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Zur Durchführung peripherer Nervenblockaden werden im klinischen Alltag nichtselektive Lokalanästhetika verwendet, die neben sensorischen auch motorische Nervenfasern blockieren. Diese Arbeit untersucht und beschreibt Grundlagen für die Verwendung selektiv wirksamer Co-Analgetika. Ziel dieser Arbeit war in diesem Kontext die Analyse der intrazellulären Signalwege, welche nach Applikation von rtPA am peripheren Nerven zur Öffnung der perineuralen Barriere und so zu einer opiat- vermittelten Analgesie führen. Gemäß unserer Hypothese bindet rtPA an den LRP-1- Rezeptor und löst eine intrazelluläre Signalkaskade aus: Erk wird phosphoryliert und inhibiert über bislang unklare Mechanismen die Claudin-1-Transkription. Claudin-1 wird weniger in die Zellmembran eingebaut und/oder verlässt durch Endozytose/ Internalisierung die Zellmembran, was zur Öffnung der perineuralen Barriere führt und den Durchtritt selektiv wirksamer Analgetika erlaubt. In der späteren Phase steht die Analyse der Wiederherstellung der Barrierefunktion der Zellmembran im Vordergrund. Die ist von zentraler Bedeutung um eine Schädigung des Nervens durch das Umgebungsmilieu zu verhindern. Vermutlich wird die Wiederherstellung der Barrierefunktion über den Wnt-Signalweg gesteuert. Die Akkumulation von b-Catenin und Cdx2 führt zu einem erneuten Anstieg der Claudin-1-Transkription. Der Claudin-1- Gehalt steigt in Western Blot-Untersuchungen jedoch bereits zu einem früheren Zeitpunkt in der Zellmembran wieder an. Dies legt nahe, dass weitere von der Transkription unabhängige Mechanismen zur Wiederherstellung der Barrierefunktion beitragen. Eine mögliche Alternative zu rtPA stellt katalytisch inaktives rtPAi dar, welches in Untersuchungen ähnliche Ergebnisse wie rtPA zeigte. Dabei könnte die Verwendung von rtPAi anstatt rtPA pathophysiologisch denkbare Komplikationen wie beispielsweise Blutungen verhindern.
In Versuchen anderer Mitglieder der Arbeitsgruppe wurde die Öffnung der perineuralen Barriere mittels immunhistochemischer und funktioneller Untersuchungen bestätigt. Auch konnten keine akute Neurotoxizität oder Blutungsgefahr beobachtet werden. Somit stellt rtPA in Kombination mit Opioiden eine mögliche Alternative zur Verbesserung der postoperativen Analgesie dar, die jedoch weiterer Untersuchungen hinsichtlich von Nutzen, Risiken und Nebenwirkungen bedarf.
A precious treasure in traditional Chinese medicine (TCM), acupuncture played a vital and irreplaceable role in contributing to people’s health in the thousands of years of Chinese history, and in 2010 was officially added to the “Representative List of the Intangible Cultural Heritage of Humanity” by the United Nations. Because of the side-effects of long-term drug therapy for pain, and the risks of dependency, acupuncture has been widely accepted as one of the most important alternative choice therapies for treating varieties of acute and chronic pain-related disorders. The clinical application and scientific mechanism research of acupuncture have therefore increased intensively in the last few decades. Besides hand acupuncture, other treatment approaches e.g. electroacupuncture (EA) have been widely accepted and applied as an important acupuncture-related technique for acupuncture analgesia (AA) research. The involvement of opioid peptides and receptors in acute AA has been shown via pre-EA application of opioid receptor/peptide antagonists. However, existing publications still cannot illuminate the answer to the following question: how does sustained antinociception happen by EA treatment? The hypothesis of opioid peptide-mediated tonic AA might be able to answer the question.
In the first part of this thesis, the institution of a reproducible acupuncture treatment model as well as the endogenous opioid-related mechanisms was demonstrated. An anatomically-based three-dimensional (3D) rat model was established to exhibit a digital true-to-life organism, accurate acupoint position and EA treatment protocol on bilateral acupoint GB-30 Huantiao. The optimal EA treatment protocol (100 Hz, 2-3 mA, 0.1 ms, 20 min) at 0 and 24 h after induction of inflammatory pain by complete Freund’s adjuvant (CFA) on conscious free-moving rats was then established. EA elicited significant sustained mechanical and thermal antinociception up to 144 h. Post-EA application of opioid receptors (mu opioid receptor, MOR; delta opioid receptor, DOR) antagonists naloxone (NLX) and naltrindole (NTI), or opioid peptide antibodies anti-beta-endorphin (anti-END), met-enkephalin (anti-ENK) or -dynorphin A (anti-DYN) could also block this effect at a late phase (96 h) of CFA post-EA, which suggested opioid-dependent tonic analgesia was produced by EA. Meanwhile, EA also reduced paw temperature and volume at 72-144 h post CFA indicating anti-inflammatory effects. Nociceptive thresholds were assessed by paw pressure threshold (Randall-Sellito) or paw withdrawal latency (Hargreaves) and an anti-inflammatory effect was evaluated by measurement of plantar temperature and volume of inflamed paw.
The second part of the thesis further suggests the correlation between the chemokine CXCL10 (= interferon-gamma inducible protein 10, IP-10) and opioid peptides in EA-induced antinociception. Based on a comprehensive Cytokine Array of 29 cytokines, targeted cytokines interleukin (IL)-1alpha, interleukin (IL)-1beta, tumor necrosis factor (TNF)-alpha, interleukin (IL)-4, interleukin (IL)-13, interferon (IFN)-gamma as well as CXCL10 were selected and quantified by enzyme-linked immunosorbent assay (ELISA), and real time reverse transcription-polymerase chain reaction (RT-PCR) quantification confirmed upregulation of CXCL10 mRNA at both 72 and 96 h. The following hyperalgesic assessment suggested the antinociceptive effect of CXCL10. The double immunostaining localizing opioid peptides with macrophages expressed the evident upregulation of CXCR3-receptor of CXCL10 in EA treated samples as well as the significant upregulation or downregulation of opioid peptides by repeated treatment of CXCL10 or antibody of CXCL10 via behavioral tests and immune staining. Subsequent immunoblotting measurements showed non-alteration of opioid receptor level by EA, indicating that the opioid receptors did not apparently contribute to AA in the present studies. In vitro, CXCL10 did not directly trigger opioid peptide END release from freshly isolated rat macrophages. This might implicate an indirect property of CXCL10 in vitro stimulating the opioid peptide-containing macrophages by requiring additional mediators in inflammatory tissue.
In summary, this project intended to explore the peripheral opioid-dependent analgesic mechanisms of acupuncture with a novel 3D treatment rat model and put forward new information to support the pivot role of chemokine CXCL10 in mediating EA-induced tonic antinociception via peripheral opioid peptides.