PubMed HealthSearch

PubMed · 7704895

Cholera.

Abstract

Despite more than a century of study, cholera still presents challenges and surprises to us. Throughout most of the 20th century, cholera was caused by Vibrio cholerae of the O1 serogroup and the disease was largely confined to Asia and Africa. However, the last decade of the 20th century has witnessed two major developments in the history of this disease. In 1991, a massive outbreak of cholera started in South America, the one continent previously untouched by cholera in this century. In 1992, an apparently new pandemic caused by a previously unknown serogroup of V. cholerae (O139) began in India and Bangladesh. The O139 epidemic has been occurring in populations assumed to be largely immune to V. cholerae O1 and has rapidly spread to many countries including the United States. In this review, we discuss all aspects of cholera, including the clinical microbiology, epidemiology, pathogenesis, and clinical features of the disease. Special attention will be paid to the extraordinary advances that have been made in recent years in unravelling the molecular pathogenesis of this infection and in the development of new generations of vaccines to prevent it.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

J B Kaper, J G Morris, M M Levine. 1995. Cholera.. https://doi.org/10.1128/cmr.8.1.48

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

KEEP EXPLORING

Related citations

[Genetic immunization--"the biological equivalent of cold fusion"?].

Genetic immunization is a new vaccine technology, where antigen encoding DNA plasmids are directly injected into muscle or skin with the purpose of eliciting an immune response to the gene product. The gene products are correctly glycosylated, folded and expressed by the host cell. This is an advantage when the antigens are difficult to obtain in the desired purity, amount or correctly glycosylated form or when only the genetic sequences are known e.g. HCV. The DNA plasmids are injected into muscles or delivered coated onto gold microparticles into the skin by a particle bombardment device, a "gene gun". Genetic immunization has demonstrated induction of both a specific humoral but also a more broadly reacting cellular immune response in animal models of cancer, mycoplasma, TB, malaria, and many virus infections including influenza and HIV. Thus, the DNA vaccine mimics a live vaccine without the biohazard. Many animal species have responded to genetic immunization and gene vaccine has also been used to induce a desired immuneresponse in patients with cancer and HIV. The technique was first described in 1992 but is developing fast. This review describes the history and principle of the technology, its advantages, problems and possible applications.

Antibody Formation