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Antiaging ist en vogue. Viele Menschen nutzen diesen Begriff, verstehen darunter jedoch ganz unterschiedliche Dinge. Das Spektrum reicht von Gymnastik für ältere Menschen bis hin zu Maßnahmen der plastischen Chirurgie im Sinne einer »Schönheitschirurgie «, von sinnvollen und richtigen Angeboten bis hin zu Dingen, deren Nähe zur Scharlatanerie aus Sicht der Schulmedizin nicht zu verkennen ist. Dieser Artikel soll einen Überblick geben über die Aspekte des Antiaging, die einer Betrachtung aus Sicht der wissenschaftlich orientierten Medizin zugänglich sind.
Etwa 800 000 Bundesbürger leiden an rheumatoider Arthritis (RA), der häufigsten chronisch-entzündlichen Erkrankung der Gelenke. Obwohl die Forschung in den vergangenen Jahren erhebliche Fortschritte gemacht hat, sind die Ursachen dieser schmerzhaften, bisher unheilbaren Krankheit noch nicht im Einzelnen geklärt. In vielerlei Richtungen diskutiert wird eine Fehlsteuerung des Immunsystems, bei der körpereigene Gewebsmatrix, wie der Gelenkknorpel, von Zellen des Immunsystems angegriffen wird. Die Forschungen der Mediziner, auch der Frankfurter Gruppe, konzentrieren sich weltweit auf die entzündungsfördernden Faktoren, spezielle Zytokine, und die Hemmstoffe dieser Zytokine. Aus diesen Ansätzen resultieren die neuartigen "Biologics": gentechnisch hergestellte monoklonale Antikörper, die natürlich vorkommenden Wirkstoffen entsprechen. Sie richten sich spezifisch gegen bestimmte vom menschlichen Organismus gebildete Zytokine.
Rückenschmerzen bezeichnen die Mediziner inzwischen als Volkskrankheit oder gar als Epidemie der Neuzeit. So leiden zirka 80 Prozent der Deutschen wenigstens einmal in ihrem Leben an Kreuzschmerzen, 35 Prozent davon langfristig. Zirka 20 Millionen Bundesbürger begaben sich beispielsweise 1999 wegen derartiger Beschwerden in ärztliche Behandlung; keine andere Krankheit verursacht so viele Krankenhausaufenthalte. Beträgt die Krankheitsdauer mehr als sechs Monate, kehrt lediglich jeder Zweite in den Arbeitsprozess zurück. Während früher sehr viel schneller gravierende operative Methoden eingesetzt wurden, hat sich in den vergangenen Jahren ein abgestuftes Therapiekonzept entwickelt, das sich sehr differenziert an dem jeweiligen Stadium der Erkrankung ausrichtet.
The large conductance voltage- and Ca2+-activated potassium (BK) channel has been suggested to play an important role in the signal transduction process of cochlear inner hair cells. BK channels have been shown to be composed of the pore-forming alpha-subunit coexpressed with the auxiliary beta-1-subunit. Analyzing the hearing function and cochlear phenotype of BK channel alpha-(BKalpha–/–) and beta-1-subunit (BKbeta-1–/–) knockout mice, we demonstrate normal hearing function and cochlear structure of BKbeta-1–/– mice. During the first 4 postnatal weeks also, BKalpha–/– mice most surprisingly did not show any obvious hearing deficits. High-frequency hearing loss developed in BKalpha–/– mice only from ca. 8 weeks postnatally onward and was accompanied by a lack of distortion product otoacoustic emissions, suggesting outer hair cell (OHC) dysfunction. Hearing loss was linked to a loss of the KCNQ4 potassium channel in membranes of OHCs in the basal and midbasal cochlear turn, preceding hair cell degeneration and leading to a similar phenotype as elicited by pharmacologic blockade of KCNQ4 channels. Although the actual link between BK gene deletion, loss of KCNQ4 in OHCs, and OHC degeneration requires further investigation, data already suggest human BK-coding slo1 gene mutation as a susceptibility factor for progressive deafness, similar to KCNQ4 potassium channel mutations. © 2004, The National Academy of Sciences. Freely available online through the PNAS open access option.
Electric stimulation of the auditory nerve via cochlear implants has made the treatment of sensory deafness possible. Advanced signal processing and stimulation paradigms have led to continuously improved results in speech understanding. Consequently, indication criteria have been extended to patients with profound and severe-to-profound hearing loss and limited speech understanding with conventional acoustic amplification.
Outside this group, a considerable number of patients presents with rather wellpreserved, low frequency hearing of 30-60 dB up to 1 kHz, but severe loss in the mid to high frequency range of more than 60-70 dB. Monosyllabic word scores in these patients do not generally exceed 35%, due to missing consonant information. But, even increasing the audibility of these high frequencies by acoustic amplification still has very limited efficiency for discriminating speech, and therefore, these patients obtain only minor benefit from conventional hearing aids. On the other hand, standard cochlear implantation would carry a high risk of causing complete hearing loss. This situation has led to considering a combination of both modes of stimulation for these patients who are on the borderline between hearing aids and cochlear implant.
In our present model, the surviving low frequency region of the cochlea could still be stimulated acoustically-combined with additional electrical stimulation of the impaired mid and high frequency region of the cochlea.
Several questions still have to be answered with regard to combined electric and acoustic stimulation (EAS). The possible interaction of electric and acoustic stimuli on the different levels off the auditory system is a major issue. Animal experiments clearly demonstrate that tuning properties of auditory neurons, in response to acute acoustic stimulation, are essentially preserved in the presence of electric stimulation even at high levels of electric stimulation, and that chronic electric stimulation of tie intact inner ear does not have a significant effect on the compound action potentials (CAP) thresholds or inner ear function.
In a previous report, we were able to show that this combined F.A.S of the auditory system is possible in humans, and that it has a synergistic effect on speech understanding. Further major issues regard the surgical feasibility and reproducibility of cochlear implantation with the preservation of residual hearing.
Encouraged by our findings, a clinical study was initiated on the application of EAS. So far, seven adults have been included in this study. In addition, one child has been implanted outside the study.
Pathologic data indicate that human cytomegalovirus (HCMV) infection might be associated with the pathogenesis of several human malignancies. However, no definitive evidence of a causal link between HCMV infection and cancer dissemination has been established to date. This study describes the modulation of the invasive behavior of NCAM-expressing tumor cell lines by HCMV. Neuroblastoma (NB) cells, persistently infected with the HCMV strain AD169 (UKF-NB-4AD169 and MHH-NB-11AD169), were added to endothelial cell monolayers and adhesion and penetration kinetics were measured. The 140- and 180-kDa isoforms of the adhesion receptor NCAM were evaluated by flow cytometry, Western blot, and reverse transcriptionpolymerase chain reaction (RT-PCR). The relevance of NCAM for tumor cell binding was proven by treating NB with NCAM antisense oligonucleotides or NCAM transfection. HCMV infection profoundly increased the number of adherent and penetrated NB, compared to controls. Surface expression of NCAM was significantly lower on UKF-NB-4AD169 and MHH-NB-11AD169, compared to mock-infected cells. Western-blot and RT-PCR demonstrated reduced protein and RNA levels of the 140- and 180-kDa isoform. An inverse correlation between NCAM expression and adhesion capacity of NB has been shown by antisense and transfection experiments. We conclude that HCMV infection leads to downregulation of NCAM receptors, which is associated with enhanced tumor cell invasiveness.