• Title/Summary/Keyword: toxin

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Alternative Methods for Testing Botulinum Toxin: Current Status and Future Perspectives

  • Nepal, Mahesh Raj;Jeong, Tae Cheon
    • Biomolecules & Therapeutics
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    • v.28 no.4
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    • pp.302-310
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    • 2020
  • Botulinum toxins are neurotoxic modular proteins composed of a heavy chain and a light chain connected by a disulfide bond and are produced by Clostridium botulinum. Although lethally toxic, botulinum toxin in low doses is clinically effective in numerous medical conditions, including muscle spasticity, strabismus, hyperactive urinary bladder, excessive sweating, and migraine. Globally, several companies are now producing products containing botulinum toxin for medical and cosmetic purposes, including the reduction of facial wrinkles. To test the efficacy and toxicity of botulinum toxin, animal tests have been solely and widely used, resulting in the inevitable sacrifice of hundreds of animals. Hence, alternative methods are urgently required to replace animals in botulinum toxin testing. Here, the various alternative methods developed to test the toxicity and efficacy of botulinum toxins have been briefly reviewed and future perspectives have been detailed.

Botulinum Toxin Injection Treatment for Facial Spasm -Two Cases Report- (Botulinum Toxin을 이용한 안면 경련의 치험 -증례 보고-)

  • Kim, Chul-Hong;Shin, Sang-Wook;Kim, Hae-Kyu;Kim, Inn-Se
    • The Korean Journal of Pain
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    • v.10 no.2
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    • pp.235-240
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    • 1997
  • Hemifacial spasm is a distressing condition characterized by involuntary, intermittent, unilateral twitching of, all or parts, of the muscles innervated by facial nerve. This ailment is most common among middle-aged women. Neither causative agent nor reliable treatment has been established because etiology of idiopathic hemifacial spasm has remained undefined to date. This report describes two cases of hemifacial spasm treatment by injection of Botulinum toxin. An injection of Botulinum toxin provided relief of hemi facial spasm. Botulinum toxin therapy is an effective and convenient treatment of hemifacialspasm.

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앱시스산에 의해 기공이 닫히는 신호전달과정에서 G-단백질의 분할

  • 이영숙
    • Journal of Plant Biology
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    • v.37 no.4
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    • pp.429-434
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    • 1994
  • 식물 호르몬의 하나인 앱시스산이 식물의 기공을 닫게 하는 과정 중에 phospholipase C가 활성화되어 inositol 1,4,5-trisphosphate(P3)의 양이 증가함이 보고되었다 (Cot and Crain. 1994). 그러나 아직까지 공변세포에서 phospholipase C의 활성을 조절하는 G-단백질에 대한 보고는 없었다. 그러므로 앱시스산에 의한 기공닫힘과정에 G-단백질이 수반되는지를 조사하고자, G-단백질 활성의 저해제인 pertussis toxin과 촉진제인 cholera toxin을 처리하여 보았다. 닭의장풀(Commelina communis L.)의 잎 뒷면으로부터 얻은 온전한 표피층과 잠두(Vicia faba L)의 잎을 부분 분해하여 공변세포만을 남긴 표피층에 pertussis toxin을 처리하였을 때, 앱시스산에 의한 기공닫힘이 부분적으로 억제됨을 관찰하였다. 그러나 cholera toxin의 경우는 아무런 영향이 없었다. 공변세포만을 지닌 표피층에 pertussis toxin을 전처리한 후 앱시스산을 가했을 때, 앱시스산에 의한 IP3 양의 증가 양상이 억제됨을 확인하였다. 이러한 결과들로부터 앱시스산에 의한 기공닫힘과정에는 pertussis toxin-sensitive, phospholipase C-linked G-protein이 관여하고 있음을 알 수 있었다.

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Immunogenicity of botulinum toxin

  • Wee, Syeo Young;Park, Eun Soo
    • Archives of Plastic Surgery
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    • v.49 no.1
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    • pp.12-18
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    • 2022
  • Botulinum toxin treatment is the most common non-surgical cosmetic treatment. Although there are many available treatments using botulinum toxin, their effects are temporary and repeated injections are required. These frequent injections can trigger an immunological response. In addition, botulinum toxin acts as an antigen in the body; thus, its effect disappears progressively due to this immunological reaction, which may cause treatment failure. Active botulinum toxin consists of a core neurotoxin and complexing proteins, the exact effects of which remain unclear. However, the complexing proteins are closely related to the immune response and the formation of neutralizing antibodies. Since neutralizing antibodies can lead to treatment failure, their formation should be prevented. Furthermore, various methods of detecting neutralizing antibodies have been used to predict treatment failure.

The Clinical Effect of Botulinum Toxin in a Patient with Tourette's Syndrome: A Case Report and Review (뚜렛 증후군에서 보툴리눔 톡신의 임상 효과 : 증례보고 및 고찰)

  • Hyun, Jung Keun;Lee, Jun Hyung;Lee, Chang Min;Lim, Myung Ho
    • Journal of the Korean Academy of Child and Adolescent Psychiatry
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    • v.24 no.2
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    • pp.90-95
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    • 2013
  • Botulinum toxin, a neurotoxin, is known to be an inhibitor of cholinergic neuromuscular transmission. Recently, it was reported that the administration of botulinum toxin is effective for the treatment of focal neurological motor disorders such as cervical dystonia, blepharospasm, hemifacial spasm, spasmodic dysphonia, and writer's cramp. Several case studies reported that the botulinum toxin was administered for the treatment of motor tic or vocal tic. It was found that this toxin reduces the frequency and severity of the tic as well as the premonitory urge and symptoms. In our case study, a noticeable decrease of motor tic symptom was observed after an intramuscular injection of 300mg of botulinum toxin in an 18-year-old patient with Tourette's disorder who showed only a little improvement of motor tic and vocal tic symptoms after treatment with antipsychotic drugs for several years. This case is reported in our study and literature survey was undertaken for reviewing similar cases. In our study, an 18-year-old boy diagnosed with Tourette's disorder based on Diagnostic and Statistical Manual of Mental Disorders, fourth edition presented with the following scores : the Clinical Global Impression scale, Yale Global Tic Severity Scale (motor/vocal/severity), Premonitory Urge Score, Korean Attention-Deficit Hyperactivity Disorder Rating scale, and Kovac Depression scale which were performed prior to the treatment were 5, 21/5/50, 100, 17, and 18 points, respectively. Two weeks after the injection of botulinum toxin, the scores were 4, 17/5/40, 50, 16, and 19 points, respectively. Eight weeks after the injection of botulinum toxin, they had become 3, 15/5/30, 25, 16, and 20 points, respectively, which clearly indicates a noticeable decrease of motor tic symptom.

Effects of T-2 Toxin, Zeolite and Mycosorb on Antioxidant Systems of Growing Quail

  • Dvorska, J.E.;Surai, P.F.
    • Asian-Australasian Journal of Animal Sciences
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    • v.14 no.12
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    • pp.1752-1757
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    • 2001
  • The present study was conducted to assess the dietary effect of T-2 toxin on the antioxidant systems of the liver in growing quail and to comparatively evaluate the protective properties of two different mycotoxin-adsorbent additives, Mycosorb and zeolite, in preventing inhibition of the antioxidant system. Four groups of 4 day old quail were formed with 20 birds in each group. The birds were maintained on the floor for the course of the study. The three treatment diets consisted of the basal diet with T-2 toxin added in the form of Fusarium sporotrichioides culture (8.1 mg/kg feed), T-2 toxin (8.1 mg/kg) plus zeolite (30 g/kg feed), and T-2 toxin (8.1 mg/kg) plus Mycosorb (1 g/kg feed). After 30 days of feeding (34 days old) all birds were sacrificed and liver samples for biochemical analyses were collected from five quail in each of the four groups. Antioxidant concentrations were evaluated by HPLC-based methods. Inclusion of T-2 toxin in the quail diet was associated with a significant (p<0.05) decrease in concentrations of all forms of antioxidants studied, including ${\alpha}$- and ${\gamma}$-tocopherols, ascorbic acid, retinol and retinyl esters. At the same time, liver susceptibility to lipid peroxidation significantly (p<0.05) increased. Inclusion of zeolite in the quail diet at the level of 3% was ineffective in preventing antioxidant depletion in the liver by mycotoxicosis. In contrast, Mycosorb in the diet at a 0.1% level was able to significantly inhibit liver antioxidant depletion and as a result decreased lipid peroxidation in the liver. Concentrations of all forms of antioxidants studied were significantly higher in the livers of the quails fed the basal and T-2 toxin/Mycosorb combination in comparison to birds fed the basal with T-2 toxin alone.

Monitoring of Intoxication and Toxin Composition on Wild Mussels (Mytilus corsucus) from Coastal Waters near Koje Island, Korea in 1996 and 1997 (1996년과 1997년의 거제연안 자연산 홍합의 독화 양상과 마비성패독 (PSP)의 모니터링)

  • JEON Joong-Kyun;HAN Myung-Soo
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.31 no.6
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    • pp.817-822
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    • 1998
  • The biweekly monitoring of paralytic shellfish toxin on wild mussels (Mytilus corsucus) was carried out at Jangmok Bay, near Koje Island from Feb, 1996 to Feb. 1997. Toxicity and toxin composition were monitored by means of the mouse bioassay and HPLC. Paralytic shellfish toxin was detected from 27 March to 27 May and 28 November. This is the first record of paralytic shellfish toxin during autumn in Korean waters. Toxin composition between the two different season was similar and was composed of 5$\~$8 toxin fractions as GTXs STXs and PXs. The major toxin component in affected musssels shifted from GTXs in spring to PXs in autumn.

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Immune Response of Alpha-toxin, Capsular Polysaccharide (CPS) and Recombinant Fibronectin-Binding Protein (r-FnBP) of Staphylococcus aureus in Rabbit (황색포도상구균의 Alpha-toxin, Capsular Polysaccharide (CPS)와 재조합 Fibronectin-Binding Protein (r-FnBP) 항원을 이용한 토끼에서의 면역반응)

  • Park, Hee-Myung;Yoo, Han-Sang;Han, Hong-Ryul;Kim, Doo
    • Journal of Veterinary Clinics
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    • v.15 no.2
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    • pp.370-377
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    • 1998
  • 본 연구는 황색포도상구균의 병원성 인자인 alpha-toxin, casular polysaccharides (CPS)와 fibronectin-binding protein (FnBP)을 이용해 실험동물인 토끼에서의 항체가 형성 능과 공격접종 후 방어능에 관한 연구를 위하여 수행되었으며 향후 젖소 유방염 아단위 항원 을 이용한 백신개발 가능성을 탐색하고자 수행되어졌다. 황색포도상구균의 alpha-toxin, capsu18r polysaccharides (CPS)91 fibronectin-binding protein (FnBP) 항원을 이통재 효소면 역측정법을 통한 혈중 IgG 항체가수준을 측정하였으며 alpha-toxin, capsular polysaccharides (CPS)와 fibronectin-binding protein (FnBP)으로 면역시킨 토끼에서 대조군의 토끼보다 혈 중 항체가 수준이 1차 면역 이후 유의성 있게 높았다 (p<0.05). 백신에 사용된 alpha-toxin, capsular polysaccharides (CPS)와 fibronectin-binding protein (FnBP) 항원중 capsular polysaccharides (CPS)가 다른 alpha toxin과 fibronectin-binding protein (FnBP)의 혈중항 체가 수준과 비교하여 볼 때 비교적 낮은 수준이었다. 세균을 혈중으로 공격접종한 후 대조군 과 백신접종군의 혈중내 세균제거율에 있어 대조군에 비해 백신접종군에서 유의성 있게 낮은 균수를 보였다 (p<0.05). 또한 장기내 균수측정실험결과 대조군의 장기보다 백신접종군에서 유의성 있게 세균수가 낮게 출현하였다 (p<0.05). 결론적으로 본 연구결과 황색포도상구균의 3가지 항훤 alpha-toxin, capsular polysaccharide와 재조합 fibronectin binding protein을 이 퐁한 실험동물에서 안단위 유방염 백신은 방어능이 있다고 생각된다.

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Isolation of Wild Killer Yeast from Traditional Meju and Production of Killer Toxin (재래식 메주로부터 야생 Killer 효모의 분리 및 Killer Toxin의 생산)

  • Lee, Jong-Su;Lee, Seong-Hun;Kim, Jae-Ho;Yu, Jin-Yeong
    • KSBB Journal
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    • v.14 no.4
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    • pp.434-439
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    • 1999
  • A wild yeast S-13 which has excellent killer toxin activity to gas-producing yeast of traditional Doenjang and Kochujang was selected among forty seven strains of Meju yeasts and identified as Hansenular capsulata S-13 by investigation of the morphological, cultural and physiological properties. The optimal conditions for the production of killer toxin were investigated. H. capsulata s-13 showed the higest killer toxin activities when it was cultured up to the late-log phase of 36 hr in YEPD medium (pH4.5) at $25^{\circ}C$ H. capsultara S-13 showed killer toxin activities to seven strains of industrial yeasts such as S. cerevisiae, C. veratilis and P. membranaefacieus.

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Genetic Characterization of Two Putative Toxin-Antitoxin Systems on Cryptic Plasm ids from Bacillus thuringiensis Strain YBT-1520

  • Liu, Xiaojin;Zhu, Shufang;Ye, Weixing;Ruan, Lifang;Yu, Ziniu;Zhao, Changming;Sun, Ming
    • Journal of Microbiology and Biotechnology
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    • v.18 no.10
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    • pp.1630-1633
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    • 2008
  • A novel putative toxin-antitoxin segregational stability system named KyAB system was identified in a novel native plasmid pBMB8240 from Bacillus thuringiensis strain YBT-1520, based on sequences homology with other toxin-antitoxin systems, the lethal activity of the KyB putative toxin in Escherichia coli and the stabilizing effect of the kyAB system in Bacillus thuringiensis. Secondarily, the native plasmid pBMB9741 from the same strain was resequenced and the corrected plasmid was named as pBMB7635. Based on sequence homology with the tasAB system and the lethal activity of toxin protein in Escherichia coli, a tasAB-like putative toxin-antitoxin system was identified on pBMB7635.