Visiting Research Associate

Cedars-Sinai

Posted 3 months ago

Internship

Los Angeles, California

In Person

Smart Summary

Responsibilities

The trainee will conduct bench-based research on neural repair, focusing on astrocyte and microglial interactions in CNS injury models. Responsibilities include tissue processing, performing microscopy, and analyzing datasets to investigate molecular signaling pathways.

Qualifications

You have a strong interest in neuroscience and are eager to gain hands-on research experience. You demonstrated proficiency in laboratory techniques such as tissue processing, microscopy, and molecular analysis, or are willing to be trained in these areas.

Must Have Skills for ATS

in situ mRNA hybridization

immunohistochemistry

confocal microscopy

image analysis software

astrocyte culture

microglia culture

Job Description

A leading neuroscience research laboratory within an academic medical center is seeking a highly motivated research trainee to contribute to studies focused on neural repair and glial biology in central nervous system (CNS) injury and disease.

The laboratory investigates the cellular and molecular mechanisms that regulate glial cell responses following CNS injury and how these responses influence regeneration, neuroplasticity, and neurological recovery. Current research efforts examine astrocyte and microglial biology in conditions including spinal cord injury, stroke, multiple sclerosis, traumatic brain injury, and other neurodegenerative disorders.

This role offers hands-on research training within a collaborative and mentorship-driven environment focused on scientific development, experimental design, and biomedical neuroscience research.

The selected trainee will participate in bench-based neural repair research focused on astrocyte-neuron and astrocyte-microglia interactions following spinal cord injury (SCI) and multiple sclerosis (MS).

This position is designed as a structured educational and research opportunity that provides direct training in tissue processing, microscopy, molecular analysis, and quantitative image analysis techniques commonly used in translational neuroscience research.

The trainee will work closely with laboratory investigators and research staff while developing technical and analytical skills applicable to biomedical and neuroscience research careers.

Key Responsibilities

  • Assist with neural repair-related bench research projects
  • Handle and process fixed mouse brain and spinal cord tissue
  • Perform in situ mRNA hybridization and immunohistochemistry
  • Operate scanning confocal microscopy systems
  • Conduct qualitative and quantitative analysis of glial cells and neurons in mouse models of SCI and MS
  • Analyze microscopy datasets using image analysis and quantification software
  • Compare experimental control and treatment groups using quantitative methodologies
  • Participate in primary astrocyte and microglia culture experiments
  • Investigate the effects of secreted signaling proteins on glial molecular function and metabolic plasticity
  • Contribute to data interpretation and scientific discussions within the laboratory

During the first several weeks, the trainee will receive guided instruction in:

  • Mouse brain and spinal cord tissue processing
  • Tissue staining techniques
  • In situ hybridization
  • Immunohistochemistry protocols
  • Laboratory safety and research workflows

Following foundational training, the trainee will learn to:

  • Operate scanning confocal microscopy instrumentation
  • Independently acquire high-resolution microscopy images
  • Prepare and evaluate tissue samples
  • Perform image-based analysis and quantification

As training progresses, the trainee will:

  • Conduct independent experimental analyses
  • Utilize software tools for data characterization and quantification
  • Participate in glial cell culture studies
  • Investigate molecular signaling pathways involved in CNS injury and repair
  • Develop scientific communication and research interpretation skills

Cedars-Sinai

Since its beginning in 1902, Cedars-Sinai has evolved to meet the healthcare needs of one of the most diverse regions in the nation, continually setting new standards for quality and innovation in patient care, research, teaching and community service. Today, Cedars-Sinai is widely known for its national leadership in transforming healthcare for the benefit of patients. Cedars-Sinai receives consistent recognition for our excellence. Our awards include; being named one of America’s Best Hospitals by U.S. News & World Report, receiving the National Research Corporation’s Consumer Choice Award 19 years in a row for providing the highest-quality medical care in Los Angeles, achieving the longest-running Magnet designation for nursing excellence in California, and being recognized as The Advisory Board Company’s 2017 Workplace of the Year, an award Cedars-Sinai has won three years in a row. This annual award recognizes hospitals and health systems nationwide that have outstanding levels of employee engagement. Cedars-Sinai is a leader in the clinical care and research of heart disease, cancer and brain disorders, among other areas. Pioneering research achievements include using cardiac stem cells to repair damaged hearts, developing minimally invasive surgical techniques and discovering new types of drugs to target cancer more precisely. Cedars-Sinai also impacts the future of healthcare through education programs that encompass everything from highly competitive medical residency and fellowship programs to a biomedical science and translational medicine PhD program, advanced training for nurses and educational opportunities for allied health professionals. Most notably, Cedars-Sinai demonstrates a longstanding commitment to strengthening the Los Angeles community through wide-ranging programs that improve the health of its most vulnerable residents.
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