ROS-ID®缺氧/氧化应激检测试剂盒

EnzoLifeSciences的ROS-ID荧光试剂盒用于实时监测活细胞中缺氧和氧化应激,通过高灵敏度探针结合荧光显微镜或流式细胞术。试剂盒包含红色缺氧探针和绿色氧化应激染料,适用于悬浮和贴壁细胞研究。

Enzo Life Sciences的ROS-ID®Hypoxia/Oxidative stress detection kit专门用于使用荧光显微镜或流式细胞术对活细胞(悬浮和贴壁)中的缺氧和氧化应激水平进行功能性检测。该试剂盒包含能够检测缺氧状态(红色)和氧化应激水平(绿色)的荧光探针。

检测缺氧的染料(红色)利用缺氧细胞中存在的硝基还原酶活性,将硝基基团转化为羟胺(NHOH)和氨基(NH2)并释放出荧光探针。

氧化应激检测试剂(绿色)是一种非荧光的、可透过细胞的总ROS检测染料,可与多种活性物质直接反应。可使用配备标准荧光素(490/525 nm)和德克萨斯红(596/670 nm)滤光片的宽场荧光显微镜、共聚焦显微镜或配备蓝色(488 nm)激光的流式细胞仪进行细胞分析。

产品特点

● 高灵敏度和特异性的荧光探针,可用于检测活细胞的缺氧和氧化应激

● 可用于分析贴壁或悬浮细胞系

● 试剂盒内包含整套试剂,包括ROS和缺氧诱导剂

实验示例

ROS-ID®缺氧/氧化应激检测试剂盒——ENZO热销产品

图1. 检测人HeLa和HL-60细胞中的缺氧和氧化应激水平。用缺氧诱导剂(DFO)和ROS诱导剂(pyocyanin)处理细胞。每个象限的数字反映了细胞(群体)的百分比。结果表明,缺氧和氧化应激染料具有特异性。

ROS-ID®缺氧/氧化应激检测试剂盒——ENZO热销产品

图2.使用不同试剂诱导HeLa细胞发生缺氧和氧化应激反应。缺氧探针在缺氧条件下被细胞硝基还原酶转化后观察到红色荧光。

ROS-ID®缺氧/氧化应激检测试剂盒——ENZO热销产品

图3.氧化应激(A)和缺氧(B)检测染料的吸收峰和发射峰分别为504nm/524nm和580nm/595nm。这些染料可以用488nm的氩离子激光器激发,并在流式细胞仪上的FL1通道(氧化应激染料)和FL3通道(缺氧红染料)中检测。

欣博盛生物是Enzo Life Sciences授权金牌代理,如需了解更多详情,请联系~

产品信息

产品货号

ENZ-51042-0125/ ENZ-51042-K500

产品名称

ROS-ID® Hypoxia/Oxidative stress detection kit

别名

ROS / Nitroreductrase

规格

1*125tests/1*500tests

短期保存

-20°C

长期保存

-20°C

试剂盒组分

Hypoxia Red Detection Reagent

Oxidative Stress Detection Reagent (Green)

ROS Inducer (Pyocyanin)

Hypoxia Inducer (DFO)

应用

Flow Cytometry, Fluorescence microscopy, Fluorescent detection, HTS

  

部分产品引用文献

1. Dimethyloxalylglycine (DMOG), a Hypoxia Mimetic Agent, Does Not Replicate a Rat Pheochromocytoma (PC12) Cell Biological Response to Reduced Oxygen Culture: R. Chen, et al.; Biomolecules 12, 541 (2022)

2. Hydrogel microcapsules containing engineered bacteria for sustained production and release of protein drugs: C. Han, et al.; Biomaterials 287, 121619 (2022)

3. Inhibiting autophagy flux and DNA repair of tumor cells to boost radiotherapy of orthotopic glioblastoma: Q. Xu, et al.; Biomaterials 280, 121287 (2022)

4. Intracellular glucose starvation affects gingival homeostasis and autophagy: R. Li, et al.; Sci. Rep. 12, 1230 (2022)

5. Intrinsic radical species scavenging activities of tea polyphenols nanoparticles block pyroptosis in endotoxin-induced sepsis: Y. Chen, et al.; ACS Nano 16, 2429 (2022)

6. Iodinated cyanine dye-based nanosystem for synergistic phototherapy and hypoxia-activated bioreductive therapy: Y. Dong, et al.; Drug Deliv. 29, 238 (2022)

7. Lipoprotein-biomimetic nanostructure enables tumor-targeted penetration delivery for enhanced photo-gene therapy towards glioma: R. Wang, et al.; Bioact. Mater. 13, 286 (2022)

8. Microenvironment-driven sequential ferroptosis, photodynamic therapy, and chemotherapy for targeted breast cancer therapy by a cancer-cell-membrane-coated nanoscale metal-organic framework: W.L. Pan ,et al.; Biomaterials 283, 121559 (2022)

9. Mitochondrial glutathione depletion nanoshuttles for oxygen-irrelevant free radicals generation: A cascaded hierarchical targeting and theranostic strategy against hypoxic tumor: B. Liang, et al.; ACS Appl. Mater. Interfaces 14, 13038 (2022)

10. Multifunctional Nanosnowflakes for T1-T2 Double-Contrast Enhanced MRI and PAI Guided Oxygen Self-Supplementing Effective Anti-Tumor Therapy: Y. Lv, et al.; Int. J. Nanomedicine 17, 4619 (2022)

11. Physiologic flow-conditioning limits vascular dysfunction in engineered human capillaries: K. Haase, et al.; Biomaterials 280, 121248 (2022)

12. Platinum prodrug nanoparticles inhibiting tumor recurrence and metastasis by concurrent chemoradiotherapy: W. Jiang, et al.; J. Nanobiotechnology 20, 129 (2022)

13. Strategy for improving cell-mediated vascularized soft tissue formation in a hydrogen peroxide-triggered chemically-crosslinked hydrogel: S.Y. Wei, et al.; J. Tissue. Eng. 13, 20417314221084096 (2022)

14. A cyclic nano-reactor achieving enhanced photodynamic tumor therapy by reversing multiple resistances: P. Liu, et al.; J. Nanobiotechnology 19, 149 (2021)

15. An albumin-based therapeutic nanosystem for photosensitizer/protein co-delivery to realize synergistic cancer therapy: S.L. Ai, et al.; ACS Appl. Bio. Mater. 4, 4946 (2021)

dwh@PC:~/carla-ros-bridge/catkin_ws$ catkin_make # 或 catkin build(若使用catkin_tools) Base path: /home/dwh/carla-ros-bridge/catkin_ws Source space: /home/dwh/carla-ros-bridge/catkin_ws/src Build space: /home/dwh/carla-ros-bridge/catkin_ws/build Devel space: /home/dwh/carla-ros-bridge/catkin_ws/devel Install space: /home/dwh/carla-ros-bridge/catkin_ws/install Multiple packages found with the same name "carla_ackermann_control": - ros-bridge/carla-ros-bridge/src/ros-bridge/carla_ackermann_control - ros-bridge/carla_ackermann_control Multiple packages found with the same name "carla_ackermann_msgs": - ros-bridge/carla-ros-bridge/src/ros-bridge/carla_ackermann_msgs - ros-bridge/carla_ackermann_msgs Multiple packages found with the same name "carla_ad_agent": - ros-bridge/carla-ros-bridge/src/ros-bridge/carla_ad_agent - ros-bridge/carla_ad_agent Multiple packages found with the same name "carla_ad_demo": - ros-bridge/carla-ros-bridge/src/ros-bridge/carla_ad_demo - ros-bridge/carla_ad_demo Multiple packages found with the same name "carla_common": - ros-bridge/carla-ros-bridge/src/ros-bridge/carla_common - ros-bridge/carla_common Multiple packages found with the same name "carla_manual_control": - ros-bridge/carla-ros-bridge/src/ros-bridge/carla_manual_control - ros-bridge/carla_manual_control Multiple packages found with the same name "carla_msgs": - ros-bridge/carla-ros-bridge/src/ros-bridge/carla_msgs - ros-bridge/carla_msgs Multiple packages found with the same name "carla_ros_bridge": - ros-bridge/carla-ros-bridge/src/ros-bridge/carla_ros_bridge - ros-bridge/carla_ros_bridge Multiple packages found with the same name "carla_ros_scenario_runner": - ros-bridge/carla-ros-bridge/src/ros-bridge/carla_ros_scenario_runner - ros-bridge/carla_ros_scenario_runner Multiple packages found with the same name "carla_ros_scenario_runner_types": - ros-bridge/carla-ros-bridge/src/ros-bridge/carla_ros_scenario_runner_types - ros-bridge/carla_ros_scenario_runner_types Multiple packages found with the same name "carla_spawn_objects": - ros-bridge/carla-ros-bridge/src/ros-bridge/carla_spawn_objects - ros-bridge/carla_spawn_objects Multiple packages found with the same name "carla_twist_to_control": - ros-bridge/carla-ros-bridge/src/ros-bridge/carla_twist_to_control - ros-bridge/carla_twist_to_control Multiple packages found with the same name "carla_walker_agent": - ros-bridge/carla-ros-bridge/src/ros-bridge/carla_walker_agent - ros-bridge/carla_walker_agent Multiple packages found with the same name "carla_waypoint_publisher": - ros-bridge/carla-ros-bridge/src/ros-bridge/carla_waypoint_publisher - ros-bridge/carla_waypoint_publisher Multiple packages found with the same name "carla_waypoint_types": - ros-bridge/carla-ros-bridge/src/ros-bridge/carla_waypoint_types - ros-bridge/carla_waypoint_types Multiple packages found with the same name "pcl_recorder": - ros-bridge/carla-ros-bridge/src/ros-bridge/pcl_recorder - ros-bridge/pcl_recorder Multiple packages found with the same name "ros_compatibility": - ros-bridge/carla-ros-bridge/src/ros-bridge/ros_compatibility - ros-bridge/ros_compatibility Multiple packages found with the same name "rqt_carla_control": - ros-bridge/carla-ros-bridge/src/ros-bridge/rqt_carla_control - ros-bridge/rqt_carla_control Multiple packages found with the same name "rviz_carla_plugin": - ros-bridge/carla-ros-bridge/src/ros-bridge/rviz_carla_plugin - ros-bridge/rviz_carla_plugin dwh@PC:~/carla-ros-bridge/catkin_ws$ source devel/setup.bash bash: devel/setup.bash: 没有那个文件或目录
03-19
<think>嗯,用户在使用catkin_make编译Carla ROS Bridge时遇到了多个同名包的问题,并且在编译后无法找到devel/setup.bash文件。首先,我需要分析这些同名包的原因。可能的情况是用户的工作空间中有重复的包路径,导致编译系统无法正确处理。例如,用户可能克隆了仓库到不同的目录,或者子模块嵌套导致路径重复。 接下来,用户执行source devel/setup.bash时提示文件不存在,这通常意味着编译没有成功完成,因此devel目录没有被正确生成。编译失败的原因很可能就是前面提到的重复包问题,导致catkin_make中途停止,从而没有生成必要的setup文件。 需要指导用户如何解决这些重复包的问题。首先应该检查工作空间中的src目录,查找是否有重复的包路径。例如,用户可能同时有ros-bridge/carla-ros-bridge/src/ros-bridge/...和ros-bridge/...这样的路径,这会导致catkin工具发现多个同名包,进而报错。 解决方法包括清理重复的包,可能通过移除重复的目录或调整工作空间的结构。另外,用户可能需要检查是否正确地克隆了子模块,或者是否有误操作导致包被复制到错误的位置。建议用户手动删除重复的包目录,然后重新运行catkin_make,确保编译过程顺利完成,从而生成devel/setup.bash文件。 此外,还需要提醒用户在编译成功后正确source环境变量,以确保ROS能够识别新编译的包。如果用户使用catkin build命令,可能需要使用不同的目录结构,但当前问题主要是重复包导致的编译失败,因此重点应放在解决路径冲突上。</think>在运行`catkin_make`时出现多个同名ROS包冲突的问题,这会导致编译失败。以下是逐步解决此问题的方法: --- ### **问题分析** 错误信息显示**同一工作空间(workspace)中存在多个同名ROS包**,例如: ``` Multiple packages found with the same name "carla_ackermann_control": - ros-bridge/carla-ros-bridge/src/ros-bridge/carla_ackermann_control - ros-bridge/carla_ackermann_control ``` 原因是工作空间的`src`目录中存在重复的包路径。这通常由以下原因导致: 1. **错误地克隆仓库**:可能重复克隆了Carla ROS Bridge的子模块。 2. **子模块嵌套问题**:`carla-ros-bridge`可能自身包含子模块,与其他手动克隆的包冲突。 --- ### **解决方案** #### **步骤1:清理重复的包** 进入工作空间的`src`目录,手动删除重复的包: ```bash cd ~/carla-ros-bridge/catkin_ws/src # 删除所有重复路径的包(根据错误提示选择保留一个) # 例如:保留 "ros-bridge/carla-ros-bridge/src/ros-bridge/carla_ackermann_control" # 删除 "ros-bridge/carla_ackermann_control" rm -rf ros-bridge/carla_ackermann_control rm -rf ros-bridge/carla_ackermann_msgs # 其他重复包同理 ``` #### **步骤2:确保子模块正确初始化** 如果使用了Git子模块,需重新初始化: ```bash cd ~/carla-ros-bridge/catkin_ws/src git submodule update --init --recursive ``` #### **步骤3:重新编译** 清理之前的编译缓存并重新编译: ```bash cd ~/carla-ros-bridge/catkin_ws catkin clean -y # 若使用catkin_tools catkin_make ``` #### **步骤4:Source环境变量** 编译成功后,`devel/setup.bash`会自动生成: ```bash source devel/setup.bash ``` --- ### **注意事项** 1. **路径规范**:确保`src`目录中的包路径唯一,避免嵌套或重复克隆。 2. **子模块管理**:若从Git仓库克隆,建议使用`git submodule`统一管理依赖。 3. **编译失败排查**:若编译仍失败,检查终端输出的具体错误信息(如依赖缺失)。 --- ### **补充说明** - **`catkin_make` vs `catkin build`**:若使用`catkin_tools`工具链,建议使用`catkin build`,它能更好地处理复杂包依赖。 - **工作空间结构**:标准ROS工作空间结构应确保所有包位于`src`目录下,且无重复名称。
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