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The human microglial HMC3 cell line: where do we stand? A systematic literature review
Cinzia Dello Russo1,2, Natalia Cappoli3, Isabella Coletta4
1Institute of Pharmacology, Università Cattolica del S. Cuore, L.go F Vito 1, 00168, Rome, Italy. cinzia.dellorusso@unicatt.it.
Abstract:
Microglia, unique myeloid cells residing in the brain parenchyma, represent the first line of immune defense within the central nervous system. In addition to their immune functions, microglial cells play an important role in other cerebral processes, including the regulation of synaptic architecture and neurogenesis. Chronic microglial activation is regarded as detrimental, and it is considered a pathogenic mechanism common to several neurological disorders. Microglial activation and function have been extensively studied in rodent experimental models, whereas the characterization of human cells has been limited due to the restricted availability of primary sources of human microglia. To overcome this problem, human immortalized microglial cell lines have been developed. The human microglial clone 3 cell line, HMC3, was established in 1995, through SV40-dependent immortalization of human embryonic microglial cells. It has been recently authenticated by the American Type Culture Collection (ATCC®) and distributed under the name of HMC3 (ATCC®CRL-3304). The HMC3 cells have been used in six research studies, two of which also indicated by ATCC® as reference articles. However, a more accurate literature revision suggests that clone 3 was initially distributed under the name of CHME3. In this regard, several studies have been published, thus contributing to a more extensive characterization of this cell line. Remarkably, the same cell line has been used in different laboratories with other denominations, i.e., CHME-5 cells and C13-NJ cells. In view of the fact that "being now authenticated by ATCC®" may imply a wider distribution of the cells, we aimed at reviewing data obtained with the human microglia cell line clone 3, making the readers aware of this complicated nomenclature. In addition, we also included original data, generated in our laboratory with the HMC3 (ATCC®CRL-3304) cells, providing information on the current state of the culture together with supplementary details on the culturing procedures to obtain and maintain viable cells.
Insights
Human microglia cell line clone 3, HMC3, has multiple names (CHME3, CHME-5, C13-NJ), causing confusion. This review clarifies nomenclature and provides culturing data for this vital research tool.
Area of Science:
- Neuroscience
- Immunology
- Cell Biology
Background:
- Microglia are crucial brain immune cells involved in synaptic regulation and neurogenesis.
- Chronic microglial activation is linked to neurological disorders.
- Studying human microglia is challenging due to limited primary cell availability.
Purpose of the Study:
- To review and clarify the nomenclature of the human microglia cell line clone 3 (HMC3).
- To raise awareness about the various names used for this cell line (e.g., CHME3, CHME-5, C13-NJ).
- To provide original data on the current culture state and maintenance of HMC3 cells.
Main Methods:
- Literature review of studies using human microglia clone 3.
- Analysis of cell line authentication and distribution records.
- Generation of original data on HMC3 cell culture conditions.
Main Results:
- The human microglia cell line clone 3 has been referred to by multiple names across different studies.
- The cell line is now authenticated by ATCC® as HMC3 (ATCC®CRL-3304).
- Original data on HMC3 cell culture and maintenance are presented.
Conclusions:
- Clarifying the nomenclature of HMC3 is essential for accurate interpretation of research findings.
- Standardized naming and detailed culturing protocols will facilitate reproducible research.
- This review aids researchers in correctly identifying and utilizing the HMC3 cell line.
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