Javascript must be enabled to continue!
Accounting for Material Changes in Decellularized Tissue with Underutilized Methodologies
View through CrossRef
Tissue decellularization has rapidly developed to be a practical approach in tissue engineering research; biological tissue is cleared of cells resulting in a protein‐rich husk as a natural scaffold for growing transplanted cells as a donor organ therapy. Minimally processed, acellular extracellular matrix reproduces natural interactions with cells in vitro and for tissue engineering applications in animal models. There are many decellularization techniques that achieve preservation of molecular profile (proteins and sugars), microstructure features such as organization of ECM layers (interstitial matrix and basement membrane) and organ level macrofeatures (vasculature and tissue compartments). While structural and molecular cues receive attention, mechanical and material properties of decellularized tissues are not often discussed. The effects of decellularization on an organ depend on the tissue properties, clearing mechanism, chemical interactions, solubility, temperature, and treatment duration. Physical characterization by a few labs including work from the authors provides evidence that decellularization protocols should be tailored to specific research questions. Physical characterization beyond histology and immunohistochemistry of the decellularized matrix (dECM) extends evaluation of retained functional features of the original tissue. We direct our attention to current technologies that can be employed for structure function analysis of dECM using underutilized tools such as atomic force microscopy (AFM), cryogenic electron microscopy (cryo‐EM), dynamic mechanical analysis (DMA), Fourier‐transform infrared spectroscopy (FTIR), mass spectrometry, and rheometry. Structural imaging and mechanical functional testing combined with high‐throughput molecular analyses opens a new approach for a deeper appreciation of how cellular behavior is influenced by the isolated microenvironment (specifically dECM). Additionally, the impact of these features with different decellularization techniques and generation of synthetic material scaffolds with desired attributes are informed. Ultimately, this mechanical profiling provides a new dimension to our understanding of decellularized matrix and its role in new applications.
Title: Accounting for Material Changes in Decellularized Tissue with Underutilized Methodologies
Description:
Tissue decellularization has rapidly developed to be a practical approach in tissue engineering research; biological tissue is cleared of cells resulting in a protein‐rich husk as a natural scaffold for growing transplanted cells as a donor organ therapy.
Minimally processed, acellular extracellular matrix reproduces natural interactions with cells in vitro and for tissue engineering applications in animal models.
There are many decellularization techniques that achieve preservation of molecular profile (proteins and sugars), microstructure features such as organization of ECM layers (interstitial matrix and basement membrane) and organ level macrofeatures (vasculature and tissue compartments).
While structural and molecular cues receive attention, mechanical and material properties of decellularized tissues are not often discussed.
The effects of decellularization on an organ depend on the tissue properties, clearing mechanism, chemical interactions, solubility, temperature, and treatment duration.
Physical characterization by a few labs including work from the authors provides evidence that decellularization protocols should be tailored to specific research questions.
Physical characterization beyond histology and immunohistochemistry of the decellularized matrix (dECM) extends evaluation of retained functional features of the original tissue.
We direct our attention to current technologies that can be employed for structure function analysis of dECM using underutilized tools such as atomic force microscopy (AFM), cryogenic electron microscopy (cryo‐EM), dynamic mechanical analysis (DMA), Fourier‐transform infrared spectroscopy (FTIR), mass spectrometry, and rheometry.
Structural imaging and mechanical functional testing combined with high‐throughput molecular analyses opens a new approach for a deeper appreciation of how cellular behavior is influenced by the isolated microenvironment (specifically dECM).
Additionally, the impact of these features with different decellularization techniques and generation of synthetic material scaffolds with desired attributes are informed.
Ultimately, this mechanical profiling provides a new dimension to our understanding of decellularized matrix and its role in new applications.
Related Results
Organization of equity accounting process technology
Organization of equity accounting process technology
Introduction. The lack of a clear organization of equity accounting in enterprises with foreign investment causes problems in the formation of accounting and analytical support for...
PERAN TATA KELOLA PERUSAHAAN DALAM MEMODERASI PENGARUH IMPLEMANTASI GREEN ACCOUNTING, CORPORATE SOCIAL RESPONSIBILITY DAN FIRM SIZE TERHADAP KINERJA KEUANGAN
PERAN TATA KELOLA PERUSAHAAN DALAM MEMODERASI PENGARUH IMPLEMANTASI GREEN ACCOUNTING, CORPORATE SOCIAL RESPONSIBILITY DAN FIRM SIZE TERHADAP KINERJA KEUANGAN
This study examines the role of corporate governance in moderating the influence of green accounting disclosure, corporate social responsibility (CSR), and firm size on the financi...
ACCOUNTІNG POLІCY AND ORGANІZATІON: ELEMENTS AND OBJECTS
ACCOUNTІNG POLІCY AND ORGANІZATІON: ELEMENTS AND OBJECTS
In the article is considered the problem of accounting policy of the enterprise, the organization of accounting, and the peculiarities of the impact on them of their objects and el...
PERSEPSI MAHASISWA AKUNTANSI DAN PRAKTISI AKUNTANSI SYARIAH TERHADAP PARADIGMA, ETIKA, DAN KOMPETENSI PRAKTISI AKUNTANSI SYARIAH
PERSEPSI MAHASISWA AKUNTANSI DAN PRAKTISI AKUNTANSI SYARIAH TERHADAP PARADIGMA, ETIKA, DAN KOMPETENSI PRAKTISI AKUNTANSI SYARIAH
This study aims to: (1) to determine the differences in perceptions between students who have and who have followed the accounting courses accounting practitioners of Islamic shari...
Biomechanical scaffolds of decellularized heart valves modified by electrospun polylactic acid
Biomechanical scaffolds of decellularized heart valves modified by electrospun polylactic acid
Enhancing the mechanical properties and cytocompatibility of
decellularized heart valves is the key to promote the application of
biological heart valves. In order to further impro...
ORGANIZATION OF ACCOUNTING AND DISTRIBUTION OF OVERALL PRODUCTION EXPENSES AT STATE ENTERPRISES OF CRIMINAL ENFORCEMENT SERVICE
ORGANIZATION OF ACCOUNTING AND DISTRIBUTION OF OVERALL PRODUCTION EXPENSES AT STATE ENTERPRISES OF CRIMINAL ENFORCEMENT SERVICE
Introduction. The basic principles and normative-legal regulation of the organization of the account, including the administrative (internal) account of the state enterprise are co...
Accounting for cryptocurrencies in international practice
Accounting for cryptocurrencies in international practice
Introduction. With the expansion of the application scope of cryptocurrency, the current enterprise accounting processing and the supervision of relevant departments are facing gre...

