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Accurate identification of abnormal ploidy using an artificial intelligence model in preimplantation genetic testing.

STUDY QUESTION: Can ultra-low-coverage whole-genome sequencing (ulc-WGS) accurately identify abnormal ploidy during preimplantation genetic testing (PGT)? SUMMARY ANSWER: The artificial intelligence (AI)-based PGT-Plus model demonstrates high accuracy in ploidy detection, offering a cost-effective solution that enhances clinical utility of PGT. WHAT IS KNOWN ALREADY: The predominant PGT for aneuploidy can identify chromosomal aneuploidies but cannot determine ploidy status. Transferring embryos with ploidy abnormalities can result in miscarriage and molar pregnancy. On the other hand, in ART, fertilization is assessed by morphological pronuclear assessment at the zygote stage. However, it has a low specificity in the prediction of abnormal ploidy status and embryos deemed abnormally fertilized can yield healthy pregnancies. Accurately identified abnormal ploidy in PGT-A can resolve current limitations and expand the utility range of PGT-A. Several studies have identified ploidy abnormalities; however, they were mainly based on single-nucleotide polymorphism (SNP) arrays or needed to combine additional targeted-next-generation sequencing (NGS) information. Studies based on ulc-WGS remain scarce. STUDY DESIGN SIZE DURATION: The study consisted of two stages: methodology establishment and validation. An AI model, named PGT-Plus, was developed using 653 samples with known ploidy status, which was further validated using 792 different ploidy status samples. In the clinical application stage, the approach was used to analyse the ploidy status of 19&#x2009;103 normally fertilized PGT blastocysts and 140 single pronucleus (1PN)-derived blastocysts collected between May 2022 and December 2023. All blastocysts were tested using trophectoderm biopsy and NGS. PARTICIPANTS/MATERIALS SETTING METHODS: The methodology is based on the ulc-WGS data. First, based on samples with known ploidy status: the heterozygosity rate of high-frequency biallelic SNPs, the likelihood ratio (LLR) of alleles was calculated under different assumptions ('both parental homologs' [BPH] from a single parent, 'single parental homolog' [SPH] from each parent, disomy, and monosomy) by leveraging allele frequencies and linkage disequilibrium (LD) measured in the 1000 genomes project database. Twenty-three continuous candidate features derived from heterozygosity rates and LLRs of chromosomes or selected windows were included to establish the ploidy prediction AI model. Gini importance analysis and multicollinearity mitigation was performed for feature selection, then the performance of Random Forest (RF), Support Vector Machine (SVM), and Logistic Regression for modelling was compared. Subsequently, the parameter optimization was performed based on the RF model. Ploidy constitution concordance was evaluated in known ploidy status samples. The frequency of abnormal ploidy in normal fertilized PGT blastocysts and 1PN-derived blastocysts (including conventional IVF and ICSI) was evaluated. MAIN RESULTS AND THE ROLE OF CHANCE: Eleven features were collected for model architecture compared to SVM and Logistic Regression; RF achieved superior performance for ploidy detection. The AI model achieved an AUC of 1 for genome-wide-uniparental diploidy (GW-UPD), 1 for triploidy, and 0.99 for diploidy. For the 792 validation samples, 99.5% of samples were successfully detected using the AI model, and the model showed 100% accuracy for ploidy classification. In the clinical application stage, out of 19&#x2009;103 PGT samples, 19&#x2009;069 were successfully analysed using the model, with 110 (0.57%) identified as having abnormal ploidy embryos. Among these, 12.7% (14/110) were identified as GW-UPD, and 87.3% (96/110) were triploid. Among 5563 diploid blastocysts transferred, 3478 clinical pregnancies were achieved. Subsequent ploidy analysis was performed for 217 spontaneous abortion and 935 prenatal diagnostic samples, and no abnormal ploidy was identified. Furthermore, of the 140 1PN embryos tested, 40 (28.6%) exhibited GW-UPD, 3 (2.1%) exhibited triploidy, and 97 (69.3%) were determined to be biparental and normally fertilized. Among the 97 biparental embryos, 46 were diploid, 11 were mosaic, and 40 were aneuploid. In terms of the insemination pattern, the percentage of abnormal ploidy in ICSI was significantly higher than in conventional IVF (P&#x2009;<&#x2009;0.01, 37.1% vs. 2.9%, respectively). With full informed consent, 20 patients without euploidy from normal fertilization chose 1PN-derived biparental and diploid blastocysts to transfer, resulting in 10 clinical pregnancies and 9 ongoing pregnancies. LARGE-SCALE DATA: N/A. LIMITATIONS REASONS FOR CAUTION: Some rare ploidy abnormalities, such as polyploidy with an equal number of identical sets of chromosomes and ploidy mosaicism cannot be accurately identified. Moreover, the origin of abnormal ploidy was not identified due to the unavailability of DNA from both parents. WIDER IMPLICATIONS OF THE FINDINGS: The PGT-Plus AI model provides a ploidy evaluation method based on the conventional PGT-A data and integrates directly into standard PGT-A workflows. Clinical utility results suggest that the model is a valuable tool for identifying embryos with abnormal ploidy in PGT-A and rescuing normal diploid embryos from abnormally fertilized embryos. These findings demonstrate that PGT-Plus significantly enhances the diagnostic accuracy of PGT. STUDY FUNDING/COMPETING INTERESTS: This study was supported by grants from Major Scientific Program of CITIC Group (No. 2023ZXKYB34100, to Ge.L.), Hunan Provincial Grant for Innovative Province Construction (2019SK4012), Hunan Xiangjiang New District (Changsha High-tech Zone) key core technology research project in 2023, and Science Foundation of Hunan Province (Grant 2023JJ30422). All authors declared no conflicts of interest..

artificial intelligence

Comparison of cytofluorometric nuclear DNA ploidy analysis on fresh and paraffin embedded specimen.

The cytofluorometric nuclear DNA ploidy analysis was performed in gallbladder (GB) epithelium of eight patients of chronic cholecystitis to make a comparison between fresh and paraffin embedded tissue analysis, to make an ideal single cellular suspension, to evaluate the ploidy pattern affected by inflammation and to assess the histological correlations. Six (75%) fresh specimens and eight (100%) paraffin embedded specimens showed diploidy pattern of histogram. Two (25%) fresh specimens showed low ploidy pattern of histogram. There was a good correlation between histological findings and the ploidy patterns of 100% paraffin embedded specimens and 75% fresh specimens. The relative fluorescence intensity was found higher and more stable in paraffin embedded tissues than fresh tissues. Inflammation did not affect the ploidy patterns of paraffin embedded specimens whereas the ploidy patterns of fresh specimens were affected. It can be concluded that the DNA ploidy patterns and histological findings have a good correlation and inflammation does not affect the cytofluorometric DNA ploidy pattern when using the paraffin embedded specimens. Paraffin embedded specimens are superior to fresh specimens for making an ideal single cellular suspension to obtain stable, high, and accurate fluorescence intensity with less background fluorescence which makes the ploidy pattern behave like exact behavior of tissues.

Cholecystitis

Human breast cancer: prognostic significance of the c-erbB-2 oncoprotein compared with epidermal growth factor receptor, DNA ploidy, and conventional pathologic features.

PURPOSE: A study was undertaken to define the prognostic value of the expression of the c-erbB-2 oncoprotein in a series of breast cancer patients when compared by multivariate analysis with expression of the epidermal growth factor receptor (EGFR), DNA ploidy, and conventional clinicopathologic features. PATIENTS AND METHODS: Prognostic indicators were analyzed in 165 primary breast cancers. The c-erbB-2 oncoprotein was recognized by the polyclonal antibody 21N using an immunocytochemical method. Expression of the EGFR was stated immunocytochemically using the monoclonal antibody EGFR1. DNA ploidy was assessed in paraffin-embedded sections using a standard flow-cytometric method. RESULTS: Overall, 27% of carcinomas had membrane 21N-staining and were classified as c-erbB-2-positive. Overexpression of the c-erbB-2 oncoprotein was poorly associated with EGFR expression and the conventional pathologic features, and it was weakly associated with DNA ploidy and nodal status. Univariate analysis showed that c-erbB-2 expression, nodal status, DNA ploidy, and EGFR provided significant prognostic information concerning 4-year relapse-free survival (RFS) with the odds ratios (ORs) of not relapsing of 2.94, 2.83, 2.34, and 2.20, respectively. Regarding overall survival (OS) at 4 years, only nodal status and DNA ploidy had prognostic significance, with the ORs of not dying of 2.68 and 2.80, respectively. Applying multivariate analysis to RFS, 21N when adjusted for nodal status, EGFR, and DNA ploidy (full model) failed to retain prognostic value (P = .202), whereas nodal status was the most significant indicator of relapse (P = .027) followed by DNA ploidy (P = .056) and EGFR (P = .093). CONCLUSIONS: This study suggests that overexpression of the c-erbB-2 oncoprotein appears to be an important indicator of relapse in stage I-II breast cancer when singly evaluated. Multivariate analysis shows that the determination both of nodal status and DNA ploidy improves our ability to identify subsets of patients with different prognoses, and allows for a better selection of patients for systemic adjuvant treatments.

Adult

Case report of hepatocellular carcinoma and cytofluorometric nuclear DNA ploidy.

Cytofluorometric nuclear DNA ploidy analysis was performed in two cases of primary hepatocellular carcinoma (HCC). This study was done to get the information about clinical behavior of tissues and to assess the prognosis. In both cases, almost all the liver function tests were abnormal, the tumors were thickly encapsulated, and the size of the tumors were below 5 cm in diameter. The DNA distribution pattern was categorized in two types, diploid and aneuploid with low and high ploidy, according to the mode and degree of dispersion of cells on the DNA histogram. Low ploidy pattern of histogram was found in one and diploidy pattern in another case. The serum alpha FP level was found high in case of diploidy pattern of histogram. The case of diploidy pattern of histogram died earlier than the case of aneuploid low ploidy pattern of histogram. The DNA ploidy patterns did not relate to the survival rates of patients. A preoperative cytofluorometric nuclear DNA ploidy analysis on biopsy specimens may be potentially useful to get the information about clinical behavior of tissues, to do the selective surgical procedures, and to assess the prognosis.

Aged

[Flow cytometric analysis of DNA ploidy pattern in breast cancer: malignant potential and prognostic implication].

Flow cytometric DNA analysis in solid tumors has developed over the past ten years. In human breast cancer, flow cytometric analysis of DNA ploidy pattern recently reported were reviewed. There are conflicting data regarding the value of DNA ploidy pattern obtained by flow cytometric analysis for determining prognosis for breast cancer patients. Some data seem to indicate that S-phase fraction alone or in combination with DNA ploidy pattern may be more important prognostically than DNA ploidy pattern alone, although the results have not been uniform. These suggests that a consensus of determination for DNA ploidy pattern in breast cancer and further investigations on DNA ploidy pattern are required.

Breast Neoplasms

Comparative Pharmacological Analysis of Mitotic Inhibitors Using Isogenic Ploidy Series of HAP1 Cells.

Drastic changes in chromosome number and cellular contents upon ploidy alterations profoundly affect the stability of mitotic regulation in different biological and pathological processes. Isogenic ploidy series of somatic cell lines are useful for studying the effects of ploidy differences on mitotic regulation at cellular and molecular levels. This chapter describes experimental procedures using isogenic human HAP1 cell lines that cover haploid, diploid, and tetraploid states. We first describe methods to establish and maintain these isogenic HAP1 ploidy series using a flow cytometer. We then describe a procedure of comparative pharmacological assay for analyzing ploidy-dependent changes in the functionality of the mitotic spindle components.

Humans

DNA ploidy of primary hepatocellular carcinoma and pulmonary metastases.

To better comprehend the differences in deoxyribonucleic acid (DNA) content between a primary hepatocellular carcinoma (HCC) and pulmonary metastatic nodules, tissue specimens taken at autopsy of 25 patients who had not received any drugs to treat the malignancy were examined using microspectrophotometry. The DNA distribution patterns were classified into Types I-III, and low (Types I and II) or high (Type III) ploidies, according to DNA distribution. Changes in the DNA content from high to low ploidies, namely DNA ploidy reduction from the primary lesion to pulmonary metastatic lesions, was evident in 9 of the 25 patients (36%), and changes from low to high were noted in 2 of the 25 patients (8%). The remaining 14 (56%) showed no evidence of changes in the DNA ploidy pattern. Reduction of DNA ploidy seen in HCC and its metastatic lesions in the lung may be one of the aspects of clonal evolution or selection mechanisms during the progression of tumor growth and metastasis.

Autopsy

Ploidy analysis of epithelial ovarian cancers using image cytometry.

We used a computerized image analysis system to determine the DNA content of 103 epithelial ovarian cancers using touch imprints of frozen tumor samples. Similar to prior studies of ploidy using flow cytometry, we found that most ovarian cancers (78%) were aneuploid while a minority (22%) were diploid. There was no relationship between ploidy and stage, histologic grade, or the ability to perform optimal cytoreductive surgery. Also, like prior studies using flow cytometry, negative second-look laparotomy and survival were somewhat more common in advanced-stage patients with diploid cancers than in those with aneuploid cancers. We conclude that ploidy of ovarian cancers can be determined using a computerized image analysis system to quantitate feulgen staining of cells in touch imprints. Ploidy is unlikely to play a role in treatment planning for patients with advanced-stage disease. Larger studies of patients with early-stage disease are needed, however, to determine whether ploidy is a more accurate means of predicting which patients are most likely to benefit from adjuvant therapy.

Aneuploidy

DNA ploidy pattern in synchronous and metachronous hepatocellular carcinomas.

DNA ploidy of hepatocellular carcinoma (HCC) was studied in 28 patients using a flow cytometric method. Fourteen patients had two HCCs synchronously, and the remaining 14 had tumor recurrence in the remnant liver 3-41 months after curative resection of primary HCCs. DNA ploidy pattern and histopathologic parameters were compared between the synchronous and metachronous HCCs. Among those with synchronous HCCs, both tumors were diploid in 7 cases and aneuploid in 2 instances. Five patients had HCCs of different DNA ploidy pattern. On the other hand, 5 of 14 patients with metachronous HCCs had a consistent DNA ploidy between primary and recurrent tumors. In 4 cases, the first tumor was diploid whereas the recurrent HCC was aneuploid or tetraploid. In the remaining 5 cases, the primary HCC was aneuploid, but the recurrent tumor was diploid. Assuming that the difference in DNA ploidy pattern indicates a different clonal origin, the current results indicate that at least 36% of synchronous HCCs and 64% of recurrent HCCs develop in a multicentric fashion.

Adult

DNA ploidy and karyotype in recurrent and metastatic soft tissue sarcomas.

To study mechanisms involved in evolution of soft tissue sarcomas, we compared DNA ploidy and karyotypes at different stages of their disease in two patients with myxoid liposarcomas (MLS), one with a fibrosarcoma (FS), and two with rhabdomyosarcomas (RMS). None of the MLS samples revealed clearcut histologic changes in later samples as compared to their primaries, and the DNA ploidy in all samples was diploid. In one patient karyotypes at four different times during the 19 yr of his disease all revealed a t(11;12) (p15;q13), but additional clonal chromosomal abnormalities occurred only in later recurrences. In another patient the karyotypes obtained in the 26th and 28th yr of his disease were similar and included the t(12;16) (q13;p11), characteristic of MLS. A comparison with karyotypes of six other MLS patients at different disease stages suggests that the presence of a t(12;16) may correlate with less aggressive clinical behavior. The histology of the FS remained low-grade and the DNA ploidy diploid. The karyotype, however, showed evolution. In both MLS and FS, chromosomal changes thus seem to be a more sensitive marker for tumor progression than histologic changes or DNA ploidy. In one embryonal RMS, karyotypes obtained 7 and 11 yr after the primary diagnosis were different but clearly had a common "progenitor." In one alveolar RMS, the primary and the synchronous lung and lymph node metastases all revealed a t(2;13). The findings in RMS suggest that polyploidization is an early event in tumor evolution, especially in the alveolar subtype, which may be followed by additional chromosomal changes. In addition, DNA ploidy was measured in eight other RMSs. Among the RMSs the embryonal subtype was characterized by DNA aneuploidy, whereas three of the alveolar cases were in the tetraploid range and one was peridiploid. In local recurrences and in metastases changes in DNA index were observed in half the cases.

Adolescent

[Ploidy and liquid-holding recovery in yeasts sensitive to radiation and nitrous acid].

The effects of genome ploidy and posttreatment incubation on inactivation by nitrous acid (NA) were studied in normal, radio- and nitrous acid-sensitive strains of yeast. In normal yeast cells the increase of ploidy (haploid to triploid) resulted in "the protective effect", i.e. haploid cells were the most sensitive, triploid -- the most resistant. This "protective effect" is absent in polyploid yeast homozygous for the xrs1-5 (rad 54) mutation; in this case the NA-sensitivity rises with the increase of ploidy, i.e. haploid cells are the most resistant ones. The effect of liquid holding (LH) after the NA treatment depends on the genetic background and ploidy of treated cells. Posttreatment incubation in buffer has practically no effect on the survival of wild-type Berkeley's yeast strains (1n, 2n, 3n). The highly homozygous haploid strains from Zakharov' collection, both wild type and xrs1-5 mutant, exhibit no LH-recovery too. However the death of wild-type cells drastically rises in LH-condition as the ploidy increases. 24 hours incubation in buffer results in at least a ten-fold decrease in survival of wild type 2n, 3n, 4n cells. The loss of viability is proportional to the time of incubation, but the cell titer being constant. The strains (2n, 3n, 4n) homozygous for the xrs1-5 mutation (rad 54) show considerable LH-recovery. It is supposed that the xrs1-5 mutation results in the derepression of the prereplicative pathway of LH-recovery which eliminates the NA-INDUCED DAMAGE OF DNA.

Cell Survival

[Post-radiation recovery and the ploidy factor].

Radiobiologicae effects on extensively homozygous Sacharomyces cerevisiae strains of different ploidy from haploid to hexaploid (developed by W. Laskovski) were studied. Radiation (gamma-rays of 60Co) inactivation studies showed a minimum of resistance of haploid strains, a maximum of resistance of diploid or triploid strains and a decrease of resistance with further increasing genome number. The explanation of such dependence of radiosensitivity on ploidy is usually due to the increase of dominant lethal damages and the corresponding decrease of recessive lethal damages with the increase of ploidy. All studied strains (except haploids) were capable of recovery of radiation damages after their storage in non-nutrient media during postradiation period. Since haploids are inactivated almost exclusively by recessive lethal damages, one may suppose that reversible part of radiation damages is due to dominant lethal damages. Then an irreversible part of radiation injury must decrease with the increase of ploidy. Indeed, in studied strains an irreversible component of radiation injury was significantly reduced with the increasing genome number. Any correlation of the probability of recovery from the primary damages with ploidy was not discovered.

Cobalt Radioisotopes

Comparative analyses of olfactory receptor repertoires in Schizothorax fish based on the chromosome-level genomes: Implications for regulatory roles of dietary differentiation and ploidy variation.

The olfactory receptor (OR) genes constitute the molecular basis of fish olfaction, mediating survival behaviors and environmental adaptation while coevolving with habitat-driven evolution. Schizothorax, a cyprinid genus endemic to the Qinghai-Tibetan Plateau, exhibits remarkable dietary divergence and ploidy variation in response to plateau environmental changes, which presumably facilitates the adaptive evolution of OR genes. However, the evolutionary patterns of OR genes associated with trophic divergence and ploidy variation in this genus remain unclear. In this study, three species were selected: the herbivorous diploid S. macropogon, the carnivorous diploid S. lantsangensis, and the herbivorous tetraploid S. curvilabiatus. S. macropogon possessed 142 OR genes (92.25% functional), primarily located on chromosomes 14 and 24, with the fewest sequence clusters. Such compact gene repertoire and highly overlapping chromosomal clusters indicated specialization for a herbivorous olfactory niche. S. lantsangensis contained 127 OR genes (93.70% functional), concentrated on chromosomes 4 and 5, with fewer sequence clusters and a scattered distribution, reflecting evolution of OR genes under carnivorous feeding habits. The herbivorous tetraploid S. curvilabiatus exhibited striking features: 316 OR genes (94.30% functional), the most subfamilies, unique &#x3b5; and &#x3ba; OR subfamilies, and species-specific motifs. These characteristics revealed that ploidy, rather than herbivory, dominated OR gene evolution. In conclusion, dietary differentiation and ploidy variation together drove olfactory adaptive evolution in Schizothorax, providing new insights into vertebrate OR gene ecological adaptation.

Animals

Histopathologic grading and DNA ploidy in relation to survival among 206 adult astrocytic tumor patients.

BACKGROUND: The authors studied the benefit of performing histopathologic grading and DNA ploidy characterization with respect to patient survival in a series of 206 astrocytomas (AST) for which they obtained 134 complete clinical follow-ups. METHODS: The material analyzed came from archival material, i.e., formalin-fixed paraffin-embedded tissues. DNA ploidy was assessed by means of a cell image processor computing the integrated optical density (IOD) on Feulgen-stained nuclei. RESULTS: Results showed that histopathologic diagnosis in three grades, i.e., AST, anaplastic astrocytoma (ANA), and glioblastoma multiforme (GBM), had a significant prognostic value. Patients with AST showed a mean survival time (between histopathologic diagnosis and death) of more than 36 +/- 6 months (AST versus ANA or GBM) (P less than 0.001). Patients with ANA and GBM showed a mean survival time of 15 +/- 2 and 10 +/- 1 months, respectively, (ANA versus GBM) (P less than 0.05). Patient age strongly correlated with survival. Patients younger than 40 years of age had a mean survival time of 20 +/- 4 months. Patients between 41 and 60 years of age had a mean survival time of 12 +/- 2 months, and patients older than 60 years of age had a mean survival time of 11 +/- 1 months. CONCLUSIONS: Considering DNA ploidy characterization, the authors noticed that aneuploid ANA (DNA index [DI] more than 1.30) were associated with a significantly higher mean patient survival time compared with that associated with euploid ANA. In contrast, the authors did not find this in either of the groups with AST and GBM. Recognizing six DNA histogram types (diploid, triploid, tetraploid, hyperdiploid, hypertriploid, and polymorphic), the authors observed that hypertriploid tumors were associated with greater patient survival compared with what happened in the cases of the five other DNA histogram types. This was true with respect to the three AST histopathologic types. Thus, DNA ploidy determination seemed helpful in characterizing aggressiveness in adult AST.

Adolescent

Effect of DNA ploidy classification on prognosis in breast cancer.

A series of 327 breast cancers was analyzed for DNA ploidy by flow cytometry from paraffin-embedded tissue, and the resulting DNA histograms were classified independently by 6 researchers in the field as DNA diploid (Di), aneuploid (An), tetraploid (Te), multiploid (Mu), or technically uninterpretable. The frequency of diploid, aneuploid, tetraploid and multiploid cancers varied from 28 to 41%, 33 to 49%, 8 to 21% and 2 to 6%. According to the scale Di-An-Te-Mu, DNA ploidy was not significantly associated with breast-cancer mortality by 2 classifiers, but if DNA euploid cancers (Di+Te) were tested against non-euploid, or diploid cancers against non-diploid, all classifiers found DNA euploid and diploid cancers to have better prognosis. Mortality associated with diploid or tetraploid cancers decreased with improving histogram quality and increasing uniformity of classification, whereas that associated with aneuploid cancers remained unaltered. Among the cases where all classifiers agreed on ploidy, tetraploid, diploid and aneuploid cancers were associated with 100%, 88% and 68% 5-year survival rates. In this sub-set the S-phase fraction and possibly DNA ploidy were independent prognostic factors, together with histological grade, axillary node status, and primary tumor size.

Breast Neoplasms

Ultramicrochemical determination of nucleic acids in individual cells using the Zeiss UMSP-I microspectrophotometer. Application to isolated rat hepatocytes of different ploidy classes.

Edström's method for the ultramicrochemical determination of RNA and DNA in individual cells was modified for the measurement of extinction in u.v. light with the aid of the Zeiss scanning microspectrophotometer UMSP-I. With this new procedure, nucleic acids down to about 3 pg RNA or about 4 pg DNA can be measured with a very high accuracy. The method was applied to enzymatically isolated rat liver parenchymal cells. A mean DNA content of 6.52 pg was found for diploid cells. The DNA content of mononuclear cells of different ploidy levels and of binuclear cells showed a close proportionality with the nuclear ploidy and the number of nuclei per cell. The RNA content of mononuclear diploid cells amounted to 33.4 pg, yielding an RNA/DNA ratio of 5.12. The RNA/DNA ratio was similar for binuclear and mononuclear cells of the same ploidy level but decreased considerable with increasing nuclear ploidy.

Animals

Squamous cell carcinoma of the cervix: HPV 16 and DNA ploidy as predictors of survival.

In this study, the hypothesis that DNA ploidy and the presence of HPV 16 and HPV 18 DNA affects survival of patients with squamous cell carcinoma of the cervix was tested. Archival paraffin blocks from biopsy and surgical specimens were obtained from 127 women diagnosed in 1977-1984. Determination of DNA ploidy was by flow cytometry and HPV 16 and HPV 18 DNA status by polymerase chain reaction with subsequent dot-blot hybridization. For each patient, age, stage, treatment modality, and 5-year survival were correlated with ploidy and HPV status. HPV 16 DNA was present in 53% of the tumors. HPV 18 was not detected in this population. HPV 16 DNA was found twice as often in Stages IB and IIA than in advanced-stage disease (III and IV). These advanced-stage tumors were more commonly aneuploid. Neither HPV status nor DNA ploidy were predictive of survival for any stage of disease or therapeutic modality.

Adult

The relationship between lymph node metastases and DNA-ploidy status as prognostic factors in invasive breast cancer.

We evaluated the relationship between the regional lymph node metastases and the DNA ploidy status in 207 patients with invasive breast cancer, as well as their prognostic values in estimating the prognosis of breast cancer. A significantly higher incidence of aneuploidy was found in patients with a large T3 or T4 tumor, a positive axillary lymph node status, more than 4 positive axillary lymph nodes or positive internal mammary lymph nodes. In a univariate study, the overall survival was significantly correlated with tumor size, axillary lymph node status, axillary and internal mammary lymph node metastases, and DNA ploidy status. In the multivariate analysis, however, only axillary and internal mammary lymph node metastases were recognized as important independent prognostic factors on survival. In this series, the DNA ploidy status did not appear to be an independent prognostic factor either in the entire series or in negative axillary node patients, since it was closely correlated with the axillary or internal mammary lymph node metastases, and the axillary node negative patients had an extremely favorable prognosis.

Adult