Macroporous gelatine spheres as culture substrate, transplantation vehicle, and biodegradable scaffold for guided regeneration of soft tissues. In vivo study in nude mice

Summary In the course of development of a new type of filler for the correction of small defects in soft tissues we studied macroporous gelatine spheres as culture substrate, transplantation vehicle, and biodegradable scaffold for guided regeneration of soft tissues in vivo. We injected intradermall...

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Published inJournal of plastic, reconstructive & aesthetic surgery Vol. 60; no. 5; pp. 543 - 555
Main Authors Huss, Fredrik R.M, Junker, Johan P.E, Johnson, Hans, Kratz, Gunnar
Format Journal Article
LanguageEnglish
Published Oxford Elsevier Ltd 01.01.2007
Elsevier
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Abstract Summary In the course of development of a new type of filler for the correction of small defects in soft tissues we studied macroporous gelatine spheres as culture substrate, transplantation vehicle, and biodegradable scaffold for guided regeneration of soft tissues in vivo. We injected intradermally in nude mice gelatine spheres that had either been preseeded with human fibroblasts or preadipocytes, or left unseeded. We compared the extent of regenerated tissue with that found after injections of saline or single-cell suspensions of human fibroblasts or preadipocytes. Routine histological examinations and immunohistochemical staining for von Willebrand factor (indicating neoangiogenesis) were made after 7, 21, and 56 days. Injected saline or single-cell suspensions had no effect. However, a quick and thorough tissue regeneration with developing neoangiogenesis was elicited by the gelatine spheres and the effect of spheres preseeded with preadipocytes surpassed the effect of spheres preseeded with fibroblasts, which in turn surpassed the effect of unseeded gelatine spheres. We suggest that minor soft tissue defects such as wrinkles or creases can be corrected by injection of naked macroporous gelatine spheres, whereas larger defects are best corrected by injection of macroporous gelatine spheres preseeded with fibroblasts, or preadipocytes, or both.
AbstractList In the course of development of a new type of filler for the correction of small defects in soft tissues we studied macroporous gelatine spheres as culture substrate, transplantation vehicle, and biodegradable scaffold for guided regeneration of soft tissues in vivo. We injected intradermally in nude mice gelatine spheres that had either been preseeded with human fibroblasts or preadipocytes, or left unseeded. We compared the extent of regenerated tissue with that found after injections of saline or single-cell suspensions of human fibroblasts or preadipocytes. Routine histological examinations and immunohistochemical staining for von Willebrand factor (indicating neoangiogenesis) were made after 7, 21, and 56 days. Injected saline or single-cell suspensions had no effect. However, a quick and thorough tissue regeneration with developing neoangiogenesis was elicited by the gelatine spheres and the effect of spheres preseeded with preadipocytes surpassed the effect of spheres preseeded with fibroblasts, which in turn surpassed the effect of unseeded gelatine spheres. We suggest that minor soft tissue defects such as wrinkles or creases can be corrected by injection of naked macroporous gelatine spheres, whereas larger defects are best corrected by injection of macroporous gelatine spheres preseeded with fibroblasts, or preadipocytes, or both.
Summary In the course of development of a new type of filler for the correction of small defects in soft tissues we studied macroporous gelatine spheres as culture substrate, transplantation vehicle, and biodegradable scaffold for guided regeneration of soft tissues in vivo. We injected intradermally in nude mice gelatine spheres that had either been preseeded with human fibroblasts or preadipocytes, or left unseeded. We compared the extent of regenerated tissue with that found after injections of saline or single-cell suspensions of human fibroblasts or preadipocytes. Routine histological examinations and immunohistochemical staining for von Willebrand factor (indicating neoangiogenesis) were made after 7, 21, and 56 days. Injected saline or single-cell suspensions had no effect. However, a quick and thorough tissue regeneration with developing neoangiogenesis was elicited by the gelatine spheres and the effect of spheres preseeded with preadipocytes surpassed the effect of spheres preseeded with fibroblasts, which in turn surpassed the effect of unseeded gelatine spheres. We suggest that minor soft tissue defects such as wrinkles or creases can be corrected by injection of naked macroporous gelatine spheres, whereas larger defects are best corrected by injection of macroporous gelatine spheres preseeded with fibroblasts, or preadipocytes, or both.
Author Kratz, Gunnar
Johnson, Hans
Junker, Johan P.E
Huss, Fredrik R.M
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IsPeerReviewed true
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Issue 5
Keywords In vivo
Soft tissue defect
Tissue engineering
Filler
Animal
Guided tissue regeneration
Rodentia
Absorbable
Transplantation
Guidance
Substrate
Regeneration
Tissue
Vertebrata
Mammalia
Treatment
Mouse
Surgery
Graft
Soft tissue
Culture
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Snippet Summary In the course of development of a new type of filler for the correction of small defects in soft tissues we studied macroporous gelatine spheres as...
In the course of development of a new type of filler for the correction of small defects in soft tissues we studied macroporous gelatine spheres as culture...
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SubjectTerms Absorbable Implants
Adipocytes
Animal
Animals
Biocompatible Materials
Biological and medical sciences
Cell Transplantation - methods
Cells, Cultured
Culture Media
Female
Fibroblasts
Filler
Gelatin
Guided tissue regeneration
Guided Tissue Regeneration - methods
Humans
Immunohistochemistry - methods
In Situ Hybridization, Fluorescence - methods
In vivo
Medical sciences
MEDICIN
MEDICINE
Mice
Mice, Nude
Microspheres
Plastic Surgery
Regeneration
Soft tissue defect
Soft Tissue Injuries - pathology
Soft Tissue Injuries - physiopathology
Soft Tissue Injuries - surgery
Surgery (general aspects). Transplantations, organ and tissue grafts. Graft diseases
Tissue Engineering
Title Macroporous gelatine spheres as culture substrate, transplantation vehicle, and biodegradable scaffold for guided regeneration of soft tissues. In vivo study in nude mice
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https://dx.doi.org/10.1016/j.bjps.2005.10.031
https://www.ncbi.nlm.nih.gov/pubmed/17399665
https://search.proquest.com/docview/17701170
https://search.proquest.com/docview/70329782
https://urn.kb.se/resolve?urn=urn:nbn:se:liu:diva-14348
https://urn.kb.se/resolve?urn=urn:nbn:se:uu:diva-162776
Volume 60
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