| Literature DB >> 35345900 |
Pranidhi Baddam1, Francy Bayona-Rodriguez1, Sandra M Campbell2, Hamdy El-Hakim3, Daniel Graf1.
Abstract
OBJECTIVE: Nasal septum cartilage is a hyaline cartilage that provides structural support to the nasal cavity and midface. Currently, information on its cellular and mechanical properties is widely dispersed and has often been inferred from studies conducted on other cartilage types such as the knee. A detailed understanding of nasal cartilage properties is important for several biological, clinical, and engineering disciplines. The objectives of this scoping review are to (1) consolidate actual existing knowledge on nasal cartilage properties and (2) identify gaps of knowledge and research questions requiring future investigations.Entities:
Keywords: cartilage growth; extracellular matrix; mechanical properties; nasal cartilage composition; nasal septum
Mesh:
Year: 2022 PMID: 35345900 PMCID: PMC9137313 DOI: 10.1177/19476035221087696
Source DB: PubMed Journal: Cartilage ISSN: 1947-6035 Impact factor: 3.117
Figure 1.Anatomy of the nasal septum cartilage.
Figure 2.Understanding nasal cartilage properties will benefit an interdisciplinary team of individuals.
Preferred Reporting Items for Systematic Review and Meta Analyses Statement (PRISMA-S) Checklist.
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| 1 | Name each individual database searched, stating the platform for each. | Methods |
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| 2 | If databases were searched simultaneously on a single platform, state the name of the platform, listing all of the databases searched. (Cochrane Library (Reviews and Trials) | Methods |
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| 3 | List any study registries searched. | Methods |
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| 4 | Describe any online or print source purposefully searched or browsed (e.g., tables of contents, print conference proceedings, web sites), and how this was done. | N/A |
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| 5 | Indicate whether cited references or citing references were examined, and describe any methods used for locating cited/citing references (e.g., browsing reference lists, using a citation index, setting up email alerts for references citing included studies). | N/A |
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| 6 | Indicate whether additional studies or data were sought by contacting authors, experts, manufacturers, or others. | N/A |
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| 7 | Describe any additional information sources or search methods used. | N/A |
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| 8 | Include the search strategies for each database and information source, copied and pasted exactly as run. |
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| 9 | Specify that no limits were used, or describe any limits or restrictions applied to a search (e.g., date or time period, language, study design) and provide justification for their use. | Methods |
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| 10 | Indicate whether published search filters were used (as originally designed or modified), and if so, cite the filter(s) used. | N/A |
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| 11 | Indicate when search strategies from other literature reviews were adapted or reused for a substantive part or all of the search, citing the previous review(s). | N/A |
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| 12 | Report the methods used to update the search(es) (e.g., rerunning searches, email alerts). | Methods |
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| 13 | For each search strategy, provide the date when the last search occurred. |
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| 14 | Describe any search peer review process. | N/A |
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| 15 | Document the total number of records identified from each database and other information sources. |
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| 16 | Describe the processes and any software used to deduplicate records from multiple database searches and other information sources. | Methods |
Rethlefsen ML, Kirtley S, Waffenschmidt S, Ayala AP, Moher D, Page MJ, Koffel JB, PRISMA-S Group. Last updated February 27, 2020.
Figure 3.Conceptual framework of the scoping review.
Figure 4.Preferred Reporting Items for Systematic Review and Meta Analyses (PRISMA) flow chart outlining the scoping review process.
Inclusion and Exclusion Criteria Used in the Review.
| Criteria | Inclusion Criteria | Exclusion Criteria |
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| English or English translated articles | Non-English articles with no English translation |
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| All articles published | None |
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| Yes | None |
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| Original Research, | Tissue engineering using nasal chondrocytes |
Figure 5.Descriptive information of articles categorized into three nasal cartilage categories. (Left panel) 39 articles discussed growth properties of the nasal septum cartilage while 23 commented on extracellular matrix properties and 19 articles assessed mechanical properties. (Right panel) Articles categorized based on the 3e cartilage properties and graphed as a function of time and geographical location. Note articles published in 2021 were added to 2011-2020.
Articles That Investigated Growth Properties of the Nasal Cartilage.
| Author | Year | Title | Country |
|---|---|---|---|
| Al Dayeh and Herring | 2014 | Cellular proliferation in the nasal septal cartilage of juvenile minipigs | USA |
| Al Dayeh | 2013 | Real-time monitoring of the growth of the nasal septal cartilage and the nasofrontal suture | USA |
| Amano | 2020 | Indian hedgehog in craniofacial neural crest cells links to skeletal malocclusion by regulating associated cartilage formation and gene expression | Japan |
| Ashique | 2002 | Signaling via type IA and type IB bone morphogenetic protein receptors (BMPR) regulates intramembranous bone formation, chondrogenesis and feather formation in the chicken embryo | Canada |
| Babula | 1970 | Role of cartilaginous nasal septum in midfacial growth | USA |
| Bruintjes | 1996 | Review of the functional anatomy of the cartilages and muscles of the nose | Netherlands |
| Burdi | 1965 | Sagittal growth of the nasomaxillary complex during the second trimester of human prenatal development | USA |
| Carnevale and Tatum | 1996 | Chondrocyte volume fraction distribution in porcine septal cartilage: An initial stereoscopic evaluation | USA |
| Catala and Johnston | 1980 | Interstitial growth of septal cartilage in the young albino-rat | USA |
| Copray | 1986 | Growth of the nasal septal cartilage of the rat in vitro | Netherlands |
| Daultrey | 2018 | The Caucasian Nasal Septum: An In Vivo Computed Tomography Study | UK |
| Delaire and Precious | 1987 | Interaction of the Development of the Nasal Septum the Nasal Pyramid and the Face | France |
| Diewert | 1980 | Differential Changes in Cartilage Cell Proliferation and Cell Density in the Rat Cranio Facial Complex during Secondary Palate Development | Canada |
| Elsaesser | 2016 | Characterization of a migrative subpopulation of adult human nasoseptal chondrocytes with progenitor cell features and their potential for in vivo cartilage regeneration strategies | Germany |
| Adegani | 2013 | A comparison of pluripotency and differentiation status of four mesenchymal adult stem cells | Iran |
| Foster and Holton | 2016 | Variation in the Developmental and Morphological Interaction Between the Nasal Septum and Facial Skeleton | USA |
| Goergen | 2017 | Morphological interaction between the nasal septum and nasofacial skeleton during human ontogeny | USA |
| Granstrom and Magnusson | 1992 | Histochemical analysis of enzymes involved in the formation and metabolism of the nasal septal cartilage | Sweden |
| Grymer and Bosch | 1997 | The nasal septum and the development of the midface. A longitudinal study of a pair of monozygotic twins | Denmark |
| Hall and Precious | 2013 | Cleft lip, nose, and palate: the nasal septum as the pacemaker for midfacial growth | Canada |
| Holton | 2011 | Nasal Septal and Premaxillary Developmental Integration: Implications for Facial Reduction in Homo | USA |
| Holton | 2012 | Nasal septal and craniofacial form in European- and African-derived populations | USA |
| Howe | 2004 | The growth of the nasal septum in the 6-9 week period of fetal development—Warfarin embryopathy offers a new insight into prenatal facial development | Australia |
| Hwang | 2010 | Mapping Thickness of Nasal Septal Cartilage | Korea |
| Kaucka | 2018 | Signals from the brain and olfactory epithelium control shaping of the mammalian nasal capsule cartilage | Austria |
| Kim | 2008 | Analysis of the Development of the Nasal Septum according to Age and Gender Using MRI | Korea |
| Kim | 2010 | Anatomical Variation of the Nasal Septum: Correlation Among Septal Components | Korea |
| Kvinnsland | 1974 | Partial resection of cartilaginous nasal-septum in rats—its influence on growth | Norway |
| Long | 1968 | Regional Variations in Chondrocyte Proliferation in the Cartilaginous Nasal Septum of the Growing Rabbit | USA |
| Marulanda | 2017 | Matrix Gla protein deficiency impairs nasal growth, causing midface hypoplasia | Canada |
| Melsen | 1976 | Histological Analysis of the Post Natal Development of the Nasal Septum | Denmark |
| Pavlov | 2003 | Chondrogenic differentiation during midfacial development in the mouse: In vivo and in vitro studies. | France |
| Searles | 1977 | A Radioautographic Study of Chondrocytic Proliferation in Nasal Septal Cartilage of the New Born Rat | USA |
| Seltzer | 1963 | The problem of the nasal septum | USA |
| Van Loosen | 1988 | The Nasal Septal Cartilage in the Newborn | Netherlands |
| Van Loosen | 1997 | Nasal cartilage maturation assessed by automated computer-assisted image analysis | UK |
| Vetter | 1983 | Growth-activity in human septal cartilage—age dependent incorporation of labeled sulfate in different anatomic locations | Germany |
| Vetter | 1984 | Postnatal-growth of the human septal cartilage—preliminary report | Germany |
| Vidic | 1972 | The Structure and Pre Natal Morphogenesis of the Nasal Septum in the Rat | USA |
Articles That Investigated Extracellular Matrix Properties of the Nasal Cartilage.
| Author | Year | Title | Country |
|---|---|---|---|
| Aksoy | 2011 | Structural characteristics of septal cartilage and mucoperichondrium | Turkey |
| Ayad and Weiss | 1984 | A New Look at Vitreous Humor Collagen | UK |
| Boukla | 1990 | Purification and Properties of Bovine Nasal Hyaline Cartilage Collagenase | Greece |
| Evans | 1983 | Localization of Collagen Types and Fibronectin in Cartilage by Immuno Fluorescence | UK |
| Glant | 1977 | The Localization of Proteo Glycans and Glyco Proteins in the Hyaline Cartilage | Hungary |
| Holden | 2008 | Human Nasal Cartilage Ultrastructure: Characteristics and Comparison Using Scanning Electron Microscopy | USA |
| Kim | 2018 | Characteristics of Nasal Septal Cartilage-Derived Progenitor Cells during Prolonged Cultivation | Korea |
| Lee | 2013 | Age-Related Histologic Changes in Human Nasal Cartilage | USA |
| Neuman | 2013 | A compositional analysis of cadaveric human nasal septal cartilage | USA |
| Pelttari | 2017 | Nasal chondrocytes as a neural crest-derived cell source for regenerative medicine | Switzerland |
| Perin | 1978 | Comparative Studies on Human and Bovine Nasal Cartilage Proteo Glycan Complex Components | France |
| Riedler | 2017 | Age-Related Histologic and Biochemical Changes in Auricular and Septal Cartilage | USA |
| Rotter | 2001 | Age dependence of cellular properties of human septal cartilage—Implications for tissue engineering | USA |
| Sasano | 1992 | Distribution of type I collagen, type II collagen and PNA binding glycoconjugates during chondrogenesis of three distinct embryonic cartilages | USA |
| Sasano | 2001 | Gene and protein expressions of type I collagen are regulated tissue-specifically in rat hyaline cartilages in vivo | Japan |
| Shafiee | 2011 | Nasal Septum-Derived Multipotent Progenitors: A Potent Source for Stem Cell-Based Regenerative Medicine | Iran |
| Takahashi | 2012 | Histological study of the nasal septal cartilage in BALB/c-bm/bm mouse which spontaneously induces malocclusion | Japan |
| Theocharis | 2002 | Isolation and characterization of matrix proteoglycans from human nasal cartilage—Compositional and structural comparison between normal and scoliotic tissues | Greece |
| Ustunel | 2003 | Immunohistochemical distribution patterns of collagen type II, chondroitin 4-sulfate, laminin and fibronectin in human nasal septal cartilage | Turkey |
| Wan | 2018 | A six-gene expression toolbox for the glands, epithelium and chondrocytes in the mouse nasal cavity | USA |
| Wiggenhauser | 2018 | The distribution patterns of COMP and matrilin-3 in septal, alar and triangular cartilages of the human nose | Germany |
| Yu | 2017 | Expression of Noggin and Gremlin1 and its implications in fine-tuning BMP activities in mouse cartilage tissues | USA |
| Zhang | 2012 | Expression of dentine sialophosphoprotein in mouse nasal cartilage | USA |
Articles That Investigated Mechanical Properties of the Nasal Cartilage.
| Author | Year | Title | Country |
|---|---|---|---|
| Al Dayeh | 2009 | Deformation of Nasal Septal Cartilage During Mastication | USA |
| Alkan | 2011 | Tensile Characteristics of Costal and Septal Cartilages Used as Graft Materials | Turkey |
| Al Dayeh and Herring | 2014 | Compressive and tensile mechanical properties of the porcine nasal septum | USA |
| Bos | 2018 | Structural and Mechanical Comparison of Human Ear, Alar, and Septal Cartilage | Netherlands |
| Caffrey | 2013 | Flexural Properties of Native and Tissue-Engineered Human Septal Cartilage | USA |
| Colombo | 2013 | Mechanical behavior of bovine nasal cartilage under static and dynamic loading | Switzerland |
| Correro-Shahgaldian | 2016 | Properties and Mechanobiological Behavior of Bovine Nasal Septum Cartilage | Switzerland |
| Flam | 1974 | The Tensile and Flexural Properties of Bovine Nasal Cartilage | USA |
| Grellmann | 2006 | Determination of strength and deformation behavior of human cartilage for the definition of significant parameters | Germany |
| Iwanaga | 2018 | Distribution of the internal nasal branch of the infraorbital nerve to the nasal septum: Application to rhinoplasty | USA |
| Reuther | 2012 | In vivo oxygen tension in human septal cartilage increases with age | USA |
| Richmon | 2006 | Compressive biomechanical properties of human nasal septal cartilage | USA |
| Richmon | 2005 | Tensile biomechanical properties of human nasal septal cartilage | USA |
| Rotter | 2002 | Age-related changes in the composition and mechanical properties of human nasal cartilage | USA |
| Tekke | 2014 | Importance of nasal septal cartilage perichondrium for septum strength mechanics: a cadaveric study | Turkey |
| Tsao and Chuah | 1988 | Development of Bone-Like Substance in Cartilaginous Rat Nasal Septum Under Experimental Conditions | Hong Kong |
| Westreich | 2007 | Defining nasal cartilage elasticity—Biomechanical testing of the tripod theory based on a cantilevered model | USA |
| Xia | 2012 | Anisotropic properties of bovine nasal cartilage | USA |
| Youn | 2000 | Optical and thermal properties of nasal septal cartilage | USA |
Articles That Investigated More Than One Nasal Cartilage Property.
| Author | Year | Title | Country | Cartilage Property |
|---|---|---|---|---|
| Baddam | 2021 | Nasal Septum Deviation as the Consequence of BMP-Controlled Changes to Cartilage Properties | Canada | Growth and Extracellular Matrix Properties |
| Bong-Soo | 2021 | Septal chondrocyte hypertrophy contributes to midface deformity in a mouse model of Apert syndrome | South Korea | Growth and Extracellular Matrix Properties |
| Baddam | 2021 | Histological and molecular characterization of the growing nasal septum in mice | Canada | Growth and Extracellular Matrix Properties |
| Fertuzinhos | 2020 | Thermo-Mechanical Behavior of Human Nasal Cartilage | Portugal | Extracellular Matrix and Mechanical Properties |
| Naumann | 2002 | Immunochemical and mechanical characterization of cartilage subtypes in rabbit | USA | Extracellular Matrix and Mechanical Properties |
Figure 6.Species used to investigate nasal cartilage properties.