PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
February 26, 2026Microorganisms4 citationsOpen Access

Filamentous Fungi and the Biodeterioration of Organic Cultural Heritage Materials: A Systematic Review of Mechanisms, Risks, and Preventive Conservation Strategies

View Full Paper
GFGiancarlo Angeles FloresRVRoberto VenanzoniSMSabata Martino

Key Points

  • The aim is to synthesize knowledge on how filamentous fungi contribute to the biodeterioration of organic heritage materials and explore preventive strategies.
  • Conducted a systematic review of literature on fungal biodeterioration mechanisms and risks.
  • Analyzed material-specific vulnerabilities and indoor environmental conditions that affect fungal growth.
  • Evaluated advancements in environmental monitoring, microbiological diagnostics, and risk-assessment tools.
  • Identified cellulose and protein-based materials as highly susceptible to fungal colonization.
  • Highlighted the role of indirect climate-related stressors in increasing fungal risk in museums and archives.
  • Proposed a shift from reactive restoration to proactive preventive conservation methods to protect heritage materials.

Abstract

Filamentous fungi are among the most significant biological agents responsible for the biodeterioration of organic cultural heritage materials preserved in archives, libraries, and museums. Cellulose-based substrates—such as paper, papyri, and plant-derived textiles—as well as protein-based materials, including parchment and leather, provide favourable conditions for fungal colonization due to their chemical composition and hygroscopic behaviour. Once activated, fungi contribute to deterioration through a combination of mechanical penetration and biochemical processes, including the secretion of hydrolytic enzymes, organic acids, and pigmented metabolites, which progressively compromise the structural integrity and visual appearance of heritage objects. This review aims to critically synthesize current knowledge on the mechanisms of fungal biodeterioration affecting organic heritage materials, with particular attention to material-specific vulnerabilities, indoor environmental drivers, and implications for preventive conservation. Recent advances in fungal ecology have highlighted the presence of xerophilic and extremotolerant taxa capable of persisting under conditions traditionally considered unfavourable for microbial growth, posing new challenges for conservation management. Rather than attributing biodeterioration directly to global climate change, this review explicitly emphasizes the role of indirect and building-mediated climate-related stressors—such as increased frequency of moisture intrusion events, infrastructure vulnerability, and microclimatic instability within buildings—in shaping fungal risk in indoor heritage environments. The integration of environmental monitoring, microbiological diagnostics, and predictive risk-assessment tools emerges as a key strategy for early detection and mitigation. By consolidating interdisciplinary evidence from microbiology, materials science, and heritage conservation, this work underscores the need to shift from reactive restoration toward anticipatory, risk-based preventive approaches to ensure the long-term preservation of organic cultural heritage materials.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Flores et al. (2026) studied this question.

synapsesocial.com/papers/699fe44895ddcd3a253e873fhttps://doi.org/10.3390/microorganisms14030526
Ask AI
Helpful
Bookmark
Share
View Full Paper