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March 1, 1996Journal of Neuropathology & Experimental Neurology291 citationsOpen Access

Matrix Metalloproteinases in the Normal Human Central Nervous System, Microglial Nodules, and Multiple Sclerosis Lesions

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AMAtsuko MaedaRSRaymond A. Sobel

Key Result

In active multiple sclerosis lesions, the majority of macrophages express MMP-1, -2, -3, and -9, whereas in normal CNS, MMPs are primarily expressed by perivascular and parenchymal microglia.

Study Design

Type

Observational

Structured PICO

P
Population
Human central nervous system (CNS) samples including normal control white matter, multiple sclerosis (MS) lesions (acute, chronic, necrotic), and sporadic microglial nodules
E
Exposure
Immunostaining with antisera to MMP-1, -2, -3 and -9
C
Comparator
Normal control white matter vs. MS lesions
O
Outcome
Cellular localization and levels of MMPssurrogate

MMP expression is dynamically regulated by different cell populations in the CNS, with microglia-derived MMPs mediating normal ECM turnover and macrophage-derived MMPs potentially contributing to blood-brain barrier breakdown and demyelination in MS lesions.

Abstract

Matrix metalloproteinases (MMPs) comprise a family of proteolytic enzymes that are involved in remodeling of the extracellular matrix (ECM) of many tissues. They have been implicated in degradation of vascular basement membranes thereby facilitating leukocyte migration into inflammatory sites. To determine the cellular localization and levels of MMPs in the normal human central nervous system (CNS), multiple sclerosis (MS) lesions, and other conditions, cryostat sections of CNS samples were immunostained with antisera to MMP-1, -2, -3 and -9. In control white matter the principal cells that express the MMPs were perivascular and parenchymal microglia. Cellular MMP expression was also found in sporadic microglial nodules in MS white matter. Most CNS microvessel endothelial cells expressed MMP-3 and -9 but not MMP-1 or -2. The majority of macrophages in active MS and necrotic lesions were MMP-l-, -2-, -3-, and -9-positive whereas chronic MS lesions had fewer MMP-positive macrophages. Small numbers of astrocytes were MMP-2-, -3- and -9-positive in acute and chronic MS lesions. These data suggest that microglia-derived MMPs may mediate turnover of the CNS ECM under normal conditions and in microglial nodules. In sites of CNS tissue injury there is complex and dynamic regulation of MMP expression by different cell populations. In MS lesions MMP-mediated proteolysis may contribute to breakdown of the blood-brain barrier and leukocyte migration into the CNS, in situ immune activation, demyelination, metabolism of bioactive peptides, and the formation of an ECM that does not promote remyelination or axonal repair.

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Cite This Study

Maeda et al. (1996) conducted an observational in Multiple Sclerosis. Multiple sclerosis lesions vs. Normal human central nervous system was evaluated on Cellular localization and levels of MMP-1, -2, -3 and -9. In active multiple sclerosis lesions, the majority of macrophages express MMP-1, -2, -3, and -9, whereas in normal CNS, MMPs are primarily expressed by perivascular and parenchymal microglia.

synapsesocial.com/papers/6a1fe3042583f285a12e3c3ehttps://doi.org/10.1097/00005072-199603000-00005
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Matrix metalloprotease-9 modulates microglial/macrophage responses in murine brain demyelination2026
  2. 2Selected Cytokines and Matrix Metalloproteinases in Pathogenesis and Treatment of Multiple Sclerosis2026
  3. 3Matrix Metalloproteinase-9/Gelatinase B is a Putative Therapeutic Target of Chronic Obstructive Pulmonary Disease and Multiple Sclerosis2008 · 126 citations
  4. 4Pathological extracellular matrix changes in decellularized normal appearing gray matter and subpial multiple sclerosis lesions2026 · 1 citations
  5. 5Matrix Metalloproteinase-9 (MMP-9) in Psoriasis: Integrating Extracellular Matrix Remodeling, Neutrophil–Endothelial Crosstalk and Biomarker Evidence2026