Search PubMedSearch

Biomedical subjects

L Hayflick

Publications and source records attributed to L Hayflick.

At least 19 recordsLinked to original sources

Progress in cytogerontology.

The finite in vitro lifetime of cultured normal cells is interpreted to be aging at the cellular level. In addition to the inverse relationship between donor age and population doubling potential (PDP), a number of biochemical and physiological increments and decrements occur prior to the cessation of cell division. The reconstruction of replicating normal human cells from the nuclei of "young" cells and the cytoplasm of "old" cells (and the reverse) suggests that the nucleus governs PDP. Several morphological changes were found to occur in late phase III cells held for up to one year in culture. Autoradiography studies show that (1) a cell population may be composed of several subpopulations, each of which is at a different stage in its life history and (2) lipid synthesis is affected much less as cells age than is DNA, RNA and protein synthesis. Changes occurring in the genetic program of individual cells seem to be the most tenable hypothesis to explain fundamental causes of aging.

Aging

DNA synthesis in the human diploid cell strain WI-38 during in vitro aging: an autoradiography study.

The percent of cells in a WI-38 cell population which did not incorporate tritiated thymidine (3H-TdR) was determined by autoradiography from the measurement of percent nonlabeled nuclei and the ratio of total cell numbers at the initiation and at the termination of exposure to 3H-TdR. This percentage was minimally affected by factors influencing the proliferation of labeled cells, but was dependent on the population doubling level (PDL). The results suggest the presence, in a proliferating WI-38 population, of subpopulation(s) with an extremely slow rate of S phase entrance. The parameter was useful in estimating, empirically, the doubling potential of a cell population.

Autoradiography

Senescent human diploid cells in culture: survival, DNA synthesis and morphology.

Senescent human diploid cell cultures (WI-38 and WI-26) were studied during Phase III for survival time, ability to synthesize DNA, and nuclear morphology. Periodic transfers made during a 6-month period of Phase III showed that cultures were maintained with only slight variations in cell number. No sign of spontaneous acquisition of infinite proliferative potential was observed. The increase in the number of multinucleated cells found during the period of observation showed that progressive changes occur in Phase III. A certain proportion of cells maintained the ability to incorporate tritiated thymidine throughout the period of observation.

Anaphase

The cell biology of aging.

Cultured normal human and animal cells are predestinued to undergo irreversible functional decrements that mimick age changes in the whole organism. When normal human embryonic fibroblasts are cultured in vitro, 50 +/- 10 population doublings occur. This maximum potential is diminished in cells derived from older donors and appears to be inversely proportional to their age. The 50 population doubling limit can account for all cells produced during a lifetime. The limitation on doubling potential of cultured normal cells is also expressed in vivo when serial transplants are made. There may be a direct correlation between the mean maximum life spans of several species and the population doubling potential of their cultured cells. A plethora of functional decrements occur in cultured normal cells as they approach their maximum division capability. Many of these decrements are similar to those occurring in intact animals as they age. We have concluded that these functional decrements expressed in vitro, rather than cessation of cell division, are the essential contributors to age changes in intact animals. Thus, the study of events leading to functional losses in cultured normal cells may provide useful insights into the biology of aging.

Aging

Some characteristics of Ureaplasma urealyticum. Urease activity in a simple buffer: effect of metal ions and sulphydryl inhibitors.

Urealytic activity of the cytoplasmic fraction of Ureaplasma urealyticum prepared by digitonin lysis was assayed in a simple buffer system (HEPES plus EDTA) by measuring the release of 14CO2 from [14C]urea. The Km of this preparation agreed with our previous observations of the same activity measured in a more complex reaction mixture. The substrate concentration at which maximum velocity occurred was approximately 20 mM. The activity was sensitive to heavy metals and inhibitors which react with sulphydryl groups such as N-ethylmaleimide and p-chloromercuribenzoate. It was not inhibited by Ca2+ or Mg2+ or by the reaction products, ammonia and carbon dioxide.

Culture Media

Interspecies homology of RNA tumor virus proteins.

We report the application of a highly sensitive column chromatographic technique to the comparison of tryptic peptide maps of some RNA tumor virus proteins. By combining microbore ion-exchange chromatography with a sensitive fluorescent assay using o-phthalaldehyde, we obtained high-resolution peptide maps starting with only microgram amounts of protein. Our discovery of coincident peptides from the 15,000 and 30,000 molecular weight proteins from murine and feline leukemia viruses supports serological evidence for interspecies antigenic determinants; coincident peptides were also found for the 10,000 molecular weight proteins from these viruses, although immunochemical data did not reveal interspecies determinants. The relatively large number of coeluting peptides found in the 15,000 and 10,000 molecular weight proteins is strong evidence for the existence of homology.

Avian Leukosis Virus

The effect of growth and urea concentration on ammonia production by a urea-hydrolysing mycoplasma (Ureaplasma urealyticum).

The rate of accumulation of ammonium ion in cultures of Ureaplasma urealyticum was independent of the growth rate and of the initial urea concentration above 0-025% in the medium, although the quantity of ammonium ion accumulating did depend on the initial urea concentration. Ammonium ions accumulated at a similar rate in U. urealyticum cultures of both rapidly and slowly growing organisms. Viable but non-growing ureaplasmas also produced ammonia in complete medium at a lower temperature than usual (25 degrees C) or in an inadequate growth medium at 37 degrees C. The rate of ammonium ion accumulation in a dying culture depended on the number of viable organisms present; this is relevant to diagnostic methods for ureaplasms which depend on detecting ammonia colorimetrically.

Ammonia

Effects of carbon dioxide, urea, and ammonia on growth of Ureaplasma urealyticum (T-strain mycoplasma).

By use of a simple device for continuous CO2 gassing of Ureaplasma urealyticum cultures growing in a liquid medium, we have been able to separate some of the effects of urea, CO2, ammonia, and pH on growth. The CO2 acted as a superior buffer in the pH range 5.7 to 6.8, which is optimal for Ureaplasma growth. It was, therefore, possible to observe the effect of repeated additions of urea to the culture without alkalinization of the growth medium. We found that the repeated additions of urea did not enhance Ureaplasma growth, and the resultant accumulation of ammonium ions (greater than 2,000 microng/ml) did not cause more rapid death under these conditions. By abruptly changing the gaseous environment from CO2 to N2, it was possible to cause a rapid pH change in the culture to a value above 8.0. This resulted in a more rapid death of the organisms.

Ammonia

Localization of enzymes in Ureaplasma urealyticum (T-strain mycoplasma).

Ureaplasma urealyticum cells were lysed by osmotic shock or by digitonin. The membrane fraction contained four to ten times as much protein as the cytoplasmic fraction. These values are in large excess of those reported for classical mycoplasmas, suggesting that the Ureaplasma membrane fraction was heavily contaminated with proteins derived from the growth medium. The U. urealyticum urease activity was localized in the cytoplasmic fraction, whereas the adenosine triphosphatase activity was localized in the membrane fraction. Significant urease activity could be detected also in nonviable cells. Urea, at concentrations above 0.25 M, was mycoplasmastatic to Acholeplasma laidlawii, Mycoplasma hominis, and U. urealyticum, so that the Ureaplasma urease did not afford preferential protection against urea toxicity. The intracellular localization of the urease would be expected to release ammonia from urea in the cytoplasm. The ammonia will take up protons to become ammonium ions. It can be hypothesized that the intracellular NH4+ plays a role in proton elimination or acid-base balance, which might be coupled to an energy producing ion gradient and/or transport mechanisms.

Adenosine Triphosphatases

Morphology of Ureaplasma urealyticum (T-mycoplasma) organisms and colonies.

The morphology of Ureaplasm urealyticum in broth cultures was studied by phase-contrast microscopy. Most organisms appeared singly or in pairs. Long filaments and long chains of cocci, common in classical mycoplasma cultures, were not observed. On solid medium, U. urealyticum produced "fried-egg" colonies which developed according to the scheme suggested by Razin and Oliver (J. Gen. Microbiol., 1961) for the morphogenesis of the classical mycoplasma colonies. The formation of the peripheral zone of the colonies followed that of the central zone only when growth conditions were adequate, Hence, the appearance of peripheral zones, and consequently the larger colony size, can be taken as an indicator of improved growth conditions. Incubation in an atmosphere of 100% CO2 resulted in significantly larger colonies than in an atmosphere of N2, O2, or air. CO2 acts as a buffer, keeping the pH at the optimal range for Ureaplasma growth (pH 6.0 to 6.5) in the presence of the ammonia produced from the urea hydrolyzed by the organisms. The addition to the medium of 0.01 M urea together with 0.01 M putrescine enabled better growth than with urea alone. Small amounts of phosphate improved growth in an atmosphere of CO2, apparently fulfilling a nutritional role. Under nitrogen, higher phosphate concentrations were required for good growth, apparently serving as a buffer as well as a nutrient. Sodium chloride and sucrose which had been added to increase the tonicity of the medium inhibited growth above 0.1 M. An increase in the agar concentration above 2% resulted in decreased colony size. Likewise, prolonged drying of the agar plates caused a marked decrease in colony size, mostly affecting the peripheral zone. The addition of both urea and putrescine to the growth medium and incubation in a humidified CO2 atmosphere are recommended for improved growth and formation of fried-egg colonies of U. ureaplyticum on agar. It must be emphasized that these experiments were carried out with a laboratory-adapted strain.

Blood

Protein degradation in human fibroblasts (WI-38). Effects of aging, viral transformation, and amino acid analogs.

Protein degradation occurs more rapidly in senescent WI-38 cultures than in phase II cultures or in SV-40 transformed WI-38 cells (VA-13). The first differences are found in early phase III, when short lived but not long lived proteins are degraded more rapidly. At the end of phase III long lived proteins are also degraded more rapidly as shown by both intermittent perfusion and approach to equilibrium methods. By both methods the rates of protein degradation for the virally transformed derivative are the same as those for phase II WI-38, implying that transformation has not altered these characteristics of protein degradation. WI-38 cells incorporate canavanine, an analog of arginine, into protein. This analog, as well as p-fluorophenylalanine and azetidine carboxylic acid, accelerates the degradation of proteins labeled with [3H]leucine in their presence but does not alter the degradation rates of proteins prelabeled with [14C]leucine in the absence of the analogs. These results imply that the analogs increase the intracellular degradation rates of proteins because they render them more susceptible to the degradative system. Late phase III WI-38 cells may not selectively catabolize proteins containing canavanine as rapidly as do phase II and VA-13 cells. These results imply that the phase III protein degradative system becomes partially defective, thereby losing its ability to rapidly catabolize altered protein which leads to increased levels of abnormal proteins and decreased cell function.

Aging

Urea-hydrolyzing activity of a T-strain mycoplasma: Ureaplasma urealyticum.

The urea-hydrolyzing activity of a T-strain mycoplasma was studied in experiments using whole cells and cell-free enzyme preparations by measuring the release of 14CO2 from [14C]urea. Under the conditions used, the urea concentration optimum is approximately 5.6 X 10(-3) M urea. The activity is soluble and not membrane bound. It is stable at -70 C for several weeks but is more labile at higher temperatures. The pH optimum is between 5.0 and 6.0. The effect of several inhibitors on the activity was tested and revealed similarities, as well as differences, between T-strain mycoplasma urease activity and the urease activity of other organisms and plants.

Bacteriolysis