Background: Investigation of basic chronic inflammatory mechanisms and development of new therapeutics targeting the respiratory tract requires appropriate testing systems, including those to monitor long- persistence. Human precision-cut lung slices (PCLS) have been demonstrated to mimic the human respiratory tract and have potential of an alternative, ex-vivo system to replace or augment in-vitro testing and animal models. So far, most research on PCLS has been conducted for short cultivation periods (â¤72 h), while analyses of slowly metabolized therapeutics require long-term survival of PCLS in culture. In the present study, we evaluated viability, physiology and structural integrity of PCLS cultured for up to 15 days. Methods: PCLS wer...
Chronic lung diseases (CLDs), such as chronic obstructive pulmonary disease, interstitial lung disea...
Introduction: A number of low-molecular weight (LMW) chemicals at workplaces are involved in the dev...
Research from basic science has remarkably changed the general perception of 3D organotypic tissue m...
The development of systems that are more accurate and time-efficient in predicting safety and effica...
Rationale: Precision-cut lung slices (PCLS) reflect the relevant microanatomy of the respiratory tra...
There is a growing need for appropriate alternatives for animal inhalation studies in order to test ...
Testing inhalable substances regarding respiratory adverse effects in accordance with the three R pr...
Determination of immunotoxicological effects induced by exposure to inhalable chemicals displays a c...
International audience1.We review the specific approaches for lung tissue slices preparation and inc...
Precision-cut lung slices (PCLS) are a novel tool to study cells of the lower airways. As PCLS retai...
Occupational asthma is one of the most common lung diseases in developed countries. Risk assessment ...
Tissue models for respiratory toxicity are mainly focused on prediction of toxicological outcomes su...
Technique of PCLS provides the possibility to address cellular and functional response to allergen s...
The aim of this study was the establishment of precision-cut lung slices (PCLS) as a suitable ex viv...
Research from basic science has remarkably changed the general perception of 3D organotypic tissue m...
Chronic lung diseases (CLDs), such as chronic obstructive pulmonary disease, interstitial lung disea...
Introduction: A number of low-molecular weight (LMW) chemicals at workplaces are involved in the dev...
Research from basic science has remarkably changed the general perception of 3D organotypic tissue m...
The development of systems that are more accurate and time-efficient in predicting safety and effica...
Rationale: Precision-cut lung slices (PCLS) reflect the relevant microanatomy of the respiratory tra...
There is a growing need for appropriate alternatives for animal inhalation studies in order to test ...
Testing inhalable substances regarding respiratory adverse effects in accordance with the three R pr...
Determination of immunotoxicological effects induced by exposure to inhalable chemicals displays a c...
International audience1.We review the specific approaches for lung tissue slices preparation and inc...
Precision-cut lung slices (PCLS) are a novel tool to study cells of the lower airways. As PCLS retai...
Occupational asthma is one of the most common lung diseases in developed countries. Risk assessment ...
Tissue models for respiratory toxicity are mainly focused on prediction of toxicological outcomes su...
Technique of PCLS provides the possibility to address cellular and functional response to allergen s...
The aim of this study was the establishment of precision-cut lung slices (PCLS) as a suitable ex viv...
Research from basic science has remarkably changed the general perception of 3D organotypic tissue m...
Chronic lung diseases (CLDs), such as chronic obstructive pulmonary disease, interstitial lung disea...
Introduction: A number of low-molecular weight (LMW) chemicals at workplaces are involved in the dev...
Research from basic science has remarkably changed the general perception of 3D organotypic tissue m...