PubMed Health⌕ Search

PubMed · 8126879

[Physiologic factor in intractable bacterial infections].

Abstract

A patient with a bacterial infection is usually cured by his own defense mechanisms against the infectious agents. However, defense mechanisms are frequently damaged by physiologic factors. In this chapter, we described the important physiologic factors which weakened defenses of urinary, respiratory or alimentary tracts and others against bacterial infection. For example, defects of the skin or mucosa is one of the most important factors, because these tissue have natural defense which are low pH, keratin, normal bacterial flora, lysozyme, lactoferrin, secretory IgA and so on. Foreign bodies, urinary or vascular catheters or stones damage normal defenses of mucosa or vascular wall. Many species of bacteria make biofilm, which is consisted of grown bacteria, glycocalyx matrix, fibrin and platelets, around the foreign bodies or catheters. This matrix substance have characteristic of an ion exchange filter which traps aminoglycoside antibiotics, and beta-lactam antibiotics are not effective in the biofilm because of lower growth rate. Furthermore, obstruction of urinary, respiratory or alimentary tracts is also important factor because of decrease of clearance of bacteria from these tissue by urine stream, pilial or bowel movement, and decrease of perfusion of antimicrobial agents from blood stream to the tissue.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

T Matsumoto, K Takahashi. 1994. [Physiologic factor in intractable bacterial infections].. https://pubmed.ncbi.nlm.nih.gov/8126879/

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related citations

Persistent bacterial infections and primary immune disorders.

Mycobacteria, Salmonella and Helicobacter species have all evolved mechanisms to evade host defenses and cause persistent infection in humans. Host control of mycobacteria and Salmonella is largely achieved by the IFN-gamma/IL-12 pathway. Immune disorders affecting this pathway are characterized by disseminated infections with environmental or nontuberculous mycobacteria. Helicobacter is a predominantly extracellular bacterium that uses its remarkable genetic diversity (as well as other mechanisms) in order to evade host defenses. The importance of humoral immunity in containing Helicobacter infections to the mucosal surface is illustrated by the primary immune disorder, X-linked agammaglobulinemia in which patients are prone to chronic bacteremia and skin infections by Helicobacter and related species such as Flexispira and Campylobacter. Exploration of these particular infections in their specific immune defects sheds light on both host and bacterial mechanisms that have implications for pathogenesis and therapy.

Bacterial Infections↗

The importance of vaccination.

We have vaccines for nearly thirty of the more than seventy infectious diseases which are pathogenic for humans. Most of the vaccines, especially those to prevent childhood diseases, are highly effective with a high safety profile. Vaccines are being developed against many of the other bacteria and viruses, and some parasites. Occasionally, a new vaccine has to be withdrawn because of unexpected side effects. Smallpox remains the only infectious disease to have been eradicated. The Global Program to eradicate poliomyelitis initiated in 1988, has unfortunately run into difficulties. A few children immunised with the Sabin oral vaccine fail to clear the virus which can mutate over some years into a pathogenic form and spread rapidly unless large vaccination programs are re-introduced. Of major concern are emerging and re-emerging infectious diseases, especially HIV, for which there is currently no vaccine. Fortunately, new techniques are becoming available making it possible to consider developing vaccines based on inducing strong cell-mediated immune responses to control the agent's replication when antigenic variation in surface antigens (e.g. HIV, influenza) makes classical techniques based on induction of antibody responses less attractive.

Bacterial Infections↗