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April 23, 2026Sustainable Cities and Society Advances0 citationsOpen Access

Biocolonization of cementitious substrates by mosses (Bryophyta): a review

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IPIgor Machado da Silva ParenteVSVictor Keniti SakanoRPRafael Giuliano Pileggi

Key Points

  • The research aims to analyze advancements in bioreceptive materials for enhancing construction with moss biocolonization.
  • Conducted a bibliometric analysis of 270 articles focused on biocolonization, filtered by Engineering and Materials Science.
  • Examined intrinsic and extrinsic parameters that influence moss growth on cementitious substrates.
  • Mosses can effectively colonize cementitious substrates given appropriate intrinsic properties.
  • A growing trend in publications highlights increasing interest in sustainable construction materials up to 2025.

Abstract

This study aims to systematically analyze the advances on the field of bioreceptive materials for use in the construction industry, especially demonstrating that it is feasible to use mosses for biocolonization of cementitious substrates. The first step is a bibliometric analysis of 270 carefully chosen articles, arranged according to the field of study. Documents relevant to the fields of Engineering and Materials Science were filtered from 113 research and review articles published from 2016 to 2025. Due to environmental concerns, the number of publications on the topic has been rising over time. The examination of these records reveals that a variety of biological entities colonize different substrates in both terrestrial and aquatic environments. In the case of moss biocolonization of cementitious substrates, a range of new technologies used in construction are observed, along with the intrinsic (pH, chemical composition, roughness, porosity, and capillary absorption) and extrinsic (humidity, temperature, and illumination) parameters required to promote biocolonization as well as inoculation and growth monitoring techniques. The main findings show that mosses can colonize cementitious substrates, especially if adequate intrinsic parameters - i.e. bioreceptive characteristics - are provided. The use of this technology in construction is still in the early stages as a promising technology to promote sustainability that it will probably expand and become more accessible.

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Cite This Study

Parente et al. (2026) studied this question.

synapsesocial.com/papers/69e9b71b85696592c86eb174https://doi.org/10.1016/j.scsadv.2026.100062
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