug-like physicochemical properties, and more than 35% of the compounds have lead-like properties.
MCE 3D 多样片段库由 5,400 个非平面片段分子组成(平均 Fsp3 值为 0.58),超过4,700个片段至少包含一个手性中心。本库设计的关键元素是 3D 结构、多样性、生物反应性等。另,库中化合物在保证高sp3中心和 3D 结构优势的同时,还有效提高了片段潜在生物活性,为基于片段的药物发现提供了更高的片段命中优化概率,增加了找到创新命中的可能性。
2024年5月,Nature杂志在线发表了题为“Dimerization and antidepressant recognition at noradrenaline transporter”的研究论文,该研究成果由中国科学院上海药物研究所完成。该研究破解了重要神经系统疾病靶标——去甲肾上腺素转运体(NET),获得了人源NET同源二聚体分别与转运天然底物去甲肾上腺素NE,以及六种选择性抗抑郁药物的结合模式,为理解NET等单胺类转运体的生理调控机制奠定了重要的理论基础。
Natural products are an attractive source with varied structures that exhibit potent biological activities, and desirable pharmacological profiles. The core scaffold of a natural product can also provide a biologically validated framework upon which to display diverse functional groups. Inspired by bioactive natural products, natural product-like compounds, occupying the same chemical space, are ideally suited to explore and to facilitate understanding of biological pathways.
MCE 10K Natural Product-like Compound Library consists of 10,000 natural product-like compounds. Each compound has scaffold of natural products or Tanimoto coefficient >0.6 with natural products. The natural-likeness scoring of these compounds is >-2. What’s more, compounds in the library are drug-like and readily available for re-supply, making it a powerful tool for new drug research and development. It can be widely applied in high-throughput screening (HTS) and high-content screening (HCS).
Cross-linked dextran G 50, medium 是一种凝胶过滤介质。Cross-linked dextran G 50, medium 可用于凝胶渗透色谱法来分离糖肽混合物 (球型蛋白分离范围: 1.5K-30K Da;多糖类分离范围:500-10K Da)。Cross-linked dextran G 50, medium 是平均粒径为 D50=220-250 μm 的微球。
Cross-linked dextran G 50, fine 是一种凝胶过滤介质。Cross-linked dextran G 50, fine 可用于凝胶渗透色谱法来分离糖肽混合物 (球型蛋白分离范围: 1.5K-30K Da;多糖类分离范围:500-10K Da)。Cross-linked dextran G 50, fine 是平均粒径为 D50=110-130 μm 的微球。
MCE 两性霉素 B 无菌溶液 (250 μg/mL),已过滤除菌,可直接用于细胞培养。两性霉素 B 来源于结节链霉菌(Streptomyces nodosus),是一种多烯类抗真菌抗生素,可与真菌细胞膜的固醇类物质结合,形成跨膜通道,导致细胞内物质外漏到膜外,破坏真菌正常代谢并引起死亡,从而用于抑制真菌和酵母的污染。
Fibrostatin C (P-23924C) 是具有口服活性脯氨酸羟化酶 (prolyl hydroxylase) 抑制剂,同时也抑制胶原蛋白 (collagen) 的生物合成。Fibrostatin C 还增加了与胶原蛋白 I 或 III 抗体免疫反应的细胞质颗粒数量。Fibrostatin C 抑制 Tenon 膜成纤维细胞中 I 型胶原蛋白的分泌。Fibrostatin C 有望用于青光眼滤过手术创伤的纤维化反应的研究。
Western blot analysis of extracts from THP-1(lane 2(20μg), Jurkat (lane 3(20μg) and NIH3T3(lane 4(20μg) using FOXO1A (HY-P80132) Rabbit mAb. Proteins were transferred
to a PVDF membrane and blocked with 5% non-fat milk in TBST for 2 hour at room temperature. The primary antibody (1/1000) and Loading control antibody (Beta Actin, HY-P80438, 1/10000) was
used in 5% non-fat milk in TBST at 4°C overnight. Goat Anti-Mouse/Rabbit IgG-HRP Secondary Antibody (1/10000) was used for 1 hour at room temperature.
Western blot analysis of extracts from THP-1(lane 2(20μg), Jurkat (lane 3(20μg) and NIH3T3(lane 4(20μg) using FOXO1A (HY-P80132) Rabbit mAb. Proteins were transferred
to a PVDF membrane and blocked with 5% non-fat milk in TBST for 2 hour at room temperature. The primary antibody (1/1000) and Loading control antibody (Beta Actin, HY-P80438, 1/10000) was
used in 5% non-fat milk in TBST at 4°C overnight. Goat Anti-Mouse/Rabbit IgG-HRP Secondary Antibody (1/10000) was used for 1 hour at room temperature.
Western blot analysis of extracts from THP-1(lane 2(20μg), Jurkat (lane 3(20μg) and NIH3T3(lane 4(20μg) using FOXO1A (HY-P80132) Rabbit mAb. Proteins were transferred
to a PVDF membrane and blocked with 5% non-fat milk in TBST for 2 hour at room temperature. The primary antibody (1/1000) and Loading control antibody (Beta Actin, HY-P80438, 1/10000) was
used in 5% non-fat milk in TBST at 4°C overnight. Goat Anti-Mouse/Rabbit IgG-HRP Secondary Antibody (1/10000) was used for 1 hour at room temperature.
Western blot analysis of extracts from THP-1(lane 2(20μg), Jurkat (lane 3(20μg) and NIH3T3(lane 4(20μg) using FOXO1A (HY-P80132) Rabbit mAb. Proteins were transferred
to a PVDF membrane and blocked with 5% non-fat milk in TBST for 2 hour at room temperature. The primary antibody (1/1000) and Loading control antibody (Beta Actin, HY-P80438, 1/10000) was
MedchemExpress Validation 03
Western blot analysis of extracts from THP-1(lane 2(20μg), Jurkat (lane 3(20μg) and NIH3T3(lane 4(20μg) using FOXO1A (HY-P80132) Rabbit mAb. Proteins were transferred
MedchemExpress Validation 04
Western blot analysis of extracts from THP-1(lane 2(20μg), Jurkat (lane 3(20μg) and NIH3T3(lane 4(20μg) using FOXO1A (HY-P80132) Rabbit mAb. Proteins were transferred
to a PVDF membrane and blocked with 5% non-fat milk in TBST for 2 hour at room temperature. The primary antibody (1/1000) and Loading control antibody (Beta Actin, HY-P80438, 1/10000) was
used in 5% non-fat milk in TBST at 4°C overnight. Goat Anti-Mouse/Rabbit IgG-HRP Secondary Antibody (1/10000) was used for 1 hour at room temperature.
MedchemExpress Validation
Western blot analysis of extracts from THP-1(lane 2(20μg), Jurkat (lane 3(20μg) and NIH3T3(lane 4(20μg) using FOXO1A (HY-P80132) Rabbit mAb. Proteins were transferred
to a PVDF membrane and blocked with 5% non-fat milk in TBST for 2 hour at room temperature. The primary antibody (1/1000) and Loading control antibody (Beta Actin, HY-P80438, 1/10000) was
used in 5% non-fat milk in TBST at 4°C overnight. Goat Anti-Mouse/Rabbit IgG-HRP Secondary Antibody (1/10000) was used for 1 hour at room temperature.
Western blot analysis of extracts from THP-1(lane 2(20μg), Jurkat (lane 3(20μg) and NIH3T3(lane 4(20μg) using FOXO1A (HY-P80132) Rabbit mAb. Proteins were transferred
to a PVDF membrane and blocked with 5% non-fat milk in TBST for 2 hour at room temperature. The primary antibody (1/1000) and Loading control antibody (Beta Actin, HY-P80438, 1/10000) was
used in 5% non-fat milk in TBST at 4°C overnight. Goat Anti-Mouse/Rabbit IgG-HRP Secondary Antibody (1/10000) was used for 1 hour at room temperature.
MedchemExpress Validation
Western blot analysis of extracts from THP-1(lane 2(20μg), Jurkat (lane 3(20μg) and NIH3T3(lane 4(20μg) using FOXO1A (HY-P80132) Rabbit mAb. Proteins were transferred
to a PVDF membrane and blocked with 5% non-fat milk in TBST for 2 hour at room temperature. The primary antibody (1/1000) and Loading control antibody (Beta Actin, HY-P80438, 1/10000) was
used in 5% non-fat milk in TBST at 4°C overnight. Goat Anti-Mouse/Rabbit IgG-HRP Secondary Antibody (1/10000) was used for 1 hour at room temperature.
MedchemExpress Validation
Western blot analysis of extracts from THP-1(lane 2(20μg), Jurkat (lane 3(20μg) and NIH3T3(lane 4(20μg) using FOXO1A (HY-P80132) Rabbit mAb. Proteins were transferred
to a PVDF membrane and blocked with 5% non-fat milk in TBST for 2 hour at room temperature. The primary antibody (1/1000) and Loading control antibody (Beta Actin, HY-P80438, 1/10000) was
used in 5% non-fat milk in TBST at 4°C overnight. Goat Anti-Mouse/Rabbit IgG-HRP Secondary Antibody (1/10000) was used for 1 hour at room temperature.
MedchemExpress Validation
Western blot analysis of extracts from THP-1(lane 2(20μg), Jurkat (lane 3(20μg) and NIH3T3(lane 4(20μg) using FOXO1A (HY-P80132) Rabbit mAb. Proteins were transferred
to a PVDF membrane and blocked with 5% non-fat milk in TBST for 2 hour at room temperature. The primary antibody (1/1000) and Loading control antibody (Beta Actin, HY-P80438, 1/10000) was
used in 5% non-fat milk in TBST at 4°C overnight. Goat Anti-Mouse/Rabbit IgG-HRP Secondary Antibody (1/10000) was used for 1 hour at room temperature.
MedchemExpress Validation
Western blot analysis of extracts from THP-1(lane 2(20μg), Jurkat (lane 3(20μg) and NIH3T3(lane 4(20μg) using FOXO1A (HY-P80132) Rabbit mAb. Proteins were transferred
to a PVDF membrane and blocked with 5% non-fat milk in TBST for 2 hour at room temperature. The primary antibody (1/1000) and Loading control antibody (Beta Actin, HY-P80438, 1/10000) was
used in 5% non-fat milk in TBST at 4°C overnight. Goat Anti-Mouse/Rabbit IgG-HRP Secondary Antibody (1/10000) was used for 1 hour at room temperature.
MedchemExpress Validation
Western blot analysis of extracts from THP-1(lane 2(20μg), Jurkat (lane 3(20μg) and NIH3T3(lane 4(20μg) using FOXO1A (HY-P80132) Rabbit mAb. Proteins were transferred
to a PVDF membrane and blocked with 5% non-fat milk in TBST for 2 hour at room temperature. The primary antibody (1/1000) and Loading control antibody (Beta Actin, HY-P80438, 1/10000) was
used in 5% non-fat milk in TBST at 4°C overnight. Goat Anti-Mouse/Rabbit IgG-HRP Secondary Antibody (1/10000) was used for 1 hour at room temperature.
MedchemExpress Validation
Western blot analysis of extracts from THP-1(lane 2(20μg), Jurkat (lane 3(20μg) and NIH3T3(lane 4(20μg) using FOXO1A (HY-P80132) Rabbit mAb. Proteins were transferred
to a PVDF membrane and blocked with 5% non-fat milk in TBST for 2 hour at room temperature. The primary antibody (1/1000) and Loading control antibody (Beta Actin, HY-P80438, 1/10000) was
used in 5% non-fat milk in TBST at 4°C overnight. Goat Anti-Mouse/Rabbit IgG-HRP Secondary Antibody (1/10000) was used for 1 hour at room temperature.