辅助试剂

联系我们CONTACT US

  • 172 6727 7467
    24小时服务热线
  • 销售邮箱

DEPC处理水(0.1%)

一键复制产品信息

货号:AWR0062

价格: ¥35

规格: 100ml 500ml

  • 产品概述
  • 产品介绍

    DEPC中文名称为焦碳酸二乙酯或氧二甲酸二乙酯或重碳酸二乙酯或二碳酸二乙酯,英文名称为diethyl pyrocarbonate,分子式为C6H10O5,分子量为162.1。DEPC是RNA酶的化学修饰剂,它和RNA酶的活性基团组氨酸的咪唑环反应而抑制酶活性。DEPC处理水又称DEPC水,不同于DEPC,DEPC处理水是使用DEPC处理过的水,基本上不含DEPC,99.99%以上是水。DEPC处理水是用0.1%DEPC过夜处理MiliQ纯水,并经高压灭菌处理。DEPC处理水可以用于RNA沉淀的溶解,含有RNA的各种反应体系如反转录、siRNA的退火等,以及其它各种要求无RNase的反应体系。

    DEPC处理水使用0.1%DEPC处理后,15psi高压蒸汽灭菌20min。经高压灭菌后的DEPC处理水,具有特殊气味。DEPC处理水常用做核酸酶抑制剂(特别是用于灭活广泛存在的核糖核酸酶)、组氨酸残基修饰剂等相关实验。



    注意事项

    1、 为了您如果每次的使用量很小,可以适当分装后再使用。

    2、 戴一次性手套、口罩操作,以防RNase污染。

    3、 为了您的安全和健康,请穿好实验服并佩戴一次性手套和口罩操作。

    4、 本产品仅限于专业人员的科学研究用,不得用于临床诊断或治疗,不得用于食品或药品,不得存放于普通住宅内。

     

    产品规格

    名称

    货号

    规格

    storage

    DEPC处理水(0.1%)

    AWR0062a

    100ml

    RT

    DEPC处理水(0.1%)

    AWR0062b

    500ml

    RT


    注意:

    1.本产品仅供科研使用。请勿用于医药、临床诊断或治疗。食品及化妆品等用途。请勿存放于普通住宅区。

    2.为了您的安全和健康,请穿好实验服并佩戴一次性手套和口罩操作。

    3.实验结果可由多种因素影响,相关处理只限于产品本身,不涉及其他赔偿。


    参考文献 (1)

    Frontiers in Pharmacology IF:4.8

    Background: Intervertebral disc degeneration (IDD) significantly contributes to low back pain (LBP), yet effective treatment options are scarce. BSHXF, a classical traditional Chinese medicine formula, demonstrates dual pharmacological actions: tonifying kidneys, strengthening bones, activating blood circulation, and resolving stasis. It has been widely used in IDD management. Given its potential, combining BSHXF with miRNA regulation and stem cell therapy may enhance therapeutic outcomes by targeting molecular and cellular pathways underlying IDD pathogenesis.Aim of the study: IDD is recognized as one of the primary causes of low back pain, yet effective therapeutic interventions for this condition remain limited. This study explores the role of BSHXF drug-containing serum combined with adipose-derived stem cells (ADSCs) in slowing IDD progression via the miR-199a-3p/TGF-β/Smad signaling pathway. By comprehensively investigating the synergistic effects of this combination therapy, we aim to propose a novel multi-target strategy that addresses the complex pathogenesis of IDD.Materials and Methods: This study employed a combination of in vivo and in vitro models. An IDD model was induced in rat caudal intervertebral discs through needle puncture, while an oxidative stress-induced ADSCs injury model was created in vitro using tert-butyl hydroperoxide (T-BHP). Cell viability was measured with the CCK-8 assay. Cell cycle distribution and mitochondrial reactive oxygen species (ROS) levels were assessed using flow cytometry. Cellular senescence was assessed using SA-β-galactosidase staining. Lactate dehydrogenase (LDH) activity was quantified to evaluate cellular damage. Differentiation into nucleus pulposus-like cells was assessed using immunofluorescence double staining for CD73 and COL2A1. ELISA was used to measure inflammatory cytokines (TNF-α, IL-1β, IL-4, IL-10) in cell supernatants. miR-199a-3p expression was determined using RT-qPCR. Western blotting was employed to quantify COL2A1, SOX9, and ACAN protein levels, reflecting nucleus pulposus-like differentiation and extracellular matrix (ECM) synthesis capacity. Western blotting was employed to assess pathway activity by analyzing the protein expressions of TGF-β1, Smad2, Smad3, and their phosphorylated forms, P-Smad2 and P-Smad3. In vivo experiments assessed histopathological degeneration through hematoxylin-eosin (HE) and Safranin O-Fast Green staining. Immunohistochemistry (IHC) analyzed COL1A1 and COL2A1 expression levels. RT-qPCR quantified miR-199a-3p expression. Western blotting was employed to assess the expression levels of TGF-β1, Smad2, Smad3, P-Smad2, and P-Smad3 for pathway regulation evaluation.Results: Our experimental results demonstrated that serum containing BSHXF significantly alleviated T-BHP-induced oxidative stress, improved the cellular microenvironment, promoted ADSCs proliferation, and decelerated cellular senescence. Further mechanistic analysis revealed that BSHXF significantly activated the TGF-β/Smad signaling pathway, driving the differentiation of ADSCs into nucleus pulposus-like cells and restoring normal cell cycle progression. Overexpression of miR-199a-3p inhibited the TGF-β/Smad pathway, leading to ECM degradation and elevated expression of inflammatory factors (TNF-α, IL-1β). In contrast, BSHXF restored TGF-β/Smad pathway activity by downregulating miR-199a-3p expression. In vivo experiments demonstrated that miR-199a-3p overexpression exacerbated IDD, characterized by reduced COL2A1 expression, elevated COL1A1 levels, and increased disc fibrosis. BSHXF intervention markedly attenuated IDD progression by downregulating miR-199a-3p expression, reducing disc fibrosis, and effectively restoring collagen expression.Conclusion: BSHXF activated the TGF-β/Smad pathway to promote the differentiation of ADSCs into nucleus pulposus-like cells. It exerted protective effects by alleviating oxidative stress damage, improving the microenvironment, delaying senescence, and enhancing cellular functions. This study is the first to reveal that miR-199a-3p overexpression exacerbates intervertebral disc fibrosis and degeneration. BSHXF restored TGF-β/Smad pathway activity by downregulating miR-199a-3p expression, thereby improving disc structure and function. This integrated approach offers a novel multi-target intervention strategy for IDD, demonstrating significant therapeutic potential.

    复制成功!

    内容已复制到剪贴板

    在线客服
    关闭
    小薇 薇薇 小艾 小奥
    联系销售
    技术支持

    image.png

    月琴艾碧维二维码.jpg