Tetanus toxoid purification: a case study.
Explore the source record for details and available documents.
Biomedical subjects
Publications and source records attributed to S M Prado.
Explore the source record for details and available documents.
Casein pancreatic digest is the basic bacterial growth medium used for diphtheria, botulinum and tetanus toxin vaccine production. It is known that the variation in the peptide content of the casein digest directly affects final toxin yields. In this study, the identification and sequences of eight peptides, four to eight amino acids in length, of casein pancreatic digestion, which seem to be involved in the enhancement of tetanus toxin production, are described. They all contain one or two residues of proline/molecule and a predominance of hydrophobic amino acid residues. The most active peptides show a general structure of Pro-aromatic-Pro, and this pattern resembled the motif displayed by bradykinin-potentiating peptides found in snake venoms. By analogy with the mechanism of bradykinin potentiation through inhibition of the proteolytic degradation of bradykinin, it is suggested that the six peptides identified here could protect the tetanus toxin from proteolysis, once secreted by the bacteria.
Explore the source record for details and available documents.
Purified samples of tetanus toxin were gradually iodinated by stepwise addition of iodine, up to saturation. The residual capacity of each sample to provoke tetanus was tested by injecting sc 25 Lf (Limit of flocculation) in mice. Toxicity diminished in relation to iodine incorporated, and with iodine-saturated samples, doses of up to 100 Lf in mice, or 500 Lf in guinea-pigs, proved innocuous. Mice immunized with two doses of this toxoid adsorbed on Al(OH)3, and challenged with standard lethal toxin, gained protection against 10 MLD (Minimum Lethal Doses). Guinea-pigs were immunized by a single sc dose of 27.5 Lf with fluid toxoid, and all resisted challenge against 10 MLD applied 30 days later. The mice sera gave strong immunoprecipitation lines against the native toxin. The findings indicated that by controlled iodination of tetanus toxin an effective and inexpensive toxoid can be prepared.
The tetanus purified anatoxin is used in the preparation of multiple immunoprophylactics. WHO (World Health Organization) specifies that the tetanus anatoxin must exhibit a degree of purity greater than or equal to 1,000 Lf/mg protein nitrogen (PN). Today liquid chromatography is a well established technique for the purification of tetanus anatoxin and several different methods are used in production scale. On a small scale, we purified tetanus anatoxin on Sephacryl S-200 High Resolution (gel filtration) and we obtained a successful high-yield purification. On the basis of these results, by combining conventional tangential flow filtration (TFF) at 50,000 N.M.W.L. (Nominal Molecular Weight Limit) ultrafiltration membrane with gel filtration on Sephacryl S-200 High Resolution, we have been able to purify 14 lots of tetanus anatoxin using the Bioprocess System (Amersham Pharmacia Biotech) to a large scale operation. Using this method, 77,401,332 doses of tetanus toxoid were prepared in 14 consecutive lots, supporting the reproducibility and reliability of the method presented here.
The tetanus purified anatoxin is used in the preparation of the tetanus toxoid and multiple vaccines (dT, DT and DTP), all of them strictly following specifications established by the WHO with a minimum antigenic purity equal to 1,000 Lf/mgPN. Aiming to establish more sensitive and accurate methods for purification, samples from four different lots of tetanus anatoxin were submitted to gel filtration in twenty independent trials using the Sephacryl S-100 HR and S-200 HR resins. The Authors were careful to optimize their parameters of performance as to sample volume, elution and selectivity flow for tetanus anatoxin purification, allowing their use in industrial scale. The Sephacryl S-100 HR resin presented the best selectivity, that is, the best separation, allowing a greater linear-flow and, consequently, the best purity index. Satisfactory results were also achieved with the Sephacryl S-200 HR resin after optimization of chromatographic parameters for elution flow and volume of the sample applied. The good results of purification obtained, as well as the high chemical stability, have pointed out both the Sephacryl S-100 HR and S-200 HR resins as equally efficient for industrial production.