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Wassergefiltertes Infrarot A (wIRA) als spezielle Form der Wärmestrahlung mit hohem Eindringvermögen in das Gewebe bei geringer thermischer Oberflächenbelastung fördert die Heilung akuter und chronischer Wunden sowohl über thermische und temperaturabhängige als auch über nichtthermische und temperaturunabhängige Effekte. Wassergefiltertes Infrarot A steigert die Temperatur (+2,7°C in einer Gewebetiefe von 2 cm) und den Sauerstoffpartialdruck im Gewebe (+32% in einer Gewebetiefe von 2 cm) und die Gewebedurchblutung. Diese 3 Faktoren sind entscheidend für eine ausreichende Versorgung des Gewebes mit Energie und Sauerstoff und deshalb auch für Wundheilung und Infektionsabwehr. Wassergefiltertes Infrarot A hilft sowohl bei der normalen als auch bei der gestörten Wundheilung, indem es Entzündungsreaktionen und erhöhte Wundsekretion mindert, Infektionsabwehr und Regeneration fördert und Wundschmerzen lindern helfen kann. Die genannten Effekte wurden in insgesamt 7 prospektiven Studien (davon 6 randomisierten kontrollierten Studien) belegt, die meisten mit einem Evidenzgrad von Ia bzw. Ib. Die hier zusätzlich dargestellten Fallbeispiele komplizierter Wundheilungsverläufe illustrieren die belegten Wirkungen von wIRA. Nicht nur in den hier gezeigten 6 Fällen wendeten die Bestrahlungen mit wIRA komplizierte Wundheilungsverläufe zum Besseren und ermöglichten nach ganz unterschiedlich langen Gesamtdauern der Bestrahlungen (in den 6 Fällen: von 51–550 h) und nach verschieden langen Gesamtdauern der Wundpflege, meist nach Transplantation von Spalthautgittern, die Heilung der Wunden. Bei komplizierten Wundheilungsverläufen ersetzt wIRA nicht den Rat und ggf. auch die Behandlung eines erfahrenen plastischen Chirurgen und eines Chirurgen mit der Spezialisierung in septischer Chirurgie. Mit dieser Einschränkung kann wIRA als wertvolle Ergänzung der Behandlung von akuten und chronischen Wunden empfohlen werden.
Objectives: Reconstruction of long segmental bone defects is demanding for patients and surgeons, and associated with long-term treatment periods and substantial complication rates in addition to high costs. While defects up to 4–5 cm length might be filled up with autologous bone graft, heterologous bone from cadavers, or artificial bone graft substitutes, current options to reconstruct bone defects greater than 5 cm consist of either vascularized free bone transfers, the Masquelet technique or the Ilizarov distraction osteogenesis. Alternatively, autologous cell transplantation is an encouraging treatment option for large bone defects as it eliminates problems such as limited autologous bone availability, allogenic bone immunogenicity, and donor-site morbidity, and might be used for stabilizing loose alloplastic implants.
Methods: The authors show different cell therapies without expansion in culture, with ex vivo expansion and cell therapy in local bone defects, bone healing and osteonecrosis. Different kinds of cells and scaffolds investigated in our group as well as in vivo transfer studies and BMC used in clinical phase I and IIa clinical trials of our group are shown.
Results: Our research history demonstrated the great potential of various stem cell species to support bone defect healing. It was clearly shown that the combination of different cell types is superior to approaches using single cell types. We further demonstrate that it is feasible to translate preclinically developed protocols from in vitro to in vivo experiments and follow positive convincing results into a clinical setting to use autologous stem cells to support bone healing.
Heart development is a dynamic process modulated by various extracellular and intracellular cues. Cardiac progenitors in vertebrates such as the zebrafish, migrate over to the midline after differentiation from the epiblast (Bakkers, 2011; Rosenthal & Harvey, 2010; Stainier et al., 1996; Trinh & Stainier, 2004). These progenitors form a cardiac disc at the midline which elongates into the linear heart tube. The differentiation and migration of cardiac precursors is modulated by signaling interactions between cardiac precursor cells and their extracellular environment known as the Extracellular Matrix (ECM). Studies have shown that Cell-ECM interactions play a crucial role in sculpting the heart during early morphogenic events (Davis CL, 1924; Männer & Yelbuz, 2019; Rosenthal & Harvey, 2010). One key factor to these processes is the presence of a specialized ECM known as the Basement Membrane (BM). Extracellular basement membrane proteins such as Fibronectin have been shown to modulate these very early migration processes of the cardiomyocyte progenitors (Trinh & Stainier, 2004). As the heart develops further, the linear heart tube is composed of myocardial cells with an inner endothelial cell lining separated by a layer of thick jelly like substance called the cardiac jelly (Barry A, 1948; Davis CL, 1924; Little et al., 1989). The cardiac jelly also called the cardiac basement membrane, has been shown to regulate distinct developmental events during cardiogenesis. This early CJ contains components of the basal lamina such as laminins, fibronectin, hyaluronan as well as non-fibrillar collagens such as Collagen IV (Little et al., 1989). In this study, I aimed to identify ECM molecules of the Basement Membrane in the heart and identify their role in the modulation of cardiac development and regeneration using the zebrafish as my model organism.
I identified genes belonging to the Zebrafish Matrisome expressed during cardiac developmental and regeneration and performed CRISPR/Cas9 sgRNA mediated mutagenesis. I also developed overexpression tools for these genes.
Agrinp168 mutants exhibited no obvious gross morphology defects during cardiac development and were adult viable. Adult mutants exhibited reduced cardiomyocyte proliferation, but no significant difference in cardiomyocyte dedifferentiation post cardiac cryoinjury.
Decorin overexpression through mRNA injections led to increased myocardial wall thickness and DN dcn overexpression through mRNA injections led to loss of cardiac looping during early development.
Mutants for Small Leucine Rich Proteoglycan (SLRP) prelp generated using CRISPR/Cas9 mutagenesis exhibited cardiovascular defects. Close observation of prelp mutant hearts revealed a reduced heart rate and impaired fractional shortening of the ventricle. prelp mutants exhibited an enlarged atrium at 48 hpf and 72 hpf as well as a reduced ventricle size at 72 hpf. Chamber size in the mutant hearts were enlarged irrespective of contractility of the heart. Mutants showed an increased number of Atrial cardiomyocytes, but no change in cell size. On the molecular level, extracellular Laminin localization was disrupted in prelp mutants along with an increase in thickness and volume of the cardiac HA in the CJ suggesting a potential compensatory role, or retention of immaturity of the cardiac jelly in the prelp mutants. Transcriptomics analysis on the prelp mutant hearts revealed downregulation of ECM organization and ECM-Receptor interaction processes in the mutants. Gene Ontology analysis on prelp mutants hearts transcriptome revealed increased MAPK signaling. Interestingly, genes related to degradation of cardiac HA and maturation of cardiac jelly were downregulated, and genes related to epithelial identity of cardiomyocytes were upregulated. Analysis of the mutant hearts at single cell resolution revealed increased number of mutants exhibiting rounded up cardiomyocytes and loss of apical Podocalyxin. Truncated forms of prelp were generated to identify domain specific roles for Prelp, and reintroduction of N-terminal truncated Prelp into the mutants rescued the basal lamina localization and cardiac jelly volume phenotypes. Myocardium specific re-establishment of prelp expression revealed a marked rescue of the mutant cardiovascular phenotype suggesting that tissue specific expression of prelp is not required so long as Prelp is secreted into the CJ. With these data, I’ve elucidated the role of ECM SLRPs in modulation of cardiac chamber morphogenesis process and regeneration of the heart.
Wassergefiltertes Infrarot A (wIRA) stellt eine spezielle Form der Infrarotstrahlung im Bereich von 780–1400 nm dar, die aufgrund ihrer sehr guten Verträglichkeit in der Medizin zur Prävention und Therapie verwendet wird.
wIRA steigert Temperatur, Sauerstoffpartialdruck und Durchblutung im Gewebe. wIRA mindert indikationsübergreifend Schmerzen, Entzündung und vermehrte Sekretion und verbessert die Infektabwehr und Regeneration, insbesondere auch nach sportlicher Belastung. Zudem kann wIRA als kontaktfreies Verfahren simultan mit Bewegung und Training kombiniert werden.
Die klinische Anwendung von wIRA kann präventiv, therapeutisch, regenerativ oder rehabilitativ erfolgen.
Der hier vorliegenden Übersicht liegen u.a. 6 sportmedizinische Studien mit wIRA zugrunde.
So nahmen beispielsweise 25 Probanden an einer prospektiven, randomisierten, kontrollierten Studie mit stufenweise ansteigender ausbelastender Fußkurbelergometrie teil, an einem Tag mit anschließender Bestrahlung der ventralen Oberschenkelmuskulatur mit wIRA (bzw. am Kontrolltag stattdessen Pause) in Ruhe über 20 Minuten. Am Tag mit Bestrahlung verbesserte sich das Befinden der belasteten Oberschenkelmuskulatur auf einer visuellen Analogskala (umsetzbar in 0–100) von 36 auf 71 signifikant mehr (p=0,0138) als am Kontrolltag in Ruhe ohne Bestrahlung (von 34 auf 54). Erstaunlicherweise erreichte das Befinden nach 20 Minuten Bestrahlung wieder den Ausgangswert vor der Ergometrie von 70. Nach den 20 Minuten Ruhe (mit Bestrahlung bzw. Pause) folgte eine zweite Ergometrie, in der die Leistungsfähigkeit am Tag mit Bestrahlung signifikant weniger (p=0,0128) als am Kontrolltag absank.
Es werden ausführlich die Anwendungsmöglichkeiten von wIRA in der Sport- und Präventivmedizin dargestellt.
Case description: A patient with a Barrett oesophageal carcinoma and a resection of the oesophagus with gastric pull-up developed swallowing disorders 6 years and 2 months after the operation. Within 1 year and 7 months two recurrences of the tumor at the anastomosis were found and treated with combined chemoradiotherapy or chemotherapy respectively. 7 years and 9 months after the operation local tumor masses and destruction were present with no ability to orally drink or eat (full feeding by jejunal PEG tube): quality of life was poor, as saliva and mucus were very viscous (pulling filaments) and could not be swallowed and had to be spat out throughout the day and night resulting in short periods of sleep (awaking from the necessity to spit out). In total the situation was interpreted more as a problem related to a feeling of choking (with food or fluid) in the sense of a functional dysphagia rather than as a swallowing disorder from a structural stenosis.
At that time acetylcysteine (2 times 200 mg per day, given via the PEG tube) and irradiation with water-filtered infrared-A (wIRA), a special form of heat radiation, of the ventral part of the neck and the thorax were added to the therapy. Within 1 day with acetylcysteine saliva and mucus became less viscous. Within 2 days with wIRA (one day with 4 to 5 hours with irradiation with wIRA at home) salivation decreased markedly and quality of life clearly improved: For the first time the patient slept without interruption and without the need for sleep-inducing medication. After 5 days with wIRA the patient could eat his first soft dumpling although drinking of fluids was still not possible. After 2½ weeks with wIRA the patient could eat his first minced schnitzel (escalope).
Following the commencement of wIRA (with typically approximately 90–150 minutes irradiation with wIRA per day) the patient had 8 months with good quality of life with only small amounts of liquid saliva and mucus and without the necessity to spit out. During this period the patient was able to sleep during the night.
Discussion: The main physiological effects of water-filtered infrared-A (wIRA) are: wIRA increases tissue temperature, tissue oxygen partial pressure and tissue perfusion markedly.
The five main clinical effects of wIRA are: wIRA decreases pain, inflammation and exudation/hypersecretion, and promotes infection defense and regeneration, all in a cross-indication manner. Therefore there is a wide range of indications for wIRA.
The effects of wIRA are based on both its thermal effects (relying on transfer of heat energy) and thermic effects (temperature-dependent effects, occurring together with temperature changes) as well as on non-thermal and temperature-independent effects like direct effects on cells, cell structures or cell substances.
Conclusion: Besides in a variety of other indications for wIRA, in cases of swallowing disorders (functional dysphagia) and hypersalivation or hypersecretion of mucus the use of wIRA should be considered as part of the treatment regime for improving a patient’s quality of life.
Einleitung Welche Methoden der Leistungssteigerung gibt es eigentlich im Sport? Von körperlicher Aktivität und Training (mit einer Fülle positiver Wirkungen) über Ernährung und Nahrungsergänzungsmittel bis zu unerlaubten Mitteln. Welche Methoden wirken? Was ist sinnvoll? Was ist erlaubt? Was ist überflüssig? Wo kann der einzelne mit seinen eigenen Erwartungshaltungen dazu beitragen, zum Beispiel unrealistischen Leistungsdruck gegenüber Sporttreibenden und damit eine potentielle Dopingproblematik im Ursprung zu vermeiden? Diese Fragen wollte die Veranstaltung „Leistungssteigerung im Sport - Ursachen, Methoden, Bewertungen, Lösungen“ des Arbeitskreises Sportmedizin der Akademie für ärztliche Fortbildung und Weiterbildung der Landesärztekammer Hessen (Prof. Dr. med. Gerd Hoffmann, Prof. Dr. med. Ingeborg Siegfried) und des Hessischen Ärzteblattes (Prof. Dr. med. Toni Graf-Baumann) in Zusammenarbeit mit der Sektion Breiten-, Freizeit- und Alterssport der Deutschen Gesellschaft für Sportmedizin und Prävention (DGSP), der Verbände mit besonderer Aufgabenstellung, Verbände für Wissenschaft und Bildung und Förderverbände (VmbAWBF) im Deutschen Sportbund (DSB) und dem FIFA Medical Assessment and Research Center (F-MARC) in einer bevölkerungsoffenen Informationsveranstaltung am 09.05.2003 und einer Fort- und Weiterbildungsveranstaltung am 10.05.2003 beantworten. Bericht über die Beiträge - Eröffnung - Ursachen für Leistungssteigerung im Sport und Lösungsansätze (Dr. med. Udo Schreiber) - Training, Übertraining, Regeneration, Rehabilitation - Grundsätzliche Überlegungen unter spezieller Berücksichtigung des Bewegungssystems (Dr. med. Udo Schreiber) - Training, Übertraining, Regeneration, Rehabilitation - sportmedizinisch-internistische Aspekte: Wirkung körperlicher Aktivität auf verschiedene Organsysteme (Prof. Dr. med. Gerd Hoffmann) - Muskulatur und Muskelphysiologie (Dr. med. Udo Schreiber) - Auswirkungen körperlicher Aktivität auf das Immunsystem (Prof. Dr. med. Reinhard Bretzel) - Sport trotz Medikamenten und Medikamente wegen Sport (Prof. Dr. med. Bernd Waldecker) - Ernährung und Sport einschließlich sportartspezifischer und trainingsphasenspezifischer Aspekte (Prof. Dr. med. Gerd Hoffmann) - Flüssigkeitssubstitution im Sport (Diplom-Oecotrophologin Dr. Annette Hauenschild) - Nahrungsergänzungsmittel zur Leistungssteigerung im Sport (Dr. med. Kurt-Reiner Geiß) - Leistungssteigernde Mittel und Methoden im Sport; Grenzen zur verbotenen Leistungssteigerung im Sport - Doping im Sport (Prof. Dr. med. Eide-Dittmar Lübs) - Ethische und rechtliche Aspekte verbotener Leistungssteigerung (Prof. Dr. med. Toni Graf-Baumann) - Brauchen wir leistungssteigernde Verfahren? Lösungsansätze (Dr. med. Dierk Heimann)
Current research on medical biomaterials have shown that the physical and chemical characteristics of biomaterials determine the body inflammatory cellular reaction after their implantation. The aim of this study was to evaluate the individual effects of the physical characteristics over the initial biomaterial-cellular interaction and the inflammatory cellular reaction. For this purpose, an equine-derived collagen hemostatic sponge (E-CHS) was modified by pressing and evaluated using ex vivo, in vitro and in vivo methods.
The E-CHS was pressed by applying constant pressure (6.47± 0.85 N) for 2 min using a sterile stainless-steel cylinder and cut in segments of 1cm2. Subsequently, E-CHS and the pressed equine-derived collagen hemostatic sponge (P-E-CHS) were studied as two independent biomaterials and compared to a control group (CG).
A blood concentrate containing inflammatory cells known as platelet rich fibrin (PRF) was used to mimic the initial biomaterial-cell interaction and to measure the absorption coefficient of the biomaterials to liquid PRF (iPAC). Additionally, the biomaterials were cultivated together with PRF for 3 and 6 days to measure the induction of pro-inflammatory cytokines (TNF-α and IL-8). The results were obtained through enzyme-linked immunosorbent assay (ELISA) and histological methods. PRF cultivated without biomaterials served as the CG. Additionally, the biomaterials were evaluated in vivo using a subcutaneous model in Wistar rats and compared to sham operated animals (CG) representing physiologic wound healing. After 3, 15 and 30 days, the explanted samples were evaluated using histochemical and immunohistochemical (IHC) staining using the following markers: CD68 (pan macrophages), CCR7 (pro-inflammatory macrophages, M1), CD206 (pro-wound healing macrophages, M2) and α-Smooth Muscle Actin (α-SMA; vessel identification).
After the mixture of liquid PRF with both biomaterials for 15 minutes, the ex vivo results showed that E-CHS was penetrated by cells, whereas P-E-CHS was cell-occlusive. Additionally, P-E-CHS induced a higher release of pro-inflammatory cytokines compared to liquid PRF alone (CG) and E-CHS after 3 days (P< 0.05). Although the biomaterial was pressed, the difference of the iPAC value did not show statistical differences. In vivo, the CG induced at day 3 a higher inflammatory response compared to the experimental groups (EG) (P< 0.05). The intergroup comparison showed that P-E-CHS induced a higher presence of macrophages (CD68+/CC7+) compared to E-CHS at day 3 (P< 0.05). Only CD68+/CCR7+ mononuclear cells (MNCs) were observed without multinucleated giant cells (MNGCs). After 15 days, the presence of macrophages (CD68+ P<0.01 /CCR7+ P<0.001 /CD206+ P<0.05) reduced considerably in the CG. On the contrary, the inflammatory response increased in the EGs (CD68+/CCR7+). The intergroup comparison showed that this increment was statistically significant when comparing E-CHS and P-E-CHS to the CG at day 15 (P<0.01 and P< 0.05 respectively). At this time point, a reduced number of MNGCs were observed in the EGs. In the CG no MNGCs were observed. Furthermore, E-CHS showed a faster degradation rate and was fully invaded by cells and vessels formed in its interior region. On the other hand, P-E-CHS remained occlusive to cell penetration and vessels were formed only in the periphery. After 30 days, the cellular reaction shifted to a higher number of M2 macrophages (CD260+) in all groups and a reduced presence of CD68+ and CCR7+ MNCs. Both biomaterials degraded and only small fragments were found in the implantation bed surrounded by MNGCs (CCR7+).
These results are of high clinical relevance and show that changes in biomaterial properties have a significant impact on their interaction with the body. They also serve as insight into the possibility to develop versatile biomaterials with different applications. For example, E-CHs can be applied to support hemostasis in a bleeding alveolar socket and P-E-CHs by being cell occlusive and having a delayed degradation rate can be applied for guided bone and tissue regeneration.
Quarkonia, i.e. bound states of bb‾ and cc‾ quarks, are powerful observables to study the properties of nuclear matter under extreme conditions. The formation of a Quark-Gluon Plasma (QGP), which is predicted by lattice QCD calculations at high temperatures as reached at the LHC energies, has a strong influence on the production and behavior of quarkonia. The latest ALICE results on bottomonium and charmonium production in nucleus−nucleus collisions are presented. This includes measurements of the ϒ(1S) and ϒ(2S) nuclear modification factor (RAA) at forward rapidity and the J/ψ RAA and ν2 as a function of centrality, pT and rapidity in Pb–Pb collisions at sNN=5.02TeV. Also, first results from J/ψ measurements in Xe–Xe collisions at sNN=5.44TeV are presented. Further on, the experimental results are compared to various calculations from theoretical models.