1.A Practical Grading Scale for Predicting Outcomes of Radiosurgery for Dural Arteriovenous Fistulas: JLGK 1802 Study
Hirotaka HASEGAWA ; Masahiro SHIN ; Jun KAWAGISHI ; Hidefumi JOKURA ; Toshinori HASEGAWA ; Takenori KATO ; Mariko KAWASHIMA ; Yuki SHINYA ; Hiroyuki KENAI ; Takuya KAWABE ; Manabu SATO ; Toru SERIZAWA ; Osamu NAGANO ; Kyoko AOYAGI ; Takeshi KONDOH ; Masaaki YAMAMOTO ; Shinji ONOUE ; Kiyoshi NAKAZAKI ; Yoshiyasu IWAI ; Kazuhiro YAMANAKA ; Seiko HASEGAWA ; Kosuke KASHIWABARA ; Nobuhito SAITO ;
Journal of Stroke 2022;24(2):278-287
Background:
and Purpose To assess the long-term outcomes of intracranial dural arteriovenous fistula (DAVF) treated with stereotactic radiosurgery (SRS) alone or embolization and SRS (Emb-SRS) and to develop a grading system for predicting DAVF obliteration.
Methods:
This multi-institutional retrospective study included 200 patients with DAVF treated with SRS or Emb-SRS. We investigated the long-term obliteration rate and obliteration-associated factors. We developed a new grading system to estimate the obliteration rate. Additionally, we compared the outcomes of SRS and Emb-SRS by using propensity score matching.
Results:
The 3- and 4-year obliteration rates were 66.3% and 78.8%, respectively. The post-SRS hemorrhage rate was 2%. In the matched cohort, the SRS and Emb-SRS groups did not differ in the rates of obliteration (P=0.54) or post-SRS hemorrhage (P=0.50). In multivariable analysis, DAVF location and cortical venous reflux (CVR) were independently associated with obliteration. The new grading system assigned 2, 1, and 0 points to DAVFs in the anterior skull base or middle fossa, DAVFs with CVR or DAVFs in the superior sagittal sinus or tentorium, and DAVFs without these factors, respectively. Using the total points, patients were stratified into the highest (0 points), intermediate (1 point), or lowest (≥2 points) obliteration rate groups that exhibited 4-year obliteration rates of 94.4%, 71.3%, and 60.4%, respectively (P<0.01).
Conclusions
SRS-based therapy achieved DAVF obliteration in more than three-quarters of the patients at 4 years of age. Our grading system can stratify the obliteration rate and may guide physicians in treatment selection.
2.Micromolar sodium fluoride mediates anti-osteoclastogenesis in Porphyromonas gingivalis-induced alveolar bone loss.
Ujjal K BHAWAL ; Hye-Jin LEE ; Kazumune ARIKAWA ; Michiharu SHIMOSAKA ; Masatoshi SUZUKI ; Toshizo TOYAMA ; Takenori SATO ; Ryota KAWAMATA ; Chieko TAGUCHI ; Nobushiro HAMADA ; Ikuo NASU ; Hirohisa ARAKAWA ; Koh SHIBUTANI
International Journal of Oral Science 2015;7(4):242-249
Osteoclasts are bone-specific multinucleated cells generated by the differentiation of monocyte/macrophage lineage precursors. Regulation of osteoclast differentiation is considered an effective therapeutic approach to the treatment of bone-lytic diseases. Periodontitis is an inflammatory disease characterized by extensive bone resorption. In this study, we investigated the effects of sodium fluoride (NaF) on osteoclastogenesis induced by Porphyromonas gingivalis, an important colonizer of the oral cavity that has been implicated in periodontitis. NaF strongly inhibited the P. gingivalis-induced alveolar bone loss. That effect was accompanied by decreased levels of cathepsin K, interleukin (IL)-1β, matrix metalloproteinase 9 (MMP9), and tartrate-resistant acid phosphatase, which were up-regulated during P. gingivalis-induced osteoclastogenesis. Consistent with the in vivo anti-osteoclastogenic effect, NaF inhibited osteoclast formation caused by the differentiation factor RANKL (receptor activator of nuclear factor κB ligand) and macrophage colony-stimulating factor (M-CSF). The RANKL-stimulated induction of the transcription factor nuclear factor of activated T cells (NFAT) c1 was also abrogated by NaF. Taken together, our data demonstrate that NaF inhibits RANKL-induced osteoclastogenesis by reducing the induction of NFATc1, ultimately leading to the suppressed expression of cathepsin K and MMP9. The in vivo effect of NaF on the inhibition of P. gingivalis-induced osteoclastogenesis strengthens the potential usefulness of NaF for treating periodontal diseases.
Acid Phosphatase
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drug effects
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Alveolar Bone Loss
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microbiology
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prevention & control
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Animals
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Anti-Bacterial Agents
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therapeutic use
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Anti-Inflammatory Agents
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therapeutic use
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Bacteroidaceae Infections
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microbiology
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prevention & control
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Bone Density Conservation Agents
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therapeutic use
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Cathepsin K
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drug effects
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Interleukin-1beta
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drug effects
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Interleukin-6
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analysis
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Interleukin-8
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drug effects
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Isoenzymes
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drug effects
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Macrophage Colony-Stimulating Factor
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drug effects
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Male
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Matrix Metalloproteinase 9
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drug effects
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Osteoclasts
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drug effects
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Periodontitis
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microbiology
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prevention & control
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Porphyromonas gingivalis
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drug effects
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RANK Ligand
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drug effects
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Rats
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Rats, Sprague-Dawley
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Sodium Fluoride
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therapeutic use
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Tartrate-Resistant Acid Phosphatase
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Transcription Factors
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drug effects
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X-Ray Microtomography
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methods

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