-
氨磺乐灵
- names:
Oryzalin
- CAS号:
19044-88-3
MDL Number: MFCD00078725 - MF(分子式): C12H18N4O6S MW(分子量): 346
- EINECS:242-777-0 Reaxys Number:
- Pubchem ID:29393 Brand:BIOFOUNT
| 货品编码 | 规格 | 纯度 | 价格 (¥) | 现价(¥) | 特价(¥) | 库存描述 | 数量 | 总计 (¥) |
|---|---|---|---|---|---|---|---|---|
| WSH49542-1mL | 1mL | 95% | ¥ 183.00 | ¥ 183.00 | Backorder | ¥ 0.00 |
| 中文别名 | 氨磺乐灵(19044-88-3,Oryzalin);消草磺灵;氨磺灵;黄草消;N,N-二丙基-4-氨基磺酰基-2,6-硝基苯胺;氟醚菌酰胺;3,5-二硝基-N4,N4-丙基磺胺 |
| 英文别名 | Oryzalin(19044-88-3);4-(Dipropylamino)-3,5-dinitrobenzenesulfonamide;Surflan;Dirimal;Dirimal Extra |
| CAS号 | 19044-88-3 |
| Inchi | InChI=1S/C12H18N4O6S/c1-3-5-14(6-4-2)12-10(15(17)18)7-9(23(13,21)22)8-11(12)16(19)20/h7-8H,3-6H2,1-2H3,(H2,13,21,22) |
| InchiKey | UNAHYJYOSSSJHH-UHFFFAOYSA-N |
| 分子式 Formula | C12H18N4O6S |
| 分子量 Molecular Weight | 346 |
| 溶解度Solubility | |
| 性状 | 橙黄色结晶固体 |
| 储藏条件 Storage conditions | storage at -4℃ (1-2weeks), longer storage period at -20℃ (1-2years) |
氨磺乐灵(19044-88-3,Oryzalin)毒理属性测试:
| 生物 | 测试类型 | 路线 | 报告剂量(标准化剂量) | 影响 | 参考 |
|---|---|---|---|---|---|
| rat | LD50 | oral | 10000 mg/kg (10000 mg/kg) | Agricultural Chemicals, Thomson, W.T., 4 vols., Fresno, CA, Thomson Publications, 1976/77 revision, 2(44), 1977 | |
| mouse | LD50 | oral | >10 gm/kg (10000 mg/kg) | Agrochemicals Handbook, with updates, Hartley, D., and H. Kidd, eds., Nottingham, Royal Soc of Chemistry, 1983-86, A305(1983) | |
| dog | LD50 | oral | >1 gm/kg (1000 mg/kg) | Pesticide Manual., 9(632), 1991 | |
| cat | LD50 | oral | 1 gm/kg (1000 mg/kg) | Pesticide Manual., 9(632), 1991 | |
| rabbit | LD50 | skin | >2 gm/kg (2000 mg/kg) | Pesticide Manual., 9(632), 1991 |
氨磺乐灵(19044-88-3,Oryzalin) 实验注意事项:
1.实验前需戴好防护眼镜,穿戴防护服和口罩,佩戴手套,避免与皮肤接触。
2.实验过程中如遇到有毒或者刺激性物质及有害物质产生,必要时实验操作需要手套箱内完成以免对实验人员造成伤害
3.实验后产生的废弃物需分类存储,并交于专业生物废气物处理公司处理,以免造成环境污染Experimental considerations:
1. Wear protective glasses, protective clothing and masks, gloves, and avoid contact with the skin during the experiment.
2. The waste generated after the experiment needs to be stored separately, and handed over to a professional biological waste gas treatment company to avoid environmental pollution.
Tag:氨磺乐灵(19044-88-3,Oryzalin),氨磺乐灵试剂,氨磺乐灵的MSDS,氨磺乐灵的价格,氨磺乐灵的纯度,氨磺乐灵的作用,氨磺乐灵的外观,氨磺乐灵的溶解度,氨磺乐灵的生产厂家,氨磺乐灵的储存条件,氨磺乐灵的相关图谱,氨磺乐灵的注意事项
| 产品说明 | 氨磺乐灵(19044-88-3,Oryzalin)仅做科学研究以及化学合成中间体使用,19044-88-3其他参数见主页。 |
| Introduction | Sulfalin (19044-88-3,氨磺乐灵) is only used for scientific research and chemical synthesis intermediates. See the homepage for other parameters of 19044-88-3. |
| Application1 | 可以用作除草剂 |
| Application2 | |
| Application3 |
| 警示图 | |
| 危险性 | warning |
| 危险性警示 | Not available |
| 安全声明 | H303吞入可能有害+H313皮肤接触可能有害+H333吸入可能对身体有害 |
| 安全防护 | P264处理后彻底清洗+P280戴防护手套/穿防护服/戴防护眼罩/戴防护面具+P305如果进入眼睛+P351用水小心冲洗几分钟+P338取出隐形眼镜(如果有)并且易于操作,继续冲洗+P337如果眼睛刺激持续+P313获得医疗建议/护理 |
| 备注 | 实验过程中防止吸入、食入,做好安全防护 |
| 象形图 | |
|---|---|
| 信号 | Warning |
| GHS危险说明 |
H317 (99.18%): May cause an allergic skin reaction [Warning Sensitization, Skin] H400 (36.33%): Very toxic to aquatic life [Warning Hazardous to the aquatic environment, acute hazard] H410 (99.18%): Very toxic to aquatic life with long lasting effects [Warning Hazardous to the aquatic environment, long-term hazard] |
| 防范说明代码 |
P261, P272, P273, P280, P302+P352, P321, P333+P313, P363, P391, and P501 (The corresponding statement to each P-code can be found at the GHS Classification page.) |
| Oryzalin bodies: in addition to its anti-microtubule properties, the dinitroaniline herbicide oryzalin causes nodulation of the endoplasmic reticulum(Protoplasma,2009) |
| Inhibition of intracellular Ca2+ signalling, cytotoxicity and antitumor activity of the herbicide oryzalin and its analogues(Cancer Chemotherapy and Pharmacology,1997) |
| Identification of the Herbicide Surflan and Its Active Ingredient Oryzalin, a Dinitrosulfonamide, as Xenoestrogens(Archives of Environmental Contamination and Toxicology,2005) |
| Chromosome doubling in a Rosa rugosa Thunb. hybrid by exposure of in vitro nodes to oryzalin: the effects of node length, oryzalin concentration and exposure time(Plant Cell Reports,2007) |
| Oryzalin-induced chromosome doubling in Rosa and its effect on plant morphology and pollen viability(Theoretical and Applied Genetics,2003) |
1.Quantitative analysis of microtubule orientation in interdigitated leaf pavement cells.
Akita K1, Higaki T, Kutsuna N, Hasezawa S. Plant Signal Behav. 2015;10(5):e1024396. doi: 10.1080/15592324.2015.1024396.
Leaf pavement cells are shaped like a jigsaw puzzle in most dicotyledon species. Molecular genetic studies have identified several genes required for pavement cells morphogenesis and proposed that microtubules play crucial roles in the interdigitation of pavement cells. In this study, we performed quantitative analysis of cortical microtubule orientation in leaf pavement cells in Arabidopsis thaliana. We captured confocal images of cortical microtubules in cotyledon leaf epidermis expressing GFP-tubulinβ and quantitatively evaluated the microtubule orientations relative to the pavement cell growth axis using original image processing techniques. Our results showed that microtubules kept parallel orientations to the growth axis during pavement cell growth. In addition, we showed that immersion treatment of seed cotyledons in solutions containing tubulin polymerization and depolymerization inhibitors decreased pavement cell complexity. Treatment with oryzalin and colchicine inhibited the symmetric division of guard mother cells.
2.Liposomes versus lipid nanoparticles: comparative study of lipid-based systems as oryzalin carriers for the treatment of leishmaniasis.
Lopes RM, Gaspar MM, Pereira J, Eleutério CV, Carvalheiro M, Almeida AJ, Cruz ME. J Biomed Nanotechnol. 2014 Dec;10(12):3647-57.
Main-stay in treatment of leishmaniasis relies on chemotherapy but none of the current drugs combines high activity and low toxicity at affordable costs. Dinitroanilines are a new class of drugs with proved in vitro antileishmanial activity. However the development of their pharmaceutical formulations has been compromised by low water solubility and low accumulation in diseased organs. These limitations can be overcome by incorporation in lipid-based nanoformulations such as liposomes and solid lipid nanoparticles. In previous work this strategy was already followed with the incorporation of a dinitroaniline, oryzalin, resulting in the improvement of the biodistribution profile. The present work aims at demonstrating the in vitro and in vivo therapeutic activity of these oryzalin nanoformulations, and establishing a systematic comparison of both systems. After oryzalin incorporation suitable physicochemical properties for parenteral administration were obtained.
3.Convoluted Plasma Membrane Domains in the Green Alga Chara are Depleted of Microtubules and Actin Filaments.
Sommer A1, Hoeftberger M1, Hoepflinger MC1, Schmalbrock S1, Bulychev A2, Foissner I3. Plant Cell Physiol. 2015 Oct;56(10):1981-96. doi: 10.1093/pcp/pcv119. Epub 2015 Aug 12.
Charasomes are convoluted plasma membrane domains in the green alga Chara australis. They harbor H(+)-ATPases involved in acidification of the medium, which facilitates carbon uptake required for photosynthesis. In this study we investigated the distribution of cortical microtubules and cortical actin filaments in relation to the distribution of charasomes. We found that microtubules and actin filaments were largely lacking beneath the charasomes, suggesting the absence of nucleating and/or anchoring complexes or an inhibitory effect on polymerization. We also investigated the influence of cytoskeleton inhibitors on the light-dependent growth and the darkness-induced degradation of charasomes. Inhibition of cytoplasmic streaming by cytochalasin D significantly inhibited charasome growth and delayed charasome degradation, whereas depolymerization of microtubules by oryzalin or stabilization of microtubules by paclitaxel had no effect. Our data indicate that the membrane at the cytoplasmic surface of charasomes has different properties in comparison with the smooth plasma membrane.
4.Arabidopsis FH1 Formin Affects Cotyledon Pavement Cell Shape by Modulating Cytoskeleton Dynamics.
Rosero A1, Oulehlová D2, Stillerová L3, Schiebertová P3, Grunt M3, ?árský V2, Cvr?ková F4. Plant Cell Physiol. 2016 Mar;57(3):488-504. doi: 10.1093/pcp/pcv209. Epub 2016 Jan 6.
Plant cell morphogenesis involves concerted rearrangements of microtubules and actin microfilaments. We previously reported that FH1, the main Arabidopsis thaliana housekeeping Class I membrane-anchored formin, contributes to actin dynamics and microtubule stability in rhizodermis cells. Here we examine the effects of mutations affecting FH1 (At3g25500) on cell morphogenesis and above-ground organ development in seedlings, as well as on cytoskeletal organization and dynamics, using a combination of confocal and variable angle epifluorescence microscopy with a pharmacological approach. Homozygous fh1 mutants exhibited cotyledon epinasty and had larger cotyledon pavement cells with more pronounced lobes than the wild type. The pavement cell shape alterations were enhanced by expression of the fluorescent microtubule marker GFP-microtubule-associated protein 4 (MAP4). Mutant cotyledon pavement cells exhibited reduced density and increased stability of microfilament bundles, as well as enhanced dynamics of microtubules.
- 相关产品
-
< >
- 推荐产品
-
< >
- 最新产品
-
< >
新闻

怎么做细胞爬片免疫组化染色实验
细胞爬片免疫组化染色,是通过细胞爬片是让玻片浸在细胞培养基内,细胞在玻片上生长,主要用于组织学,免疫组织化学...
2020/7/20 22:04:33

提取病毒RNA的实验方法
提取病毒RNA方法分别有:异硫氰酸胍的提取病毒RNA方法、TRIzol LS提取法、Trizol法提取法等等...
2020/7/22 20:29:26

细胞培养耗材技术领先性
细胞培养板行业面临的核心痛点是:常规TC处理后表面亲水角随时间衰减,影响长期培养稳定性,BIOFOUNT高分...
2026/4/28 15:12:51

细胞培养耗材关键性能
细胞培养板的水接触角作为表面润湿性的核心指标,直接影响细胞贴壁、增殖、分化及功能表达,其中40°(低接触角/...
2026/4/28 14:52:44

chelex 100树脂国产替代之路-BIOFOUNT范德生物
Chelex 100螯合离子交换树脂对铜、铁和其他重金属?的偏好显著高于对钠、钾等一价阳离子的偏好。它对二价...
2025/11/4 14:22:46

9月开学季——助研新学期 范德送好礼
2025/8/28 15:30:55

Waxfilm 实验室封口膜:技术与国际市场的双重突破
在实验室耗材领域,封口膜是保障实验准确性与稳定性的关键产品之一。近年来,Waxfilm?实验室封口膜凭借其卓...
2025/5/13 13:03:40

Waxfilm实验室封口膜的5大突破
Waxfilm实验室封口膜作为生物功能膜领域的国产技术突破和品牌突破,是生物领域中国技术发展的缩影。
2025/5/6 17:02:07

各种微流控芯片键合方法的优缺点
微流控芯片键合:目前主要有激光焊接、热压键合、胶键合、超音波焊接,每种方法都有各自的优缺点。本文主要介绍聚酯...
2023/7/28 10:43:09

新一代微流控键合解决方案
微流控键合解决方案:微流控芯片制造的一个重要环节,也是最容易被忽视的--芯片键合。其中一个重要因素是:微流控...
2023/7/27 12:44:28


购物车 


